diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/00_ImportCityGml.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/00_ImportCityGml.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..e8d59e3701b34b40c13252e42289c7d8af9fa041 --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/00_ImportCityGml.step/params.xml @@ -0,0 +1,22 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.citygml.steps.ImportCityGml" id="ImportCityGml0"> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>startStep</string> + <void method="set"> + <object idref="ImportCityGml0"/> + <boolean>true</boolean> + </void> + </void> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>selectedNextStepPath</string> + <void method="set"> + <object idref="ImportCityGml0"/> + <string>01_Preprocessing.step</string> + </void> + </void> + <void property="name"> + <string>Base</string> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/00_GeometricPreprocessor.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/00_GeometricPreprocessor.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..978338d0079e55bb1f02d6b594ef585d84b495ad --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/00_GeometricPreprocessor.step/params.xml @@ -0,0 +1,22 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflowsteps.GeometricPreprocessorStep" id="GeometricPreprocessorStep0"> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>startStep</string> + <void method="set"> + <object idref="GeometricPreprocessorStep0"/> + <boolean>true</boolean> + </void> + </void> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>selectedNextStepPath</string> + <void method="set"> + <object idref="GeometricPreprocessorStep0"/> + <string>01_GeometricEstimator.step</string> + </void> + </void> + <void property="name"> + <string>Base</string> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/01_GeometricEstimator.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/01_GeometricEstimator.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..2de88f869b74b5c731f33b3a25b32c65fede8b39 --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/01_GeometricEstimator.step/params.xml @@ -0,0 +1,15 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflowsteps.GeometricEstimatorStep" id="GeometricEstimatorStep0"> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>selectedNextStepPath</string> + <void method="set"> + <object idref="GeometricEstimatorStep0"/> + <string>02_PhysicsPreprocessor.step</string> + </void> + </void> + <void property="name"> + <string>Base</string> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/02_PhysicsPreprocessor.step/GermanBuildingTypologyLibrary_IWU.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/02_PhysicsPreprocessor.step/GermanBuildingTypologyLibrary_IWU.xml new file mode 100644 index 0000000000000000000000000000000000000000..4a50b3bee44546a90dc5b0794c1c717139d9bc73 --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/02_PhysicsPreprocessor.step/GermanBuildingTypologyLibrary_IWU.xml @@ -0,0 +1,12719 @@ +<?xml version="1.0" encoding="UTF-8" standalone="yes"?> +<buildingPhysicsLibrary xmlns="http://www.simstadt.eu/BuildingPhysicsLibraries"> + <name>German Building Typology Library IWU</name> + <description> +Update: 27.02.2018 / inspired from Deutsche Gebaeudetypologie, Institut Wohnen und Umwelt (2003 and 2011), including the EnEV2016 standards. +Update: 27.06.2019 Verena Weiler : window ratio calculated from reference building types' area for walls and windows from IWU 2015. + </description> + <source>http://www.iwu.de</source> + <valid>true</valid> + <protected>true</protected> + <windowLib> + <name>Window library from German Building Typology Library IWU</name> + <description>Window library from German Building Typology Library IWU</description> + <source>http://www.iwu.de</source> + <windowType> + <id>0</id> + <name>Double-glazed window with old wooden/aluminum frame</name> + <uValue>3.2</uValue> + <gValue>0.76</gValue> + <glazingNumber>2</glazingNumber> + <frameRatio>0.3</frameRatio> + <embodiedEnergy>809.02</embodiedEnergy> + <embodiedCarbon>143.4</embodiedCarbon> + <constructionDescription>double glazing with old wooden/aluminum frame, produced in Germany, transportation 50 km </constructionDescription> + <disposalEnergy>5.16</disposalEnergy> + <disposalCarbon>1.5</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </windowType> + <windowType> + <id>1</id> + <name>Double-glazed window with plastic frame</name> + <uValue>2.57</uValue> + <gValue>0.76</gValue> + <glazingNumber>2</glazingNumber> + <frameRatio>0.3</frameRatio> + <embodiedEnergy>577.53</embodiedEnergy> + <embodiedCarbon>106.92</embodiedCarbon> + <constructionDescription>double glazing with plastic frame, produced in Germany, transportation 50 km </constructionDescription> + <disposalEnergy>4.48</disposalEnergy> + <disposalCarbon>2.26</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </windowType> + <windowType> + <id>2</id> + <name>Low-E double-glazed window</name> + <uValue>1.6</uValue> + <gValue>0.63</gValue> + <glazingNumber>2</glazingNumber> + <frameRatio>0.3</frameRatio> + <embodiedEnergy>628.89</embodiedEnergy> + <embodiedCarbon>81.57</embodiedCarbon> + <constructionDescription>double glazing with wooden frame, produced in Germany, transportation 50 km </constructionDescription> + <disposalEnergy>3.97</disposalEnergy> + <disposalCarbon>4.48</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </windowType> + <windowType> + <id>3</id> + <name>Low-E double-glazed window EnEV2016</name> + <uValue>1.3</uValue> + <gValue>0.6</gValue> + <glazingNumber>2</glazingNumber> + <frameRatio>0.3</frameRatio> + <embodiedEnergy>628.89</embodiedEnergy> + <embodiedCarbon>81.57</embodiedCarbon> + <constructionDescription>double glazing with wooden frame, produced in Germany, transportation 50 km </constructionDescription> + <disposalEnergy>3.97</disposalEnergy> + <disposalCarbon>4.48</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </windowType> + <windowType> + <id>4</id> + <name>Low-E triple-glazed window</name> + <uValue>1.05</uValue> + <gValue>0.5</gValue> + <glazingNumber>3</glazingNumber> + <frameRatio>0.3</frameRatio> + <embodiedEnergy>694.42</embodiedEnergy> + <embodiedCarbon>98.5</embodiedCarbon> + <constructionDescription>triple