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Modeling and calculation of solar gains through multi-glazing facades with specular reflection of venetian blind

机译:百叶窗的镜面反射通过多层玻璃幕墙的太阳能获取的建模和计算

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A mathematical model is proposed for calculating the solar gains through the multi-glazing facades (MGFs) with venetian blinds considering specular reflection. Net radiation method is used to establish the solar radiation energy balance equations in the overall MGFs layers. Then, a mixed method combines ray tracing and radiosity methods is used to determine the optical properties of the venetian blind in this system. Numerical results are compared with the optical properties of venetian blind calculated by the radiosity method and the experimental results. The comparisons show that the proposed model results fit better with the experimental results. Some important impact factors on the total solar transmittance of the MGFs are analyzed including the venetian blind geometric dimension W/S ratio, the slat reflectance, the slat shining factor, the slat angle, and the sun profile angle. Moreover, the effect of the proportion of the beam radiation on the total solar transmittance is also considered. The impact of the W/S ratio, the slat reflectance, and the slat angle are not limitless, when the solar profile angle is greater than (90 degrees-phi), the impact of them are not significant. Meanwhile, the impact of the shining factor and the proportion of the beam radiation depend on their intersection point. Before the slat angle intersection points, the higher the shining factor, the smaller the transmittance, but it is opposite for the proportion of the beam radiation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种数学模型,用于通过考虑镜面反射的百叶帘通过多​​层玻璃幕墙(MGF)计算太阳能增益。使用净辐射法在整个MGF层中建立太阳辐射能量平衡方程。然后,使用混合方法结合射线追踪和光能传递方法来确定该系统中百叶窗的光学特性。将数值结果与通过光能传递法计算的百叶窗的光学特性和实验结果进行了比较。比较表明,所提出的模型结果与实验结果更加吻合。分析了影响MGF总体太阳透射率的一些重要因素,包括百叶窗几何尺寸W / S比,板条反射率,板条发光因子,板条角度和太阳剖面角。此外,还考虑了束辐射的比例对总太阳透射率的影响。 W / S比,板条反射率和板条角度的影响不是无限的,当太阳剖面角大于(90度-phi)时,它们的影响不显着。同时,发光因子和光束辐射比例的影响取决于它们的交点。在板条角相交点之前,发光系数越高,透射率越小,但是对于射束辐射的比例却相反。 (C)2016 Elsevier Ltd.保留所有权利。

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