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A CFD study and measurements of double glazing thermal transmittance under downward heat flow conditions

机译:向下热流条件下双层玻璃传热系数的CFD研究和测量

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Fenestration systems are important elements of building facades. Although there are fenestrations placed at different angles in facades, not only vertical and roof glazing, there is little information about calculating procedures of thermal resistance and thermal transmittance for reversed glazing in which heat flows in a downward direction. The aim of this paper is to propose some amendments to EN 673-Glass in building - Determination of thermal transmittance (U value) - Calculation method [1] as well as to ISO 15099 - Thermal performance of Windows - Detailed calculations [2] to improve calculation accuracy for glazing under downward heat flow direction. In the paper CFD modeling of glazing thermal transmittance is presented. CFD calculated data were then validated by measurements performed in a calorimetric chamber in a test stand prepared for thermal transmittance measurements under different glazing angles resulting in a downward heat flow direction. Measurement data are then compared to simulation results. After achieving satisfactory agreement, some additional simulation results are presented and some amendments to glazing thermal resistance calculation procedure given in EN 673 and ISO 15099 standards are proposed. (C) 2016 Elsevier B.V. All rights reserved.
机译:窗饰系统是建筑立面的重要元素。尽管在立面中以不同的角度开窗,不仅垂直玻璃和屋顶玻璃,而且对于热量向下流动的反向玻璃的热阻和热传递率的计算程序了解很少。本文的目的是对建筑物中的EN 673玻璃提出一些修正-导热率(U值)的确定-计算方法[1]以及ISO 15099-Windows的热性能-详细计算[2]提高了向下热流方向的玻璃的计算精度。在本文中,提出了玻璃的热透射率的CFD建模。然后,通过在测试台的量热室中进行的测量来验证CFD计算的数据,该测试台是为在不同的玻璃角下(导致向下的热流方向)进行热透射率测量而准备的。然后将测量数据与仿真结果进行比较。在达成令人满意的协议后,提出了一些附加的模拟结果,并对EN 673和ISO 15099标准中给出的玻璃热阻计算程序提出了一些修正。 (C)2016 Elsevier B.V.保留所有权利。

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