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  • The knowledge of dependence of water vapor diffusion coefficient on relative humidity is crucial for application of building materials in real conditions. Material parameter obtained in this way can provide very valuable information not only for building designers, but it can be very effectively used in sophisticated simulation tools of buildings' performance. In this paper, a transient analysis of water vapor transport is presented which brings significant shortening of time necessary for experimental work. Usually, the steady state cup method requires time within a range of weeks, whereas the transient method requires less than half of that time.
  • The knowledge of dependence of water vapor diffusion coefficient on relative humidity is crucial for application of building materials in real conditions. Material parameter obtained in this way can provide very valuable information not only for building designers, but it can be very effectively used in sophisticated simulation tools of buildings' performance. In this paper, a transient analysis of water vapor transport is presented which brings significant shortening of time necessary for experimental work. Usually, the steady state cup method requires time within a range of weeks, whereas the transient method requires less than half of that time. (en)
Title
  • A Transient Analysis of Water Vapor Transport in Porous Materials in Dependence on Relative Humidity
  • A Transient Analysis of Water Vapor Transport in Porous Materials in Dependence on Relative Humidity (en)
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  • A Transient Analysis of Water Vapor Transport in Porous Materials in Dependence on Relative Humidity
  • A Transient Analysis of Water Vapor Transport in Porous Materials in Dependence on Relative Humidity (en)
skos:notation
  • RIV/68407700:21110/11:00183827!RIV12-MSM-21110___
http://linked.open...avai/riv/aktivita
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  • P(GA103/09/0016), S
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  • 184233
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  • RIV/68407700:21110/11:00183827
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  • Porous Materials; Water Vapor Transport; Transient Analysis; Relative Humidity (en)
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  • [BAAC3E5FA989]
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  • Valtice
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  • Brno
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  • Thermophysics 2011
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  • Kočí, Jan
  • Maděra, Jiří
  • Pavlík, Zbyšek
  • Vejmelková, Eva
  • Černý, Robert
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number of pages
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  • Vysoké učení technické v Brně
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  • 978-80-214-4345-7
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  • 21110
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