The paper presents the energy performances in a life cycle perspective of a prefabricated building. The building was simulated in energy plus and validated on monitored data. To avoid the shifting of energy burdens from one life cycle stage to others, a Life Cycle Energy Assessment was performed. The primary energy use throughout the building’s life cycle is 1,242 GJ. The materials production stage consumes the highest amount of primary energy (680 GJ) followed by the use stage (484 GJ), while the construction and end-of-life require respectively 1.7 % and the 4.6 % of total primary energy
New high-energy-performance buildings developed between the end of the 90’s and the new millennium l...
Taking the building sector’s huge impact on the environment into consideration, the European Union a...
PLEA 2008 – 25th Conference on Passive and Low Energy Architecture, Dublin, 22nd to 24th October 200...
The paper presents the energy performances in a life cycle perspective of a prefabricated building. ...
The paper explores the energy performances and environmental impacts of a prefabricated building mod...
The impact of prefabrication in the building sector is currently undergoing significant growth. Alth...
Most zero-energy concepts focus on a reduction of the non-renewable operational energy use in buildi...
Purpose: Since the construction sector is a considerable energy consumer and greenhouse gas (GHG) pr...
tThe paper starts from the results of one of the six case-studies of the SubTask B in the Internatio...
Taking the building sector’s huge impact on the environment into consideration, the European Union a...
As an effective strategy for improving the productivity of the construction industry, prefabricated ...
Net Zero Energy Buildings can play a key role in reducing the energy use, greenhouse gas emissions a...
AbstractThe paper analyses the impact of embodied energy over a building's life cycle as an importan...
A systematic analysis of green-house gases emission (carbon footprint) and primary energy consumptio...
Abstract Life Cycle Analysis applications in the construction sector are growing due to the increase...
New high-energy-performance buildings developed between the end of the 90’s and the new millennium l...
Taking the building sector’s huge impact on the environment into consideration, the European Union a...
PLEA 2008 – 25th Conference on Passive and Low Energy Architecture, Dublin, 22nd to 24th October 200...
The paper presents the energy performances in a life cycle perspective of a prefabricated building. ...
The paper explores the energy performances and environmental impacts of a prefabricated building mod...
The impact of prefabrication in the building sector is currently undergoing significant growth. Alth...
Most zero-energy concepts focus on a reduction of the non-renewable operational energy use in buildi...
Purpose: Since the construction sector is a considerable energy consumer and greenhouse gas (GHG) pr...
tThe paper starts from the results of one of the six case-studies of the SubTask B in the Internatio...
Taking the building sector’s huge impact on the environment into consideration, the European Union a...
As an effective strategy for improving the productivity of the construction industry, prefabricated ...
Net Zero Energy Buildings can play a key role in reducing the energy use, greenhouse gas emissions a...
AbstractThe paper analyses the impact of embodied energy over a building's life cycle as an importan...
A systematic analysis of green-house gases emission (carbon footprint) and primary energy consumptio...
Abstract Life Cycle Analysis applications in the construction sector are growing due to the increase...
New high-energy-performance buildings developed between the end of the 90’s and the new millennium l...
Taking the building sector’s huge impact on the environment into consideration, the European Union a...
PLEA 2008 – 25th Conference on Passive and Low Energy Architecture, Dublin, 22nd to 24th October 200...