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Ventilated double glass window with reflective film: Modeling and assessment of performance

机译:带反射膜的通风双玻璃窗:性能建模和评估

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摘要

In the present study, the thermal behavior of a ventilated double glass window with a solar reflective film is numerically investigated and validated against results available in the literature. The objectives of the study are to develop a validated robust thermal model for the ventilated double glass window, make it versatile so that it can incorporate different inserts (such as reflective and absorptive films, etc.), different glass sheets and different fluids and can be integrated with other available design tools. The proposed ventilated double window is composed of two glass sheets separated by a gap forming a channel having a solar reflective film on the internal surface of outer glass sheet. The model is based on the equations of mass, momentum and the energy conservation equations in steady state. Boussinesq approximation is used to evaluate buoyancy term. The discretization of conservative equations is done using the finite volume method. A numerical code is developed and validated against available experimental and numerical results. Thermal performance of the ventilated double glass window is assessed under different conditions and the results show that in order to reduce the heat gain in the internal ambient, the optimum spacing between the glass sheets should be at least 2.5 cm. The solar reflective film in a ventilated double glass window can reduce the penetrating solar energy by about 64.7% in comparison with a traditional double glass window.
机译:在本研究中,用太阳能反射膜的通风双玻璃窗的热行为进行数值研究并验证了文献中可用的结果。该研究的目标是为通风双玻璃窗开发经过验证的鲁棒热模型,使其变得多功能,使其可以包含不同的插入物(例如反射和吸收膜等),不同的玻璃板和不同的流体和不同的流体与其他可用的设计工具集成。所提出的通风双窗口由两个玻璃板组成,该玻璃板由形成具有在外玻璃板的内表面上具有太阳反射膜的通道的间隙组成。该模型基于质量,动量和节能方程中稳态的方程。 Boussinesq近似用于评估浮力术语。使用有限体积法进行保守方程的离散化。针对可用的实验和数值结果开发和验证了数值代码。在不同条件下评估通风双玻璃窗的热性能,结果表明,为了减少内部环境温度的热量,玻璃板之间的最佳间距应至少为2.5厘米。与传统的双玻璃窗相比,通风双玻璃窗中的太阳能反射膜可以将穿透太阳能降低约64.7%。

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