Water and Energy Engineering for Sustainable Buildings Mihouse Project. Varios autores
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Catchment
Distribution and use
Reuse
Outputs
Solid Waste Management
Lightweight Concrete with Addition of Stone Coal (PC)
Calculation of Ecological Footprint
Making of materials
Figure 1.1. Mihouse urban proposal
Figure 1.3. Main Table and Central Table
Figure 1.4. Mihouse Prototype design
Figure 1.5. Assembly of the modules up to the completed building
Figure 2.1. Sloping Slabs
Figure 2.2. Prototype rainwater tank
Figure 2.3. System components groundwater
Figure 2.4. Technical data of low consumption toilet
Figure 2.5. Greywater storage for apartment blocks (zone 1)
Figure 2.6. Greywater storage for apartment blocks (zone 2)
Figure 2.7. Flowchart for greywater treatment system
Figure 2.8. Prototype greywater storage.
Figure 2.9. Drinking water distribution system
Figure 3.1. The Solar Village location
Figure 3.2. Meteorological span figures from 10th November until 10th of December 2014
Figure 3.3. Solar radiation and temperature in an specific day
Figure 3.4. Components and energy flow on a solar PV grid connected system
Figure 3.5. Rooftop with the solar PV system
Figure 3.6. Solar grid-connected inverter
Figure 3.7. Panel technical information
Figure 3.8. System metrics
Figure 3.9. Monthly Production
Figure 3.10. Sources of loss
Figure 3.13. Wring Zones and field segments
Figure 3.14. System Connection
Figure 3.15. Simulation results, cash flow summary
Figure 3.16. Simulation results, cash flow
Figure 3.17. Monthly Average Electric Production
Figure 3.18. PV Output
Figure 3.19. Primary Load
Figure 3.20. Grid sales
Figure 3.21. PV power
Figure 3.22. Frame for a flat roof
Figure 3.20. Heater components
Figure 3.23. Energy Balance Simulation
Figure 3.24. CO2 Emissions Simulation
Figure 4.1. Lifecycle analysis of materials
Figure 4.2. Lightweight concrete