glazing with wooden frame, produced in Germany, transportation 50 km </constructionDescription> + <disposalEnergy>4.56</disposalEnergy> + <disposalCarbon>4.93</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </windowType> + <windowType> + <id>5</id> + <name>Low-E triple-glazed window KfW 40</name> + <uValue>0.91</uValue> + <gValue>0.5</gValue> + <glazingNumber>3</glazingNumber> + <frameRatio>0.3</frameRatio> + <embodiedEnergy>694.42</embodiedEnergy> + <embodiedCarbon>98.5</embodiedCarbon> + <constructionDescription>triple glazing with wooden frame, produced in Germany, transportation 50 km </constructionDescription> + <disposalEnergy>4.56</disposalEnergy> + <disposalCarbon>4.93</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </windowType> + <windowType> + <id>6</id> + <name>Low-E triple-glazed window KfW 55</name> + <uValue>0.91</uValue> + <gValue>0.5</gValue> + <glazingNumber>3</glazingNumber> + <frameRatio>0.3</frameRatio> + <embodiedEnergy>694.42</embodiedEnergy> + <embodiedCarbon>98.5</embodiedCarbon> + <constructionDescription>triple glazing with wooden frame, produced in Germany, transportation 50 km </constructionDescription> + <disposalEnergy>4.56</disposalEnergy> + <disposalCarbon>4.93</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </windowType> + <windowType> + <id>7</id> + <name>Single-glazed window</name> + <uValue>5.0</uValue> + <gValue>0.86</gValue> + <glazingNumber>1</glazingNumber> + <frameRatio>0.3</frameRatio> + </windowType> + </windowLib> + <constructionLib> + <name>Construction library from German Building Typology Library IWU</name> + <description>Construction library from German Building Typology Library IWU</description> + <source>http://www.iwu.de</source> + <materialCategory> + <name>Brick</name> + <material> + <id>0</id> + <name>Solid brick</name> + <density>2000.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.96</conductivity> + <embodiedEnergy>0.8</embodiedEnergy> + <embodiedCarbon>0.25</embodiedCarbon> + <constructionDescription>solid brick made of clay, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>1</id> + <name>Cored brick</name> + <density>1500.0</density> + <heatCapacity>920.0</heatCapacity> + <conductivity>0.71</conductivity> + </material> + <material> + <id>2</id> + <name>Honeycomb brick</name> + <density>1120.0</density> + <heatCapacity>790.0</heatCapacity> + <conductivity>0.3</conductivity> + <embodiedEnergy>0.77</embodiedEnergy> + <embodiedCarbon>0.14</embodiedCarbon> + <constructionDescription>light clay brick, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>3</id> + <name>Inner leaf brick</name> + <density>1800.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.62</conductivity> + <embodiedEnergy>1.1</embodiedEnergy> + <embodiedCarbon>0.95</embodiedCarbon> + <constructionDescription>made of portland clinker, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>4</id> + <name>Outer leaf brick</name> + <density>2000.0</density> + <heatCapacity>650.0</heatCapacity> + <conductivity>0.96</conductivity> + <embodiedEnergy>1.1</embodiedEnergy> + <embodiedCarbon>0.95</embodiedCarbon> + <constructionDescription>made of portland clinker, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>5</id> + <name>Vermiculite insulated brick</name> + <density>700.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.27</conductivity> + </material> + </materialCategory> + <materialCategory> + <name>Concrete</name> + <material> + <id>6</id> + <name>Breeze block</name> + <density>1500.0</density> + <heatCapacity>650.0</heatCapacity> + <conductivity>0.44</conductivity> + <embodiedEnergy>0.3</embodiedEnergy> + <embodiedCarbon>0.12</embodiedCarbon> + <constructionDescription>concrete block, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>7</id> + <name>Concrete dense</name> + <density>2000.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>1.13</conductivity> + <embodiedEnergy>0.3</embodiedEnergy> + <embodiedCarbon>0.16</embodiedCarbon> + <constructionDescription>concrete 50MPa, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>8</id> + <name>Concrete lightweight</name> + <density>1200.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>0.38</conductivity> + </material> + <material> + <id>9</id> + <name>Aerated concrete block</name> + <density>500.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.16</conductivity> + <embodiedEnergy>1.01</embodiedEnergy> + <embodiedCarbon>0.48</embodiedCarbon> + <constructionDescription>autoclaved aerated concrete, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>10</id> + <name>Foamed slag concrete</name> + <density>1040.0</density> + <heatCapacity>960.0</heatCapacity> + <conductivity>0.25</conductivity> + </material> + <material> + <id>11</id> + <name>Vermiculite aggregate concrete</name> + <density>450.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.17</conductivity> + </material> + <material> + <id>12</id> + <name>No fines concrete</name> + <density>1800.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.96</conductivity> + </material> + <material> + <id>13</id> + <name>Glass reinforced concrete</name> + <density>1950.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.9</conductivity> + </material> + <material> + <id>14</id> + <name>Reinforced concrete</name> + <density>2240.0</density> + <heatCapacity>900.0</heatCapacity> + <conductivity>1.95</conductivity> + <embodiedEnergy>0.46</embodiedEnergy> + <embodiedCarbon>0.18</embodiedCarbon> + <constructionDescription>concrete 25 MPa, steel low alloyed, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + </materialCategory> + <materialCategory> + <name>Ground covering</name> + <material> + <id>15</id> + <name>Infusorial (9% mc)</name> + <density>480.0</density> + <heatCapacity>180.0</heatCapacity> + <conductivity>0.09</conductivity> + </material> + <material> + <id>16</id> + <name>Gravel based</name> + <density>2050.0</density> + <heatCapacity>184.0</heatCapacity> + <conductivity>0.52</conductivity> + </material> + <material> + <id>17</id> + <name>Common earth</name> + <density>1460.0</density> + <heatCapacity>879.0</heatCapacity> + <conductivity>1.28</conductivity> + </material> + </materialCategory> + <materialCategory> + <name>Insulation</name> + <material> + <id>18</id> + <name>Asbestos insulation</name> + <density>577.