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An investigation of flow and conjugate heat transfer in multiple pane windows with respect to gap width, emissivity and gas filling

机译:关于间隙宽度,发射率和气体填充的多窗格窗口中的流动和共轭传热研究

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A parametric study is carried out numerically to investigate fluid flow and heat transfer characteristics in double, triple and quadruple pane windows considering various gap widths together with different emissivity coatings. A comprehensive numerical study has been conducted to investigate fluid movements and conjugate heat transfer of natural convection, conduction and radiation in the multiple pane window arrangements. Computations are performed for both air-filled and argon-filled windows. Indoor and outdoor temperatures are kept constant and convective boundary conditions are applied on the inner and outer pane surfaces of the window units to reflect realistic conditions. Computations show that the most reasonable gap width is 12 mm for all cases considered in this study. The effect of gas filling on the U-value is more pronounced for the windows coated with low emissivity materials. Installing quadruple pane windows having low emissivity coatings and low conductance gas filling, the U-value can be decreased to the level of 0.4 W/m(2) K. The main contribution of this study is to present correlations for predicting the glazing U-value considering the number of the panes, emissivity of the glass surfaces and gap width of the cavities for air-filled and argon-filled multiple pane windows. (C) 2014 Elsevier Ltd. All rights reserved.
机译:考虑到不同的间隙宽度和不同的发射率涂层,对数值进行了参数研究,以研究双层,三层和四层窗格玻璃中的流体流动和传热特性。已经进行了全面的数值研究,以研究多窗格玻璃布置中的自然对流,传导和辐射的流体运动和共轭传热。对充气窗和氩气窗都进行计算。室内和室外温度保持恒定,对流边界条件施加在窗户单元的内部和外部玻璃表面上,以反映实际情况。计算表明,对于本研究中考虑的所有情况,最合理的间隙宽度为12 mm。对于涂有低发射率材料的窗户,气体填充对U值的影响更为明显。安装具有低发射率涂层和低电导率气体填充的四窗格玻璃窗,可以将U值降低到0.4 W / m(2)K的水平。这项研究的主要贡献是提出了相关的预测玻璃U-考虑到玻璃板的数量,玻璃表面的发射率以及空气填充和氩气填充的多个玻璃窗的腔体的间隙宽度的取值。 (C)2014 Elsevier Ltd.保留所有权利。

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