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An iterative form-finding method for antifunicular shapes in spatial arch bridges

机译:空间拱桥中防漏斗形状的迭代找形方法

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This paper presents a new iterative method for finding antifunicular out-of-plane shapes for spatial arch bridges. For a given set of loads, this is the warped geometry that results in an equilibrium state free from bending stresses, i.e. simply under axial forces. These shapes appear when out-of-plane loads act upon the arch, for example, when the deck is curved in plan. A detailed formulation with two alternative algorithms is presented that solves the most generalised case, where unsymmetrical bridges with clamped ends and non-linear behaviour can be considered. An uncoupled formulation has also been developed, in order to minimise internal forces, in both vertical and leaning plane arches. The method can be used both for upper and lower deck arch bridges. It can also be easily adapted for tension elements or cables.
机译:本文提出了一种新的迭代方法,用于寻找空间拱桥的反锥面外形状。对于给定的一组载荷,这是翘曲的几何形状,它导致没有弯曲应力(即简单地在轴向力作用下)的平衡状态。当平面负载作用在拱上时(例如,甲板在平面上弯曲时),这些形状就会出现。提出了使用两种替代算法的详细公式,以解决最普遍的情况,在这种情况下,可以考虑具有受约束端和非线性行为的不对称桥。为了最小化垂直和倾斜平面拱中的内力,还开发了一种解耦公式。该方法可用于上下甲板拱桥。它也可以轻松地适用于张紧元件或电缆。

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