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.16</conductivity> + </material> + <material> + <id>19</id> + <name>Cork insulation</name> + <density>105.0</density> + <heatCapacity>1810.0</heatCapacity> + <conductivity>0.045</conductivity> + </material> + <material> + <id>20</id> + <name>Woodwool</name> + <density>500.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>0.1</conductivity> + </material> + <material> + <id>21</id> + <name>Glasswool</name> + <density>250.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.04</conductivity> + <embodiedEnergy>2.98</embodiedEnergy> + <embodiedCarbon>0.54</embodiedCarbon> + <constructionDescription>glaswool mat for insulation, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>22</id> + <name>Sheeps wool</name> + <density>198.0</density> + <heatCapacity>1360.0</heatCapacity> + <conductivity>0.06</conductivity> + </material> + <material> + <id>23</id> + <name>Mineral fibre</name> + <density>105.0</density> + <heatCapacity>1800.0</heatCapacity> + <conductivity>0.045</conductivity> + </material> + <material> + <id>24</id> + <name>Urea formaldehyde foam (UFFI)</name> + <density>30.0</density> + <heatCapacity>1764.0</heatCapacity> + <conductivity>0.03</conductivity> + </material> + <material> + <id>25</id> + <name>Polyurethane (PUR)</name> + <density>30.0</density> + <heatCapacity>837.0</heatCapacity> + <conductivity>0.025</conductivity> + </material> + <material> + <id>26</id> + <name>Foamed glass</name> + <density>125.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.05</conductivity> + <embodiedEnergy>9.04</embodiedEnergy> + <embodiedCarbon>2.04</embodiedCarbon> + <constructionDescription>foamed glass, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>27</id> + <name>Cellulose (loose fill)</name> + <density>300.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.037</conductivity> + <embodiedEnergy>2.98</embodiedEnergy> + <embodiedCarbon>0.54</embodiedCarbon> + <constructionDescription>cellulose loose fill including blow in, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>28</id> + <name>Extruded polystyrene (XPS 030)</name> + <density>32.0</density> + <heatCapacity>1412.0</heatCapacity> + <conductivity>0.03</conductivity> + </material> + <material> + <id>29</id> + <name>Expanded polystyrene (EPS 040)</name> + <density>25.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>0.04</conductivity> + <embodiedEnergy>27.2</embodiedEnergy> + <embodiedCarbon>3.83</embodiedCarbon> + <constructionDescription>polystyrene, CO2 blown, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.13</disposalCarbon> + <disposalDescription>100% sent to sanitary landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>30</id> + <name>Expanded polystyrene (EPS 035)</name> + <density>25.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>0.035</conductivity> + <embodiedEnergy>27.2</embodiedEnergy> + <embodiedCarbon>3.83</embodiedCarbon> + <constructionDescription>polystyrene, CO2 blown, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.13</disposalCarbon> + <disposalDescription>100% sent to sanitary landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>31</id> + <name>Expanded PVC</name> + <density>55.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>0.04</conductivity> + </material> + <material> + <id>32</id> + <name>Silicon</name> + <density>700.0</density> + <heatCapacity>1004.0</heatCapacity> + <conductivity>0.18</conductivity> + </material> + <material> + <id>33</id> + <name>Wool felt underlay</name> + <density>160.0</density> + <heatCapacity>1360.0</heatCapacity> + <conductivity>0.04</conductivity> + </material> + <material> + <id>34</id> + <name>Cellular rubber underlay</name> + <density>400.0</density> + <heatCapacity>1360.0</heatCapacity> + <conductivity>0.1</conductivity> + </material> + <material> + <id>35</id> + <name>Synthetic carpet</name> + <density>160.0</density> + <heatCapacity>2500.0</heatCapacity> + <conductivity>0.06</conductivity> + </material> + </materialCategory> + <materialCategory> + <name>Metal</name> + <material> + <id>36</id> + <name>Copper</name> + <density>8900.0</density> + <heatCapacity>434.0</heatCapacity> + <conductivity>200.0</conductivity> + </material> + <material> + <id>37</id> + <name>Steel</name> + <density>7800.0</density> + <heatCapacity>507.0</heatCapacity> + <conductivity>50.0</conductivity> + </material> + <material> + <id>38</id> + <name>Aluminium</name> + <density>2800.0</density> + <heatCapacity>905.0</heatCapacity> + <conductivity>160.0</conductivity> + </material> + </materialCategory> + <materialCategory> + <name>Plaster</name> + <material> + <id>39</id> + <name>Dense plaster</name> + <density>1300.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.5</conductivity> + </material> + <material> + <id>40</id> + <name>Light plaster</name> + <density>600.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.16</conductivity> + </material> + <material> + <id>41</id> + <name>Gypsum plasterboard</name> + <density>950.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.16</conductivity> + <embodiedEnergy>1.61</embodiedEnergy> + <embodiedCarbon>0.43</embodiedCarbon> + <constructionDescription>produced from 100% natural gypsum, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>42</id> + <name>Perlite plasterboard</name> + <density>800.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.18</conductivity> + </material> + <material> + <id>43</id> + <name>Gypsum plastering</name> + <density>1200.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.42</conductivity> + <embodiedEnergy>0.3</embodiedEnergy> + <embodiedCarbon>0.07</embodiedCarbon> + <constructionDescription>gypsum plastering made of gypsum, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>44</id> + <name>Perlite plastering</name> + <density>400.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.08</conductivity> + </material> + <material> + <id>45</id> + <name>Vermiculite plastering</name> + <density>720.