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Bibliografia publikacji pracowników
Państwowej Szkoły Wyższej w Białej Podlaskiej

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



Zapytanie: STRUCTURE OF USED POLYMER FOAMS
Liczba odnalezionych rekordów: 1



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Nr opisu: 23^cno. 4^dp. 1015--1023^a1425-1655^a2018/2019^a10.2478/ijame-2018-0058^aNikitsin, Vadzim^cy^athermal insulation^aKopia dostępna w Sekcji Bibliometrii.^aFINAL_PUBLISHED^bCC-BY-NC-ND^cAT_PUBLICATION^eOPEN_JOURNAL^aIn the paper the authors present the effectiveness of the generalized thermal conductivity method for polymer foams, including modelling their geometrical structure. Calculations of the effective thermal conductivity coefficient ? are based on the generally accepted assumption of the additivity of different thermal exchange mechanisms in porous media and this coefficient is presented as a sum the coefficients of conductive ?q, radiative ?p, and convective ?k thermal conductivity. However, in literature not enough attention is given to relations determined by means of the theory of generalized conductivity, including modelling the geometrical structure. This paper presents an analysis of these relations and verifies their ability to predict experimental data in comparison with the best formulae included in the paper^aeffective thermal conductivity^arigid polymer foam^amathematical model^astructure of used polymer foams^aanalysis of experimental data
Autorzy: , , Vol. 23 CC-BY-NC-ND 20181425-16552018/201910.2478/ijame-2018-0058Nikitsin, Vadzimthermal insulationKopia dostępna w Sekcji Bibliometrii.FINAL_PUBLISHEDIn the paper the authors present the effectiveness of the generalized thermal conductivity method for polymer foams, including modelling their geometrical structure. Calculations of the effective thermal conductivity coefficient ? are based on the generally accepted assumption of the additivity of different thermal exchange mechanisms in porous media and this coefficient is presented as a sum the coefficients of conductive ?q, radiative ?p, and convective ?k thermal conductivity. However, in literature not enough attention is given to relations determined by means of the theory of generalized conductivity, including modelling the geometrical structure. This paper presents an analysis of these relations and verifies their ability to predict experimental data in comparison with the best formulae included in the papereffective thermal conductivityrigid polymer foammathematical modelstructure of used polymer foamsanalysis of experimental data.
Szczegóły:
Język publikacji: hese relations and verifies their ability to predict experimental data in comparison with the best formulae included in the paper^aeffective thermal conductivity^arigid polymer foam^amathematical model^astructure of used polymer foams^aanalysis of experimental data
Punktacja ministerstwa: an analysis of these relations and verifies their ability to predict experimental data in comparison with the best formulae included in the paper^aeffective thermal conductivity^arigid polymer foam^amathematical model^astructure of used polymer foams^aanalysis of experimental data
Praca recenzowana
Słowa kluczowe ang.: cs and Engineering^a2018^bVol. 23^cno. 4^dp. 1015--1023^a1425-1655^a2018/2019^a10.2478/ijame-2018-0058^aNikitsin, Vadzim^cy^athermal insulation^aKopia dostępna w Sekcji Bibliometrii.^aFINAL_PUBLISHED^bCC-BY-NC-ND^cAT_PUBLICATION^eOPEN_JOURNAL^aIn the paper the authors present the effectiveness of the generalized thermal conductivity method for polymer foams, including modelling their geometrical structure. Calculations of the effective thermal conductivity coefficient ? are based on the generally accepted assumption of the additivity of different thermal exchange mechanisms in porous media and this coefficient is presented as a sum the coefficients of conductive ?q, radiative ?p, and convective ?k thermal conductivity. However, in literature not enough attention is given to relations determined by means of the theory of generalized conductivity, including modelling the geometrical structure. This paper presents an analysis of these relations and verifies their ability to predict experimental data in comparison with the best formulae included in the paper^aeffective thermal conductivity^arigid polymer foam^amathematical model^astructure of used polymer foams^aanalysis of experimental data
Słowa kluczowe ang.: ;
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DOI:

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