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  • An interior thermal insulation system on the basis of advanced type of hydrophilic mineral wool provided with several types of water vapor retarders and applied on several types of different load bearing structures is subjected to a detailed computational analysis of coupled heat and moisture transport. Temperature, relative humidity and overhygroscopic moisture fields are calculated for the time period of several years using the computer code TRANSMAT 6.3 and the long-term hygrothermal performance of studied building envelopes is assessed. The results of computational design reveal that such a combination of hygric properties of water vapor retarder can be found which results in flawless hygrothermal performance of the interior thermal insulation system on hydrophilic mineral wool basis, no matter the type of load bearing structure.
  • An interior thermal insulation system on the basis of advanced type of hydrophilic mineral wool provided with several types of water vapor retarders and applied on several types of different load bearing structures is subjected to a detailed computational analysis of coupled heat and moisture transport. Temperature, relative humidity and overhygroscopic moisture fields are calculated for the time period of several years using the computer code TRANSMAT 6.3 and the long-term hygrothermal performance of studied building envelopes is assessed. The results of computational design reveal that such a combination of hygric properties of water vapor retarder can be found which results in flawless hygrothermal performance of the interior thermal insulation system on hydrophilic mineral wool basis, no matter the type of load bearing structure. (en)
  • Vnitřní tepelně izolační systém na bázi pokročilých typů hydrofilních minerálních vln opatřený několika různými typy retardérů vodní páry a použitý na několika různých nosných konstrukcích je podroben detailní počítačové analýze přemnosu tepla a vlhkosti. Teplota, relativní vlhkost a nadhygroskopická vlhkost jsou počítány pro časové období několika let pomocí počítačového programu TRANSMAT 6.3 a je posouzeno dlouhodobé vlhkostně-tepelné chování systému. Výsledky simulací ukazují, že může být nalezena taková kombinace vlhkostních vlastností materiálů systému, že systém funguje nezávisle na parametrech nosné konstrukce. (cs)
Title
  • Computational Analysis of Hygrothermal Performance of Interior Thermal Insulation System Based on Advanced Type of Hydrophilic Mineral Wool
  • Počítačová analýza vlhkostně-tepelného chování vnitřního tepelně izolačního systému na bázi pokročilých typů hydrofilních minerálních vln (cs)
  • Computational Analysis of Hygrothermal Performance of Interior Thermal Insulation System Based on Advanced Type of Hydrophilic Mineral Wool (en)
skos:prefLabel
  • Computational Analysis of Hygrothermal Performance of Interior Thermal Insulation System Based on Advanced Type of Hydrophilic Mineral Wool
  • Počítačová analýza vlhkostně-tepelného chování vnitřního tepelně izolačního systému na bázi pokročilých typů hydrofilních minerálních vln (cs)
  • Computational Analysis of Hygrothermal Performance of Interior Thermal Insulation System Based on Advanced Type of Hydrophilic Mineral Wool (en)
skos:notation
  • RIV/68407700:21110/08:01147325!RIV09-MPO-21110___
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  • P(FI-IM3/188)
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  • 360853
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  • RIV/68407700:21110/08:01147325
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  • Computational Analysis; Hydrophilic Mineral Wool; Hygrothermal Performance; Interior Thermal Insulation System (en)
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  • [948D7565B1F5]
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  • Zahrádky
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  • Praha
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  • Computational and Experimental Analysis of Structure and Properties of New Building Materials from Nano- to Macrolevel VI
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http://linked.open...UplatneniVysledku
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  • Jerman, Miloš
  • Maděra, Jiří
  • Černý, Robert
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number of pages
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  • České vysoké učení technické v Praze. Fakulta stavební
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  • 978-80-01-04206-9
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  • 21110
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