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.2</conductivity> + </material> + </materialCategory> + <materialCategory> + <name>Stone</name> + <material> + <id>46</id> + <name>Sandstone</name> + <density>2000.0</density> + <heatCapacity>724.0</heatCapacity> + <conductivity>1.3</conductivity> + <embodiedEnergy>0.45</embodiedEnergy> + <embodiedCarbon>0.17</embodiedCarbon> + <constructionDescription>sand-lime brick, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>47</id> + <name>Granite</name> + <density>2600.0</density> + <heatCapacity>905.0</heatCapacity> + <conductivity>2.5</conductivity> + </material> + <material> + <id>48</id> + <name>Marble</name> + <density>2500.0</density> + <heatCapacity>796.0</heatCapacity> + <conductivity>2.0</conductivity> + </material> + <material> + <id>49</id> + <name>Limestone</name> + <density>2180.0</density> + <heatCapacity>724.0</heatCapacity> + <conductivity>1.5</conductivity> + </material> + <material> + <id>50</id> + <name>Slate</name> + <density>2700.0</density> + <heatCapacity>760.0</heatCapacity> + <conductivity>2.0</conductivity> + </material> + <material> + <id>51</id> + <name>Gravel</name> + <density>1840.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.36</conductivity> + <embodiedEnergy>0.08</embodiedEnergy> + <embodiedCarbon>0.02</embodiedCarbon> + <constructionDescription>gravel, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>52</id> + <name>Chippings</name> + <density>1800.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.96</conductivity> + </material> + <material> + <id>53</id> + <name>Pumice stone</name> + <density>1280.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.53</conductivity> + <embodiedEnergy>0.44</embodiedEnergy> + <embodiedCarbon>0.24</embodiedCarbon> + <constructionDescription>light weight concrete block - pumice, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>54</id> + <name>Sand</name> + <density>1500.0</density> + <heatCapacity>830.0</heatCapacity> + <conductivity>0.2</conductivity> + <embodiedEnergy>0.05</embodiedEnergy> + <embodiedCarbon>0.01</embodiedCarbon> + <constructionDescription>sand, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>55</id> + <name>Cinder aggregate</name> + <density>1000.0</density> + <heatCapacity>800.0</heatCapacity> + <conductivity>0.4</conductivity> + <embodiedEnergy>0.04</embodiedEnergy> + <embodiedCarbon>0.01</embodiedCarbon> + <constructionDescription>ground granulated plast furnace slag, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.07</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + </materialCategory> + <materialCategory> + <name>Tile</name> + <material> + <id>56</id> + <name>Concrete lightweight screed</name> + <density>1200.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.41</conductivity> + </material> + <material> + <id>57</id> + <name>Concrete screed</name> + <density>2100.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>1.28</conductivity> + </material> + <material> + <id>58</id> + <name>Granolithic screed</name> + <density>2085.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.87</conductivity> + </material> + <material> + <id>59</id> + <name>Cement screed</name> + <density>2100.0</density> + <heatCapacity>650.0</heatCapacity> + <conductivity>1.4</conductivity> + <embodiedEnergy>0.36</embodiedEnergy> + <embodiedCarbon>0.2</embodiedCarbon> + <constructionDescription> cement is portland cement, strength class Z 42.5, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.12</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to material landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>60</id> + <name>Rendering dry</name> + <density>1300.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>0.5</conductivity> + </material> + <material> + <id>61</id> + <name>Rendering (1% mc)</name> + <density>1431.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>1.13</conductivity> + <embodiedEnergy>0.21</embodiedEnergy> + <embodiedCarbon>0.06</embodiedCarbon> + <constructionDescription>clay plaster (sand: 0.55kg, clay: 0.25kg, water: 0.2kg), produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.1</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>62</id> + <name>Rendering (8% mc)</name> + <density>1329.0</density> + <heatCapacity>1014.0</heatCapacity> + <conductivity>0.79</conductivity> + <embodiedEnergy>0.21</embodiedEnergy> + <embodiedCarbon>0.06</embodiedCarbon> + <constructionDescription>clay plaster (sand: 0.55kg, clay: 0.25kg, water: 0.2kg), produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.1</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>63</id> + <name>Aged rendering</name> + <density>1329.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.79</conductivity> + <embodiedEnergy>0.21</embodiedEnergy> + <embodiedCarbon>0.06</embodiedCarbon> + <constructionDescription>clay plaster (sand: 0.55kg, clay: 0.25kg, water: 0.2kg), produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.1</disposalEnergy> + <disposalCarbon>0.02</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>64</id> + <name>Clay tile</name> + <density>1900.0</density> + <heatCapacity>837.0</heatCapacity> + <conductivity>0.85</conductivity> + </material> + <material> + <id>65</id> + <name>Concrete tile</name> + <density>2100.0</density> + <heatCapacity>837.0</heatCapacity> + <conductivity>1.1</conductivity> + </material> + <material> + <id>66</id> + <name>Slate tile</name> + <density>2700.0</density> + <heatCapacity>760.0</heatCapacity> + <conductivity>2.0</conductivity> + </material> + <material> + <id>67</id> + <name>Plastic tile</name> + <density>1050.0</density> + <heatCapacity>837.0</heatCapacity> + <conductivity>0.5</conductivity> + </material> + <material> + <id>68</id> + <name>Rubber tile</name> + <density>1600.0</density> + <heatCapacity>2000.0</heatCapacity> + <conductivity>0.3</conductivity> + </material> + <material> + <id>69</id> + <name>Cork tile</name> + <density>530.0</density> + <heatCapacity>1800.0</heatCapacity> + <conductivity>0.08</conductivity> + </material> + <material> + <id>70</id> + <name>Asphalt/asbestos roof</name> + <density>1900.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.55</conductivity> + </material> + <material> + <id>71</id> + <name>P.V.C./asbestos roof</name> + <density>2000.