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DESCRIPTION

Thesis 2011

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Page 1: Sustainable BIM

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Social impacts Emissions to air,!water and soil Noise!!!!!Waste Financial returns!!!

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Construction& &

Use& &

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INPUTS!

Materials!50% of all global resources!70% of global timber Energy!50% global energy![45% to operate!5% to construct] Water!40% of water used globally Land!60% of prime agricultural land lost to farming is used for building purposes Investment & cash!!!!!

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IJHHK%4'.01./2 !  The creation and maintenance of a healthy built

environment based on resource efficient and ecological principles.

!  Also referred as High Performance buildings !  And sometimes referred to as Sustainable

Construction !  Architects refer to the process as Ecological Design or

Ecologically Sustainable Design.

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Page 49: Sustainable BIM

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Page 50: Sustainable BIM

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Page 51: Sustainable BIM

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ArchiCAD Educational version, not for resale. Courtesy of Graphisoft.

Energy Balance Evaluation

Key Values

Calculated heat transfer coefficients:

Building shell average:Roofs:External walls:Basement walls:Openings:

U values [W/m2K]0.200.12 - 0.120.12 - 0.200.12 - 0.120.80 - 0.85

Project Name:Project Location: KOTKAActivity Type: ResidentialEvaluation Date: 3.9.2011 18.54

Tempered floor area: 158,20 m2

Ventilated volume: 408,46 m3

Outer heat capacity: - J/m2K

Energy Consumption

Yearly total Yearly specific

Source kWh/year €/year kWh/m2,year €/m2,year

0.006.920109520.1% Natural gas 4.1327.52653435479.9% Electricity

4.1334.446535449Total: 5449 kWh34.44 kWh/m2

Carbon Footprint

CO2 emission as a result of operating this building is 780 kg CO2/year

This amount of CO2 is absorbed in one year by 29 developed pine trees.780

Monthly Energy Balance

Emitted energy per Month

Supplied energy per Month

6410

4000

2000

0Transmission

Infiltration

Natural ventilation

Hot water

Natural cooling

4000

2000

0 Solar gain

Human heat gain

Electricity

Natural heat source

Primary hot water source

[kWh] Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec

ArchiCAD Educational version, not for resale. Courtesy of Graphisoft.

ArchiCAD Educational version, not for resale. Courtesy of Graphisoft.

Energy Balance Evaluation

Key Values

Calculated heat transfer coefficients:

Building shell average:Roofs:External walls:Basement walls:Openings:

U values [W/m2K]0.200.12 - 0.120.12 - 0.200.12 - 0.120.80 - 0.85

Project Name:Project Location: KOTKAActivity Type: ResidentialEvaluation Date: 3.9.2011 18.57

Tempered floor area: 158,20 m2

Ventilated volume: 408,46 m3

Outer heat capacity: - J/m2K

Energy Consumption

Yearly total Yearly specific

Source kWh/year €/year kWh/m2,year €/m2,year

0.001.4302265.7% Natural gas 3.5823.86566377594.3% Electricity

3.5825.305664002Total: 4002 kWh25.30 kWh/m2

Carbon Footprint

CO2 emission as a result of operating this building is 520 kg CO2/year

This amount of CO2 is absorbed in one year by 19 developed pine trees.520

Monthly Energy Balance

Emitted energy per Month

Supplied energy per Month

6410

4000

2000

0Transmission

Infiltration

Natural ventilation

Hot water

Natural cooling

4000

2000

0 Solar gain

Green energy

Human heat gain

Electricity

Natural heat source

Primary hot water source

[kWh] Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec

ArchiCAD Educational version, not for resale. Courtesy of Graphisoft.

Page 52: Sustainable BIM

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Page 53: Sustainable BIM

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Page 54: Sustainable BIM

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Page 55: Sustainable BIM

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