2016
DOI: 10.1007/s10891-016-1492-7
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Numerical Modeling of Heat Transfer Through a Triple-Pane Window

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Cited by 25 publications
(14 citation statements)
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“…The a, b, c, d and e constants of polynomial equation can be seen Table 2. The thermo-physical properties (specific heat, dynamic viscosity and thermal conductivity) of argon were taken as; Cp=519 J/kgK, μ=(0.066T +2.97)•10-6 Pa.s, and k=(0.0516T + 2.3)•10-3 W/mK, respectively [7,13]. For calculation of flow and heat transfer between two panes, air and argon were treated as incompressible ideal gas.…”
Section: Problem Description and Numerical Methodsmentioning
confidence: 99%
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“…The a, b, c, d and e constants of polynomial equation can be seen Table 2. The thermo-physical properties (specific heat, dynamic viscosity and thermal conductivity) of argon were taken as; Cp=519 J/kgK, μ=(0.066T +2.97)•10-6 Pa.s, and k=(0.0516T + 2.3)•10-3 W/mK, respectively [7,13]. For calculation of flow and heat transfer between two panes, air and argon were treated as incompressible ideal gas.…”
Section: Problem Description and Numerical Methodsmentioning
confidence: 99%
“…The regularities of heat transfer through a triple-pane glass window with air and argon fillings have been investigated by the method of numerical modeling. The thermal resistances of the triplepane window (having height of H=108 cm) as functions of the gas-interlayer thickness and of temperature on the window′s exterior surface have been found [7].…”
Section: Introductionmentioning
confidence: 99%
“…While most of IGU studies have been focused on thermal, durability and sound insulation aspects ( [3,4,[24][25][26][27][28][29][30][31], etc.) or facade applications ( [32][33][34][35][36], etc.…”
Section: General Buckling Design Considerations and Existing Analytical Methodsmentioning
confidence: 99%
“…В верхней части окна их значения превышают 150 Вт/м 2 , а в нижней части окна они составляют 50 Вт/м 2 . Данная особенность теплопереноса через окно объясняется наличием подъемных и опускных течений в газовой прослойке между стеклами [5,6]. Над окнами плотности тепловых потоков оказываются выше 100 Вт/м 2 .…”
Section: рисунок 2 -распределение скорости воздуха и температурыunclassified