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.85</conductivity> + </material> + <material> + <id>72</id> + <name>Straw thatch</name> + <density>240.0</density> + <heatCapacity>180.0</heatCapacity> + <conductivity>0.07</conductivity> + </material> + <material> + <id>73</id> + <name>Ceiling (mineral)</name> + <density>290.0</density> + <heatCapacity>2000.0</heatCapacity> + <conductivity>0.03</conductivity> + </material> + <material> + <id>74</id> + <name>Ceiling (plaster)</name> + <density>1120.0</density> + <heatCapacity>840.0</heatCapacity> + <conductivity>0.38</conductivity> + </material> + <material> + <id>75</id> + <name>Bitumen felt</name> + <density>1700.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.5</conductivity> + </material> + <material> + <id>76</id> + <name>Roofing felt</name> + <density>960.0</density> + <heatCapacity>837.0</heatCapacity> + <conductivity>0.19</conductivity> + <embodiedEnergy>12.41</embodiedEnergy> + <embodiedCarbon>0.85</embodiedCarbon> + <constructionDescription>plastic liner consisting of polymer EP4 flame retardant and bitumen seal, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.12</disposalEnergy> + <disposalCarbon>0.11</disposalCarbon> + <disposalDescription>100% sent to sanitary landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>77</id> + <name>Asphalt mastic roofing</name> + <density>2325.0</density> + <heatCapacity>837.0</heatCapacity> + <conductivity>1.15</conductivity> + </material> + <material> + <id>78</id> + <name>Asphalt</name> + <density>1907.0</density> + <heatCapacity>833.0</heatCapacity> + <conductivity>0.62</conductivity> + </material> + <material> + <id>79</id> + <name>Asbestos cement</name> + <density>1500.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.36</conductivity> + </material> + <material> + <id>80</id> + <name>Cement sheet</name> + <density>700.0</density> + <heatCapacity>1050.0</heatCapacity> + <conductivity>0.36</conductivity> + </material> + </materialCategory> + <materialCategory> + <name>Wood</name> + <material> + <id>81</id> + <name>Wood block</name> + <density>800.0</density> + <heatCapacity>2093.0</heatCapacity> + <conductivity>0.16</conductivity> + </material> + <material> + <id>82</id> + <name>Hardboard medium</name> + <density>600.0</density> + <heatCapacity>2027.0</heatCapacity> + <conductivity>0.08</conductivity> + <embodiedEnergy>13.13</embodiedEnergy> + <embodiedCarbon>1.3</embodiedCarbon> + <constructionDescription>fibreboard hard, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.12</disposalEnergy> + <disposalCarbon>0.08</disposalCarbon> + <disposalDescription>100% sent to sanitary landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>83</id> + <name>Hardboard standard</name> + <density>900.0</density> + <heatCapacity>2027.0</heatCapacity> + <conductivity>0.13</conductivity> + </material> + <material> + <id>84</id> + <name>Timber flooring</name> + <density>650.0</density> + <heatCapacity>1195.0</heatCapacity> + <conductivity>0.14</conductivity> + </material> + <material> + <id>85</id> + <name>Corkboard</name> + <density>160.0</density> + <heatCapacity>1888.0</heatCapacity> + <conductivity>0.04</conductivity> + </material> + <material> + <id>86</id> + <name>Chipboard</name> + <density>800.0</density> + <heatCapacity>2093.0</heatCapacity> + <conductivity>0.15</conductivity> + </material> + <material> + <id>87</id> + <name>Softboard</name> + <density>350.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.56</conductivity> + </material> + <material> + <id>88</id> + <name>Weatherboard</name> + <density>650.0</density> + <heatCapacity>2000.0</heatCapacity> + <conductivity>0.14</conductivity> + </material> + <material> + <id>89</id> + <name>Hardwood (oak, mapple, walnut...)</name> + <density>700.0</density> + <heatCapacity>1412.0</heatCapacity> + <conductivity>0.15</conductivity> + <embodiedEnergy>1.59</embodiedEnergy> + <embodiedCarbon>0.03</embodiedCarbon> + <constructionDescription>sawing of hardwood, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.08</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>90</id> + <name>Softwood (pine, spruce...)</name> + <density>630.0</density> + <heatCapacity>2760.0</heatCapacity> + <conductivity>0.13</conductivity> + </material> + <material> + <id>91</id> + <name>Plywood</name> + <density>560.0</density> + <heatCapacity>2500.0</heatCapacity> + <conductivity>0.15</conductivity> + </material> + <material> + <id>92</id> + <name>Fibreboard</name> + <density>300.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.06</conductivity> + <embodiedEnergy>5.23</embodiedEnergy> + <embodiedCarbon>1.2</embodiedCarbon> + <constructionDescription>fibreboard soft without adhesives, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.08</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + </materialCategory> + <materialCategory> + <name>Others</name> + <material> + <id>93</id> + <name>Loam</name> + <density>1280.0</density> + <heatCapacity>1000.0</heatCapacity> + <conductivity>0.55</conductivity> + <embodiedEnergy>0.06</embodiedEnergy> + <embodiedCarbon>0.01</embodiedCarbon> + <constructionDescription>market for clay, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.08</disposalEnergy> + <disposalCarbon>0.01</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + <material> + <id>94</id> + <name>Air layer (horizontal 10cm)</name> + <density>1.2</density> + <heatCapacity>1400.0</heatCapacity> + <conductivity>0.45</conductivity> + <constructionDescription>air layer inbetween different construction types</constructionDescription> + <disposalDescription>no disposal for air layer</disposalDescription> + </material> + <material> + <id>95</id> + <name>Air layer (vertical 10cm)</name> + <density>1.2</density> + <heatCapacity>1400.0</heatCapacity> + <conductivity>0.55</conductivity> + <constructionDescription>air layer inbetween different construction types</constructionDescription> + <disposalDescription>no disposal for air layer</disposalDescription> + </material> + <material> + <id>96</id> + <name>Rafters with glasswool insulation</name> + <density>288.0</density> + <heatCapacity>1032.0</heatCapacity> + <conductivity>0.05</conductivity> + <embodiedEnergy>15.18</embodiedEnergy> + <embodiedCarbon>0.71</embodiedCarbon> + <constructionDescription>ratio 80/20 Vol.