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Effects of building parameters on wind loads on flat-roof-mounted solar arrays

机译:建筑参数对平顶屋顶太阳阵线风荷载的影响

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Roof-mounted solar panels play an increasingly important role in developing renewable energy. Wind loading is a major concern for these systems and is affected by parameters related to both building and array dimensions. The effects of building side ratio (D/B=0.4 to 1), aspect ratio (H/B=0.8 to 2) and parapet height (h(p)/H=0 to 0.06) are investigated under the condition of a constant building height (H=20 m) in wind tunnel tests. The local wind pressure distributions and area-averaged net pressure coefficients of solar panels are examined. The results indicate that the most critical negative peak area-averaged net pressure coefficients considering all wind directions and all panels show an increasing tendency with increase in side ratio, but that the most critical positive peak values show no significant change. An increase in aspect ratio leads to decrease the most critical positive and negative peak net pressures. Curves fitting for the envelopes of equivalent values (GC(pn))(eq) in the format of ASCE 7-10 are introduced based on all tested models. The most critical positive peak area-averaged net pressures decrease with increase in parapet height, and the most critical negative peak values of building models with a parapet are smaller than those without a parapet.
机译:屋顶太阳能电池板在开发可再生能源方面发挥着越来越重要的作用。风装是对这些系统的主要关注,并且受与建筑物和阵列尺寸相关的参数的影响。在恒定的条件下研究了建筑物侧比(D / B = 0.4至1),纵横比(H / B = 0.8至2)和Parapet高度(H(p)/ h = 0至0.06)的影响在风洞测试中建立高度(H = 20米)。检查局部风压分布和面积平均净压力系数的太阳能电池板。结果表明,考虑所有风向和所有面板的最关键的负峰面积平均净压力系数显示出副比率的增加趋势,但最关键的正峰值没有显着变化。宽高比的增加导致降低最关键的正和负峰值净压力。基于所有测试模型引入了归档的等效值(GC(PN))(EQ)的曲线拟合的曲线。最关键的正峰面积平均净压力随着栏杆高度的增加而降低,并且具有栏杆的建筑模型的最关键的负峰值比没有栏杆的级别小于那些。

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