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Dynamic analysis of daylight metrics and energy saving for rooftop window integrated flat roof structure of building

机译:建筑天窗集成式平屋顶结构的日光指标动态分析与节能

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In the present paper, the earlier developed model for wall window has been modified for rooftop window. The model has been validated for dynamic behavior by considering the hourly measured both direct and diffuse components of the sunlight and skylight under clear sky conditions. It can be used to predict the Daylight Illuminance Ratio (DIR) and daylight at a given point in living space. The annual energy saving from rooftop window has been estimated for different climatic locations in India. It has been observed that highest DIR was always along the line normal to the rooftop window and decreases as we go away from the normal line in all directions. It was found that, for increasing aperture to floor area ratio, the energy saving potential increases. The minimum annual energy saving was found to be 65.74 kW h/m(2) for Srinagar whereas the maximum was 77.10 kW h/m(2) for Bengaluru. The monthly average value of model exponent (p) has been computed as 1.25. Hence, the present model can be used to design building for optimum daylighting at a given point inside living space. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中,较早开发的壁窗模型已经修改为天窗。通过考虑每小时在晴朗的天空条件下测得的太阳光和天光的直接分量和散射分量,对模型的动态行为进行了验证。它可用于预测居住空间中给定点的日照度比(DIR)和日光。据估计,印度不同气候地点的天窗每年可节省的能源。已经观察到,最高DIR总是沿着垂直于屋顶窗的线,并且随着我们在各个方向上远离法线而减小。已经发现,为了增加孔径与占地面积的比率,节能潜力增加。斯利那加(Srinagar)的年度最低节能量为65.74 kW h / m(2),而班加罗尔(Bengaluru)的最大值为77.10 kW h / m(2)。模型指数(p)的每月平均值已计算为1.25。因此,本模型可用于设计建筑物,以在居住空间内的给定点实现最佳采光。 (C)2015 Elsevier Ltd.保留所有权利。

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