-% (glasswool/rafters), glued laminated timber used as rafters, produced in Germany, transportation 50 km</constructionDescription> + <disposalEnergy>0.11</disposalEnergy> + <disposalCarbon>0.06</disposalCarbon> + <disposalDescription>100% sent to landfill, transportation 50 km</disposalDescription> + </material> + </materialCategory> + <constructionCategory> + <name>outWall</name> + <constructionType> + <id>0</id> + <name>Aerated concrete-25cm</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.25</thickness> + </layer> + <layer> + <materialId>41</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>1</id> + <name>Aerated concrete-25cm_EnEV2016</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.08</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.25</thickness> + </layer> + <layer> + <materialId>41</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>2</id> + <name>Aerated concrete-25cm_RefAdv</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.24</thickness> + </layer> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.25</thickness> + </layer> + <layer> + <materialId>41</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>3</id> + <name>Aerated concrete-25cm_RefMed</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.12</thickness> + </layer> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.25</thickness> + </layer> + <layer> + <materialId>41</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>4</id> + <name>Aerated concrete-30cm</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.3</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>5</id> + <name>Aerated concrete-30cm_EnEV2016</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.075</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.3</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>6</id> + <name>Aerated concrete-30cm_RefAdv</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.24</thickness> + </layer> + <layer> + <materialId>61</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.3</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>7</id> + <name>Aerated concrete-30cm_RefMed</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.12</thickness> + </layer> + <layer> + <materialId>61</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.3</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>8</id> + <name>Aerated concrete-50cm</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.5</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>9</id> + <name>Aerated concrete-50cm_EnEV2016</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.03</thickness> + </layer> + <layer> + <materialId>9</materialId> + <thickness>0.5</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>24</id> + <name>Breeze block-28cm</name> + <layer> + <materialId>63</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>6</materialId> + <thickness>0.27</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>25</id> + <name>Breeze block-28cm_EnEV2016</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.12</thickness> + </layer> + <layer> + <materialId>63</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>6</materialId> + <thickness>0.27</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>26</id> + <name>Breeze block-28cm_RefAdv</name> + <layer> + <materialId>62</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>30</materialId> + <thickness>0.24</thickness> + </layer> + <layer> + <materialId>63</materialId> + <thickness>0.01</thickness> + </layer> + <layer> + <materialId>6</materialId> + <thickness>0.27</thickness> + </layer> + <layer> + <materialId>43</materialId> + <thickness>0.01</thickness> + </layer> + </constructionType> + <constructionType> + <id>27</id> + 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<uValue>1.047</uValue> + </outWalls> + <groundShell> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.683</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>169</constructionTypeId> + <uValue>0.238</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>33</constructionTypeId> + <uValue>0.244</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="Part_Wall_EnEV2016"> + <outWalls> + <constructionTypeId>76</constructionTypeId> + <uValue>0.244</uValue> + </outWalls> + <groundShell> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.683</uValue> + </groundShell> + <pitchedRoof> + <uValue>0.743</uValue> + </pitchedRoof> + <topCeiling> + <uValue>0.635</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="Part_Ground_EnEV2016"> + <outWalls> + <uValue>1.047</uValue> + </outWalls> + <groundShell> + <constructionTypeId>109</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.301</uValue> + </groundShell> + <pitchedRoof> + <uValue>0.743</uValue> + </pitchedRoof> + <topCeiling> + <uValue>0.635</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="Part_Window_EnEV2016"> + <outWalls> + <windowTypeId>3</windowTypeId> + <uValue>1.047</uValue> + </outWalls> + <groundShell> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.683</uValue> + </groundShell> + <pitchedRoof> + <windowTypeId>3</windowTypeId> + <uValue>0.743</uValue> + </pitchedRoof> + <topCeiling> + <windowTypeId>3</windowTypeId> + <uValue>0.635</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + </buildingYearRange> + <buildingYearRange fromInclusive="1979" toInclusive="2013"> + <averageStoreyHeight>2.6</averageStoreyHeight> + <buildingEffectiveThermalCapacity>90.0</buildingEffectiveThermalCapacity> + <thermalBridgeUValue>0.05</thermalBridgeUValue> + <indirectlyHeatedAreaRatio>0.15</indirectlyHeatedAreaRatio> + <infiltrationRate>0.3</infiltrationRate> + <outWalls> + <constructionTypeId>79</constructionTypeId> + <windowTypeId>1</windowTypeId> + <windowRatio>0.18</windowRatio> + <uValue>0.866</uValue> + </outWalls> + <groundShell> + <constructionTypeId>108</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.683</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>154</constructionTypeId> + <windowTypeId>1</windowTypeId> + <uValue>0.426</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>67</constructionTypeId> + <windowTypeId>1</windowTypeId> + <uValue>0.431</uValue> + </topCeiling> + <buildingPhysicsVariant