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首页> 外文期刊>Journal of aerospace engineering >Negative External Pressure Coefficients for Design of Components and Cladding of Low-Rise Buildings with Steep-Slope Gable Roofs
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Negative External Pressure Coefficients for Design of Components and Cladding of Low-Rise Buildings with Steep-Slope Gable Roofs

机译:具有陡坡山墙屋顶的组件设计和低层建筑物的覆层的负外压系数

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Negative external pressure coefficients for design of components and cladding of steep-slope gable roofs (27° to 45° roof slope) on low-rise buildings subjected to wind loads were determined in this study based on data from wind tunnel tests of small-scale building models. The effect of exposure and building height were removed from the wind tunnel data, and the peak negative external pressure coefficients were determined using a Gumbel-fitting method. The spatial distribution of area-averaged peak negative external pressure coefficients was examined, and the results indicate that the effect of roof slope is not significant and that the largest magnitude peak negative external pressure coefficients do not always occur in the roof comer zone. Roof zones and equations for negative external pressure coefficients from current ASCE standard are generally in close agreement with the values based on wind tunnel test data, but negative external pressures on the roof edge normal to ridge and near ridge are underestimated. Modified roof zones and equations developed in this study are shown to improve the agreement with wind tunnel test data.
机译:在本研究中确定了在本研究中,根据小规模风隧道试验的数据,确定了对经受风力负荷的低层建筑物的陡坡山墙屋顶(27°至45°斜坡)的负压系数(27°至45°斜坡)建筑模型。从风隧道数据中除去曝光和建筑物高度的效果,并且使用牙龈配合方法测定峰值负压压力系数。检查区域平均峰值负压峰值的空间分布,结果表明屋顶斜率的效果不显着,并且最大幅度峰值负压系数并不总是发生在车顶分光区中。屋顶区域和用于电流asce标准的负面压力系数的方程通常与基于风洞测试数据的值密切一致,但靠近脊和靠近脊的屋顶边缘上的负压外部压力被低估。该研究中开发的改进的屋顶区和方程被证明可以改善与风洞测试数据的协议。

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