In situ measurement method for the quantification of the thermal transmittance of a non-homogeneous wall or a thermal bridge using an inverse technique and active infrared thermography

被引:24
作者
Francois, Adrien [1 ,2 ]
Ibos, Laurent [1 ]
Feuillet, Vincent [1 ]
Meulemans, Johann [2 ]
机构
[1] Univ Paris Est Creteil, CERTES, F-94010 Creteil, France
[2] St Gobain Res Paris, 39 Quai Lucien Lefranc, F-93300 Aubervilliers, France
关键词
in situ; Measurements; Thermal resistance; Thermal bridges; Building envelope; Inverse methods; Heat transfer coefficient; Active infrared thermography; Non-destructive testing (NDT); BUILDING ENVELOPE; EXPERIMENTAL VALIDATION; ENERGY PERFORMANCE; INSULATION DEFECTS; IMPACT; DIFFUSIVITY; IMPROVEMENT; LOSSES;
D O I
10.1016/j.enbuild.2020.110633
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Thermal bridges tend to increase overall buildings energy demand and might cause water condensation problems. They are thermally characterized by a linear transmission coefficient psi or a point transmission coefficient chi. Today, most studies of thermal bridges are based on theoretical or numerical calculations. Standardized methods define default values and assumptions to make in simple or detailed simulations. The few existing in situ characterization methods of thermal bridges are based on steady-state assumptions. This makes them highly sensitive to weather conditions and often requires very long measurements. The present paper proposes a novel active method for the in situ characterization of a thermal bridge. It generalizes a measurement of a homogeneous wall thermal resistance. The indoor air is rapidly heated for a few hours (typically 6) and the wall thermal response is analyzed with an inverse technique based on a white-box model. Surface temperatures and heat fluxes are measured with contact sensors on a sound area and these quantities are then extrapolated to nearby thermal bridges using infrared thermography. The total heat transfer coefficient, required in the heat flux extrapolation process, is monitored with a specific device. The method is validated on a full-size load-bearing wall built inside a climate chamber. The mechanical supports, holding the internal insulation system implemented on the wall, generate several thermal bridges. The psi-values estimated by the active method are less than 20% away from steady-state measurements taken as reference. Many configurations were tested with constant and varying external temperature and the method proved its robustness to these unsteady conditions. (C) 2020 Elsevier B.V. All rights reserved.
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页数:18
相关论文
共 73 条
  • [11] Detection of thermal bridges from thermographic images by means of image processing approximation algorithms
    Asdrubali, Francesco
    Baldinelli, Giorgio
    Bianchi, Francesco
    Costarelli, Danilo
    Rotili, Antonella
    Seracini, Marco
    Vinti, Gianluca
    [J]. APPLIED MATHEMATICS AND COMPUTATION, 2018, 317 : 160 - 171
  • [12] A quantitative methodology to evaluate thermal bridges in buildings
    Asdrubali, Francesco
    Baldinelli, Giorgio
    Bianchi, Francesco
    [J]. APPLIED ENERGY, 2012, 97 : 365 - 373
  • [13] Infrared thermography for building diagnostics
    Balaras, CA
    Argiriou, AA
    [J]. ENERGY AND BUILDINGS, 2002, 34 (02) : 171 - 183
  • [14] A model for the improvement of thermal bridges quantitative assessment by infrared thermography
    Baldinelli, Giorgio
    Bianchi, Francesco
    Rotili, Antonella
    Costarelli, Danilo
    Seracini, Marco
    Vinti, Gianluca
    Asdrubali, Francesco
    Evangelisti, Luca
    [J]. APPLIED ENERGY, 2018, 211 : 854 - 864
  • [15] Beck J.V., 1977, Parameter Estimation in Engineering and Science
  • [16] Beck J.V., 1985, Inverse Heat Conduction
  • [17] Statistical modelling of heat transfer for thermal bridges of buildings
    Ben Larbi, A
    [J]. ENERGY AND BUILDINGS, 2005, 37 (09) : 945 - 951
  • [18] Benko I, 2002, 6 INT C QUANT INFRAR
  • [19] Infrared Thermography Assessment of Thermal Bridges in Building Envelope: Experimental Validation in a Test Room Setup
    Bianchi, Francesco
    Pisello, Anna Laura
    Baldinelli, Giorgio
    Asdrubali, Francesco
    [J]. SUSTAINABILITY, 2014, 6 (10) : 7107 - 7120
  • [20] Survey of facades based on thermal scanning: Palazzo della Ragione, Milan, Italy
    Bison, PG
    Bardeschi, MD
    Grinzato, E
    Kauppinen, T
    Rosina, E
    Tucci, G
    [J]. THERMOSENSE XVIII: AN INTERNATIONAL CONFERENCE ON THERMAL SENSING AND IMAGING DIAGNOSTIC APPLICATIONS, 1996, 2766 : 55 - 64