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Bibliografia publikacji pracowników
Państwowej Szkoły Wyższej w Białej Podlaskiej

Baza tworzona przez Bibliotekę Akademii Bialskiej im. Jana Pawła II.



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Nr opisu: Applied Mechanics and Engineering^a2017^bVol. 22^cNo. 3^dp. 509--519^a1425-1655^a2017/2018^a10.1515/ijame-2017-0033^aNikitsin, Vadzim^cy^acellular concrete^aKopia dostępna w Sekcji Bibliometrii^aAnaliza przewodności cieplnej innowacyjnych, energooszczędnych materiałów budowlanych^bdziałalność statutowa WNET PSW^c2017-WNET/KNT/ZB/1^aFINAL_PUBLISHED^bCC-BY-NC-ND^cAT_PUBLICATION^eOPEN_JOURNAL^aThe non-stationary moisture level of a cellular concrete wall board in a heated utility building located in the northern part of the town of Brest (Belarus), depending on the climatic influence, was assessed in this work. The results were obtained both in a calculation experiment and a physical test. It was observed that the main reason for the high moisture levels in cellular concrete is wind-driven rain intensifying the process of free capillary moisture transfer. A comparative analysis of the results of the physical test and the calculation experiment showed that the THSS software elaborated by the authors was able to predict the actual moisture levels of the shielding structure under study accurately enough when precise data concerning the thermal and physical characteristics of the materials as well as the occurring climatic influences were submitted.^awind-driven rain^acapillary transfer^awater sorption coefficient^amoisture content
Autorzy: , , Vol. 22 działalność statutowa WNET PSW CC-BY-NC-ND International Journal of Applied Mechanics and Engineering20171425-16552017/201810.1515/ijame-2017-0033Nikitsin, Vadzimcellular concreteKopia dostępna w Sekcji BibliometriiAnaliza przewodności cieplnej innowacyjnych, energooszczędnych materiałów budowlanychFINAL_PUBLISHEDThe non-stationary moisture level of a cellular concrete wall board in a heated utility building located in the northern part of the town of Brest (Belarus), depending on the climatic influence, was assessed in this work. The results were obtained both in a calculation experiment and a physical test. It was observed that the main reason for the high moisture levels in cellular concrete is wind-driven rain intensifying the process of free capillary moisture transfer. A comparative analysis of the results of the physical test and the calculation experiment showed that the THSS software elaborated by the authors was able to predict the actual moisture levels of the shielding structure under study accurately enough when precise data concerning the thermal and physical characteristics of the materials as well as the occurring climatic influences were submitted.wind-driven raincapillary transferwater sorption coefficientmoisture content.
Szczegóły:
Seria: 20171425-16552017/201810.1515/ijame-2017-0033Nikitsin, Vadzimcellular concreteKopia dostępna w Sekcji BibliometriiAnaliza przewodności cieplnej innowacyjnych, energooszczędnych materiałów budowlanychFINAL_PUBLISHEDThe non-stationary moisture level of a cellular concrete wall board in a heated utility building located in the northern part of the town of Brest (Belarus), depending on the climatic influenc, Vol. 22, działalność statutowa WNET PSW, CC-BY-NC-ND, No. 3, y, 2017-WNET/KNT/ZB/1, AT_PUBLICATION ; p. 509--519, OPEN_JOURNAL
Język publikacji: physical test and the calculation experiment showed that the THSS software elaborated by the authors was able to predict the actual moisture levels of the shielding structure under study accurately enough when precise data concerning the thermal and physical characteristics of the materials as well as the occurring climatic influences were submitted.^awind-driven rain^acapillary transfer^awater sorption coefficient^amoisture content
Punktacja ministerstwa:
Index Copernicus: ntensifying the process of free capillary moisture transfer. A comparative analysis of the results of the physical test and the calculation experiment showed that the THSS software elaborated by the authors was able to predict the actual moisture levels of the shielding structure under study accurately enough when precise data concerning the thermal and physical characteristics of the materials as well as the occurring climatic influences were submitted.^awind-driven rain^acapillary transfer^awater sorption coefficient^amoisture content
Praca recenzowana
Słowa kluczowe ang.: oards^aInternational Journal of Applied Mechanics and Engineering^a2017^bVol. 22^cNo. 3^dp. 509--519^a1425-1655^a2017/2018^a10.1515/ijame-2017-0033^aNikitsin, Vadzim^cy^acellular concrete^aKopia dostępna w Sekcji Bibliometrii^aAnaliza przewodności cieplnej innowacyjnych, energooszczędnych materiałów budowlanych^bdziałalność statutowa WNET PSW^c2017-WNET/KNT/ZB/1^aFINAL_PUBLISHED^bCC-BY-NC-ND^cAT_PUBLICATION^eOPEN_JOURNAL^aThe non-stationary moisture level of a cellular concrete wall board in a heated utility building located in the northern part of the town of Brest (Belarus), depending on the climatic influence, was assessed in this work. The results were obtained both in a calculation experiment and a physical test. It was observed that the main reason for the high moisture levels in cellular concrete is wind-driven rain intensifying the process of free capillary moisture transfer. A comparative analysis of the results of the physical test and the calculation experiment showed that the THSS software elaborated by the authors was able to predict the actual moisture levels of the shielding structure under study accurately enough when precise data concerning the thermal and physical characteristics of the materials as well as the occurring climatic influences were submitted.^awind-driven rain^acapillary transfer^awater sorption coefficient^amoisture content
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Nr opisu: n, the standard ISO method yields the best results for low buildings, while in the case of buildings of the tower tpe, the best results gives the CFD model. The main aim of this paper was to propose a method of determining the thickness of streams of moisture absorbed by vertical surfaces of shielding structures exposed to rain falling diagonally. the developed method takes into account the horizontal component of wind-driven rain, the water sorption coefficient, the actual material humidity and the material humidity in the capillary saturation state.^aściana osłonowa^acapillary-porous materials^atransport kapilarny^awater capillary transport^awilgoć^ashielding structures dampness^awiatr^a978-83-61044-39-0
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Słowa kluczowe ang.: horizontal component of wind-driven rain, the standard ISO method yields the best results for low buildings, while in the case of buildings of the tower tpe, the best results gives the CFD model. The main aim of this paper was to propose a method of determining the thickness of streams of moisture absorbed by vertical surfaces of shielding structures exposed to rain falling diagonally. the developed method takes into account the horizontal component of wind-driven rain, the water sorption coefficient, the actual material humidity and the material humidity in the capillary saturation state.^aściana osłonowa^acapillary-porous materials^atransport kapilarny^awater capillary transport^awilgoć^ashielding structures dampness^awiatr^a978-83-61044-39-0 ;
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  • pe, the best results gives the CFD model. The main aim of this paper was to propose a method of determining the thickness of streams of moisture absorbed by vertical surfaces of shielding structures exposed to rain falling diagonally. the developed method takes into account the horizontal component of wind-driven rain, the water sorption coefficient, the actual material humidity and the material humidity in the capillary saturation state.^aściana osłonowa^acapillary-porous materials^atransport kapilarny^awater capillary transport^awilgoć^ashielding structures dampness^awiatr^a978-83-61044-39-0

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