Thermal modeling and investigation of the most energy-efficient window position

Author:

Misiopecki Cezary,Bouquin Marine,Gustavsen Arild,Jelle Bjørn Petter

Funder

Research Council of Norway

Lian Trevarefabrikk

Lawrence Berkeley National Laboratory

NTNU

SINTEF

Energy Efficiency and Renewable Energy, Office of Building Technology, Building Technologies Program of the U.S. Department of Energy

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Building and Construction,Civil and Structural Engineering

Reference24 articles.

1. K. Voss, E. Musall, IEA-SHC Task 40/ECBCS Annex 52 || Zero Energy Building | Zero Emission Building | Net Zero Energy Solar Buildings, (2010). http://members.iea-shc.org/task40/.

2. Calculation of thermal bridges in (Nordic) building envelopes – Risk of performance failure due to inconsistent use of methodology;Berggren;Energy Build.,2013

3. A. Gustavsen, J.V., Thue, P., Blom, A., Dalehaug, T., Aurlien, S., Grynning, S. Uvsløkk, Prosjektrapport 25: Kuldebroer −Beregning, kulde- broverdier og innvirkning på energibruk. (Project report 25: Thermal bridges − calculation, values, impact on energy use), (2008).

4. E. ISO, 14683. Thermal bridges in building construction–Linear thermal transmittance–Simplified methods and default values., (2007).

5. E. ISO, ISO 10211:2007 Thermal bridges in building construction − Heat flows and surface temperatures − Detailed calculations, (2007).

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