id="MediumRefurbishment"> + <outWalls> + <constructionTypeId>82</constructionTypeId> + <windowTypeId>2</windowTypeId> + <uValue>0.218</uValue> + </outWalls> + <groundShell> + <constructionTypeId>111</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.267</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>171</constructionTypeId> + <windowTypeId>2</windowTypeId> + <uValue>0.364</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>70</constructionTypeId> + <windowTypeId>2</windowTypeId> + <uValue>0.171</uValue> + </topCeiling> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="AdvancedRefurbishment"> + <thermalBridgeUValue>0.03</thermalBridgeUValue> + <outWalls> + <constructionTypeId>81</constructionTypeId> + <windowTypeId>4</windowTypeId> + <uValue>0.125</uValue> + </outWalls> + <groundShell> + <constructionTypeId>110</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.204</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>170</constructionTypeId> + <windowTypeId>4</windowTypeId> + <uValue>0.138</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>69</constructionTypeId> + <uValue>0.091</uValue> + </topCeiling> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="EnEV2016"> + <outWalls> + <constructionTypeId>80</constructionTypeId> + <windowTypeId>3</windowTypeId> + <uValue>0.241</uValue> + </outWalls> + <groundShell> + <constructionTypeId>109</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.301</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>169</constructionTypeId> + <windowTypeId>3</windowTypeId> + <uValue>0.238</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>68</constructionTypeId> + <windowTypeId>3</windowTypeId> + <uValue>0.239</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="Part_Roof_EnEV2016"> + <outWalls> + <uValue>0.866</uValue> + </outWalls> + <groundShell> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.683</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>169</constructionTypeId> + <uValue>0.238</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>68</constructionTypeId> + <uValue>0.239</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="Part_Wall_EnEV2016"> + <outWalls> + <constructionTypeId>80</constructionTypeId> + <uValue>0.241</uValue> + </outWalls> + <groundShell> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.683</uValue> + </groundShell> + <pitchedRoof> + <uValue>0.426</uValue> + </pitchedRoof> + <topCeiling> + <uValue>0.431</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="Part_Ground_EnEV2016"> + <outWalls> + <uValue>0.866</uValue> + </outWalls> + <groundShell> + <constructionTypeId>109</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.301</uValue> + </groundShell> + <pitchedRoof> + <uValue>0.426</uValue> + </pitchedRoof> + <topCeiling> + <uValue>0.431</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="Part_Window_EnEV2016"> + <outWalls> + <windowTypeId>3</windowTypeId> + <uValue>0.866</uValue> + </outWalls> + <groundShell> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.683</uValue> + </groundShell> + <pitchedRoof> + <windowTypeId>3</windowTypeId> + <uValue>0.426</uValue> + </pitchedRoof> + <topCeiling> + <windowTypeId>3</windowTypeId> + <uValue>0.431</uValue> + </topCeiling> + <sharedWalls/> + <interiorWalls/> + <intermediaryFloors/> + </buildingPhysicsVariant> + </buildingYearRange> + <buildingYearRange fromInclusive="2014"> + <averageStoreyHeight>2.6</averageStoreyHeight> + <buildingEffectiveThermalCapacity>90.0</buildingEffectiveThermalCapacity> + <thermalBridgeUValue>0.04</thermalBridgeUValue> + <indirectlyHeatedAreaRatio>0.15</indirectlyHeatedAreaRatio> + <infiltrationRate>0.3</infiltrationRate> + <outWalls> + <constructionTypeId>144</constructionTypeId> + <windowTypeId>3</windowTypeId> + <windowRatio>0.16</windowRatio> + <uValue>0.237</uValue> + </outWalls> + <groundShell> + <constructionTypeId>88</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.301</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>169</constructionTypeId> + <windowTypeId>3</windowTypeId> + <uValue>0.238</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>45</constructionTypeId> + <windowTypeId>3</windowTypeId> + <uValue>0.235</uValue> + </topCeiling> + <buildingPhysicsVariant id="EnEV2016"> + <outWalls> + <uValue>0.237</uValue> + </outWalls> + <groundShell> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.301</uValue> + </groundShell> + <pitchedRoof> + <uValue>0.238</uValue> + </pitchedRoof> + <topCeiling> + <uValue>0.235</uValue> + </topCeiling> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="EffizienzHaus70"> + <outWalls> + <constructionTypeId>145</constructionTypeId> + <windowTypeId>4</windowTypeId> + <uValue>0.229</uValue> + </outWalls> + <groundShell> + <constructionTypeId>89</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.301</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>162</constructionTypeId> + <windowTypeId>4</windowTypeId> + <uValue>0.168</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>52</constructionTypeId> + <windowTypeId>4</windowTypeId> + <uValue>0.166</uValue> + </topCeiling> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="EffizienzHaus55"> + <outWalls> + <constructionTypeId>146</constructionTypeId> + <windowTypeId>6</windowTypeId> + <uValue>0.202</uValue> + </outWalls> + <groundShell> + <constructionTypeId>90</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.231</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>163</constructionTypeId> + <windowTypeId>6</windowTypeId> + <uValue>0.14</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>53</constructionTypeId> + <windowTypeId>6</windowTypeId> + <uValue>0.139</uValue> + </topCeiling> + </buildingPhysicsVariant> + <buildingPhysicsVariant id="EffizienzHaus40"> + <outWalls> + <constructionTypeId>147</constructionTypeId> + <windowTypeId>5</windowTypeId> + <uValue>0.15</uValue> + </outWalls> + <groundShell> + <constructionTypeId>91</constructionTypeId> + <windowRatio>0.0</windowRatio> + <shortWaveReflectance>0.0</shortWaveReflectance> + <uValue>0.204</uValue> + </groundShell> + <pitchedRoof> + <constructionTypeId>164</constructionTypeId> + <windowTypeId>5</windowTypeId> + <uValue>0.114</uValue> + </pitchedRoof> + <topCeiling> + <constructionTypeId>58</constructionTypeId> + <windowTypeId>5</windowTypeId> + <uValue>0.112</uValue> + </topCeiling> + </buildingPhysicsVariant> + </buildingYearRange> + </buildingType> +</buildingPhysicsLibrary> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/02_PhysicsPreprocessor.