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Design pressure coefficients for circular and elliptical plan structures with hyperbolic paraboloid roof

机译:具有双曲抛物面屋面的圆形和椭圆形平面结构的设计压力系数

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Hyperbolic paraboloid shapes are often used for tensile roofing systems, as they allow covering large spans with a very low self weight. In addition, they can be.used in combination with a variety of plan shapes. The aerodynamics, and thus the wind loading of buildings provided with an hyperbolic paraboloid roof is different from that of the same building provided with a diffetent roof shape; previous studies have made this aspect evident for square and rectangular plan buildings, and the differences prove to be even larger in the case of circular and elliptical plans. This paper is focused on the latter two geometries. In particular, two different curvatures of the roof and two different heights of the buildings were tested in the wind tunnel. Envelopes of the experimental pressure coefficients have been obtained, giving rise to simplified load maps for use in design and possible Code implementation. Pressure coefficients on the lateral surfaces have also been measured, and are compared with reference values available for the same plan shape, but different roof geometry. (C) 2017 Elsevier Ltd. All rights reserved.
机译:双曲线抛物面形状通常用于拉伸屋面系统,因为它们可以以非常低的自重覆盖大跨度。另外,它们可以与各种平面形状结合使用。具有双曲线抛物面屋顶的建筑物的空气动力学和风荷载不同于具有不同屋顶形状的同一建筑物。先前的研究已经证明了方形和矩形平面建筑的这一方面,圆形和椭圆形平面的差异甚至更大。本文着重于后两个几何。特别是在风洞中测试了屋顶的两个不同的曲率和建筑物的两个不同的高度。已获得实验压力系数的包络,从而简化了设计中使用的载荷图,并可能实施了规范。还测量了侧面上的压力系数,并将其与可用于相同平面形状但屋顶几何形状不同的参考值进行比较。 (C)2017 Elsevier Ltd.保留所有权利。

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