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Wind Loads on Low-Profile, Tilted, Solar Arrays Placed on Large, Flat, Low-Rise Building Roofs

机译:薄型,倾斜,低矮的大型建筑物屋顶上放置的太阳能电池阵列上的风荷载

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The author examined wind loads on low-profile, roof-mounted solar arrays, placed on large, low-rise buildings with nearly flat roofs by using scale models in a boundary layer wind tunnel. The author also examined the effects of building size and array geometry on enveloping curves of area-averaged pressure coefficients, typical of use for design. It was found that wind loads on the array increase with building size; normalizing the effective wind area by the building wall size leads to enveloping curves that collapse onto a single curve for each array geometry. For tilt angles less than 10°, there is an approximate linear increase in the pressure coefficients as the tilt angle increases. For arrays with tilt angles of 10° or more, the wind loads do not depend significantly on the tilt angle and are relatively constant. Roof zones for wind loads on solar arrays are larger than roof zones for bare roofs and depend on the array tilt angle.
机译:作者通过在边界层风洞中使用比例模型,检查了低矮的,屋顶安装的太阳能电池阵列上的风载荷,这些太阳能电池板放置在屋顶几乎平坦的大型低层建筑上。作者还研究了建筑尺寸和阵列几何形状对面积平均压力系数(通常用于设计)的包络曲线的影响。结果发现,阵列上的风荷载随着建筑物的大小而增加。通过建筑物墙的尺寸对有效风面积进行归一化会导致包络曲线折叠成每个阵列几何形状的单个曲线。对于小于10°的倾斜角,随着倾斜角的增加,压力系数近似线性增加。对于倾斜角为10°或更大的阵列,风荷载并不明显取决于倾斜角,而是相对恒定的。太阳能电池阵列上风荷载的屋顶区域大于裸露屋顶的屋顶区域,并且取决于阵列的倾斜角度。

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