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  • Computational models of heat and moisture transport are frequently used in calculating energy gains and losses in buildings. However, any model can provide reliable information only in the case that the quality of input data is adequate. This is not always true because the standard lists of thermal and hygric parameters given by the producers as well as the material databases included in the simulation tools are usually far from complete. In this paper, we present the measurements of complete sets of heat and moisture transport and storage parameters of selected thermal insulation materials in dependence on moisture content. Two common thermal insulation materials, namely hydrophobic mineral wool and expanded polystyrene, are selected as reference materials. Two types of hydrophilic mineral wool and an autoclaved-aerated-concrete thermal insulation board are the representatives of prospective materials which appeared on the market within the last couple of years. The studied material parameters include bulk density, matrix density, porosity, saturation moisture content, thermal conductivity, specific heat capacity, moisture diffusivity, water vapor diffusion coefficient, sorption isotherm, and water retention curve.
  • Computational models of heat and moisture transport are frequently used in calculating energy gains and losses in buildings. However, any model can provide reliable information only in the case that the quality of input data is adequate. This is not always true because the standard lists of thermal and hygric parameters given by the producers as well as the material databases included in the simulation tools are usually far from complete. In this paper, we present the measurements of complete sets of heat and moisture transport and storage parameters of selected thermal insulation materials in dependence on moisture content. Two common thermal insulation materials, namely hydrophobic mineral wool and expanded polystyrene, are selected as reference materials. Two types of hydrophilic mineral wool and an autoclaved-aerated-concrete thermal insulation board are the representatives of prospective materials which appeared on the market within the last couple of years. The studied material parameters include bulk density, matrix density, porosity, saturation moisture content, thermal conductivity, specific heat capacity, moisture diffusivity, water vapor diffusion coefficient, sorption isotherm, and water retention curve. (en)
Title
  • Effect of moisture content on heat and moisture transport and storage properties of thermal insulation materials
  • Effect of moisture content on heat and moisture transport and storage properties of thermal insulation materials (en)
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  • Effect of moisture content on heat and moisture transport and storage properties of thermal insulation materials
  • Effect of moisture content on heat and moisture transport and storage properties of thermal insulation materials (en)
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  • RIV/68407700:21110/12:00194297!RIV13-GA0-21110___
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  • P(GBP105/12/G059)
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  • 1
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  • 133156
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  • RIV/68407700:21110/12:00194297
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  • thermal insulation materials; thermal properties; hygric properties; moisture content (en)
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  • NL - Nizozemsko
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  • [721553C180EC]
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  • Energy and Buildings
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  • 53
http://linked.open...iv/tvurceVysledku
  • Jerman, Miloš
  • Černý, Robert
http://linked.open...ain/vavai/riv/wos
  • 000309086900005
issn
  • 0378-7788
number of pages
http://bibframe.org/vocab/doi
  • 10.1016/j.enbuild.2012.07.002
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  • 21110
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