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/02_PhysicsPreprocessor.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..0aca9bfff54335471dcff42f60c79104be833b8b --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/02_PhysicsPreprocessor.step/params.xml @@ -0,0 +1,27 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflowsteps.PhysicsPreprocessorStep" id="PhysicsPreprocessorStep0"> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>selectedNextStepPath</string> + <void method="set"> + <object idref="PhysicsPreprocessorStep0"/> + <string>03_UsagePreprocessor.step</string> + </void> + </void> + <void property="libraries"> + <void method="add"> + <object class="de.hft.stuttgart.simstadt2.assessment.PhysicsXmlLib"> + <void property="path"> + <string>C:\Users\eric.duminil\git\simstadt2\TestRepository\Gruenbuehl.proj\01_HeatDemand.flow\01_Preprocessing.step\02_PhysicsPreprocessor.step\GermanBuildingTypologyLibrary_IWU.xml</string> + </void> + </object> + </void> + </void> + <void property="name"> + <string>Base</string> + </void> + <void property="selectedLibrary"> + <int>2</int> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/03_UsagePreprocessor.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/03_UsagePreprocessor.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..4d140a54d5eb639fcec3a08bd6c86f7af245c679 --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/03_UsagePreprocessor.step/params.xml @@ -0,0 +1,8 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflowsteps.UsagePreprocessorStep"> + <void property="name"> + <string>Base</string> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..075a0b46e5d3bd444263e4f8e6ff8e4c1cb7c573 --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/01_Preprocessing.step/params.xml @@ -0,0 +1,22 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflowsteps.Preprocessing" id="Preprocessing0"> + <void class="de.hftstuttgart.hierarchicworkflow.Workflow" method="getField"> + <string>selectedStartStepPath</string> + <void method="set"> + <object idref="Preprocessing0"/> + <string>00_GeometricPreprocessor.step</string> + </void> + </void> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>selectedNextStepPath</string> + <void method="set"> + <object idref="Preprocessing0"/> + <string>02_WeatherProcessor.step</string> + </void> + </void> + <void property="name"> + <string>Base</string> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/02_WeatherProcessor.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/02_WeatherProcessor.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..d96dd4f396c30fe483c78839754a1fcc33c50d7c --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/02_WeatherProcessor.step/params.xml @@ -0,0 +1,15 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflowsteps.WeatherProcessorStep" id="WeatherProcessorStep0"> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>selectedNextStepPath</string> + <void method="set"> + <object idref="WeatherProcessorStep0"/> + <string>03_IrradianceProcessor.step</string> + </void> + </void> + <void property="name"> + <string>Base</string> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/03_IrradianceProcessor.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/03_IrradianceProcessor.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..a1852c8bcddf03d7faf56744acfbb0dba8125a4c --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/03_IrradianceProcessor.step/params.xml @@ -0,0 +1,15 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflowsteps.IrradianceProcessorStep" id="IrradianceProcessorStep0"> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>selectedNextStepPath</string> + <void method="set"> + <object idref="IrradianceProcessorStep0"/> + <string>04_MonthlyEnergyBalance.step</string> + </void> + </void> + <void property="name"> + <string>Base</string> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/04_MonthlyEnergyBalance.step/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/04_MonthlyEnergyBalance.step/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..9c25cedad5d9acc73d59f45fe57a70984815f139 --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/04_MonthlyEnergyBalance.step/params.xml @@ -0,0 +1,8 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflowsteps.MonthlyEnergyBalanceStep"> + <void property="name"> + <string>Base</string> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/params.xml b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/params.xml new file mode 100644 index 0000000000000000000000000000000000000000..ba8489b266cb971d4ecafe3d6a5476a23bf93ff7 --- /dev/null +++ b/python_scripts/run_simstadt_from_python/TemplateWorkflows/01_HeatDemand.flow/params.xml @@ -0,0 +1,28 @@ +<?xml version="1.0" encoding="UTF-8"?> +<java version="1.8.0_345" class="java.beans.XMLDecoder"> + <object class="eu.simstadt.workflows.CityGmlWorkflow" id="CityGmlWorkflow0"> + <void class="de.hftstuttgart.hierarchicworkflow.Workflow" method="getField"> + <string>selectedStartStepPath</string> + <void method="set"> + <object idref="CityGmlWorkflow0"/> + <string>00_ImportCityGml.step</string> + </void> + </void> + <void class="de.hftstuttgart.hierarchicworkflow.WorkflowStep" method="getField"> + <string>startStep</string> + <void method="set"> + <object idref="CityGmlWorkflow0"/> + <boolean>true</boolean> + </void> + </void> + <void property="name"> + <string>Gruenbuehl_HeatDemand</string> + </void> + <void property="shortName"> + <string>HeatDemand</string> + </void> + <void property="workflowProvider"> + <object class="de.hftstuttgart.simstadtworkflows.energy.HeatDemandAnalysisWorkflowProvider"/> + </void> + </object> +</java> diff --git a/python_scripts/run_simstadt_from_python/variable_window_ratio.py b/python_scripts/run_simstadt_from_python/variable_window_ratio.py new file mode 100644 index 0000000000000000000000000000000000000000..a8e683cdfb012dd69817ef44f2f6ec76d86f9dfd --- /dev/null +++ b/python_scripts/run_simstadt_from_python/variable_window_ratio.py @@ -0,0 +1,6 @@ +from run_simstadt_workflow import find_simstadt + + +SIMSTADT2_GLOB = 'Desktop/SimStadt2_0.*/' + +print(find_simstadt(SIMSTADT2_GLOB))