References
- Moga, L., Moga I., 2009. The energetic performance of the building envelope elements- intersection of linear thermal bridges. The Fifth International Workshop on Energy and Environment of Residential Buildings and The Third International Conference on Built Environment and Public Health EERB-BEPH, Guilin, Guangzhou, China.
- Ascione, F., Bianco, N., De Masi, R. F., de’ Rossi, F. & Vanoli, G. P., 2013. Simplified state space representation for evaluating thermal bridges in building: Modelling, application and validation of a methodology.61, pp. 344–354.
- Cappelletti, F., Gasparella, A., Romagnoni, P. & Baggio, P., 2011. Analysis of the influence of installation thermal bridges on windows performance: The case of clay block walls.43, pp.1435–1442.
- Asdrubali, F., Baldinelli, G. & Bianchi, F., 2012, A quantitative methodology to evaluate thermal bridges in buildings.97, pp. 365–373.
- EN ISO 10211-1:1995, Thermal bridges in building construction- Heat flows and surface temperatures- Part 1: General calculation methods.
- EN ISO 10211:2007, Thermal bridges in building construction -- Heat flows and surface temperatures -- Detailed calculations.
- EN ISO 10211-2:2001, Thermal bridges in building construction. Calculation of heat flows and surface temperatures. Part 2: Linear thermal bridges.
- CSTB catalogue: Determination et calcul des ponts thermiques lineiques et integres des constructions en bois, Societe CTBA.
- C107:2010 (2005). Normativ privind calcul termotehnic al elementelor de constructive ale cladirilor (Romanian norm for the termotechnical calculation of the construction components of buildings).
- 2513 Order from 22.11.2010. Modificarea Reglementării tehnice „Normativ privind calculul termotehnic al elementelor de construcţie ale clădirilor”, indicativ C 107:2005 (Modification of the technical regulation „Norm for the termotechnical calculation of the construction components of buildings indicative C107:2005).
- Evola, G., Margani, G. & Marletta, L., 2011. Energy and cost evaluation of thermal bridge correction in Mediterranean climate.43, pp. 2385–2393.
- Berggren, B. & Wall, M., 2013. Calculation of thermal bridges in (Nordic) building envelopes – Risk of performance failure due to inconsistent use of methodology.65, pp. 331–339.
- Theodosiou, T. G. & Papadopoulos, A. M., 2008. The impact of thermal bridges on the energy demand of buildings with double brick wall constructions.40, pp. 2083–2089.
- Tadeu, A., Simões, I., Simões, N. & Prata, J., 2011. Simulation of dynamic linear thermal bridges using a boundary element method model in the frequency domain.43, pp. 3685–3695.
- Available at
- Gao, Y., Roux, J. J., Zhao, L. H. & Jiang, Y., 2008. Dynamical building simulation: A low order model for thermal bridges losses.40, pp. 2236–2243.
- European Parliament and Council of 19 May 2010, 2010, Directive 2010/31/EU on the energy performance of buildings (recast).
Language: English
Page range: 65 - 71
Submitted on: Sep 21, 2015
Accepted on: Oct 28, 2015
Published on: Dec 30, 2015
Published by: University of Oradea, Civil Engineering and Architecture Faculty
In partnership with: Paradigm Publishing Services
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© 2015 Ligia Moga, I. Moga, published by University of Oradea, Civil Engineering and Architecture Faculty
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.