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Wind Interference Effects from One High-Rise Building and Similar Low-Rise Flat-Roof Buildings

机译:一座高层建筑的风干效应和类似的低层平顶建筑

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Wind tunnel tests in an open terrain were carried out to study interference effects on peak pressure coefficients of one low-rise flat-roof building due to one high-rise building and similar low-rise buildings. The results demonstrate that amplification interference effects are significant on the minimum pressures at the edge of the low-rise building roof adjacent to the high-rise building and on the maximum pressures in the roof area away from the high-rise building, where the minimum pressure means the algebraic minimum with negative suction. Magnitudes of the envelope peak pressure coefficients on the low-rise building increase when the high-rise building height increases. The envelope minimum peak pressure coefficients in the roof middle area parallel to the high-rise building experience amplification effects at large building height and small spacing ratios, but other roof areas experience shielding effects at small spacing ratios, and interference factors of the envelope minimum peak pressure coefficients increase with the increase of the height and spacing ratios. When the spacing ratio is less than two, cases with large height ratios display amplification effects on the envelope maximum peak pressure coefficients, and amplification effects increase with the increase of the height ratio or the decrease of spacing ratio.
机译:开放地形中的风洞测试是为了研究由于一座高层建筑和类似的低层建筑而对一个低层平顶建筑的峰值压力系数的干扰效应。结果表明,扩增干扰效应对低层建筑屋顶边缘的最小压力很大,毗邻高层建筑物,远离高层建筑物的最大压力,最小压力意味着具有负吸力的代数最小值。当高层建筑高度增加时,封套峰值压力系数对低层建筑增加的幅度。屋顶中间区域的信封最小峰值压力系数平行于大建筑物高度和小间距比率的高层建筑体验放大效果,但其他屋顶区域以小间距比体验屏蔽效果,以及信封最小峰值的干扰因素压力系数随高度和间距比率的增加而增加。当间距比率小于两个时,具有大高度比率的案例显示对包络最大峰值压力系数的放大效应,并且随着高度比的增加或间隔比的降低而增加扩增效果。

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