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首页> 外文期刊>Journal of structural engineering >Equivalent Static Wind Loads on Plate-Like Flat Roofs: Data-Based Closed Form
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Equivalent Static Wind Loads on Plate-Like Flat Roofs: Data-Based Closed Form

机译:板状扁平屋顶上的等效静电载荷:基于数据的封闭形式

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Abstract Wind tunnel pressure tests on flat-roof buildings were carried out for three kinds of length-width ratio models in three types of terrain. Based on the fitted generalized force spectrum, the analytical expression of equivalent static wind load (ESWL) on plate-like flat roofs was derived using the inertial force method, which is expressed as a function of the structural reduced frequency. The results show that wind directions along the short building side and the long building side are the two most unfavorable wind directions in the view of nodal displacement and member stress; terrain type has important effects on the coefficient of ESWL, increasing the turbulence intensity enlarges the coefficient of ESWL, and it decreases with increases in the reduced frequency. The nodal displacement and member stress calculated by the proposed analytical formula agree well with the actual peak response in two unfavorable wind directions, and the response agreement in the wind direction along the building long side is poor using the gust loading factor method.
机译:摘要在三种类型地形中的三种长度比模型进行平面屋顶建筑物的风隧道压力测试。基于拟合的广义力谱,使用惯性力法导出板状扁平屋顶上的等效静电负荷(ESWL)的分析表达,其表示为结构降低频率的函数。结果表明,沿着短建筑侧的风向和长建筑侧是节点位移和构件应力的两个最不利的风向;地形类型对ESWL系数具有重要影响,增加湍流强度增大了ESWL系数,并且随着频率的增加而降低。由所提出的分析公式计算的节点位移和成员应力与两个不利的风向的实际峰值响应很好,并且使用阵风载荷因子方法较差的风向的响应协议差。

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