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Unstrained length-based methods determining an optimized initial shape of 3-dimensional self-anchored suspension bridges

机译:基于长度的无应变方法确定3维自锚式悬索桥的最佳初始形状

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摘要

Two robust methods, a Generalized Target Configuration Under Dead Loads (GTCUD) method and a simplified analytical method are developed for 3D analysis of suspension bridges. These methods provide an optimized initial state for 3D suspension bridges under dead loads. The current study makes application to 3D self-anchored suspension bridges with spatially curved main cables and initial cambers of the main girder. Furthermore, the unstrained length method (ULM) based on the unstrained lengths is applied to the bridge structure using two procedures. Finally, it is demonstrated through a bridge example having vertical cambers that the proposed analysis methods can indeed provide an optimized initial solution by showing that both schemes lead to practically identical initial configuration with localized small bending moment distributions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:针对悬索桥的3D分析,开发了两种可靠的方法,即静载广义目标配置(GTCUD)方法和简化的分析方法。这些方法为恒载下的3D悬索桥提供了优化的初始状态。当前的研究将其应用于具有空间弯曲主缆线和主梁初始弯度的3D自锚式悬索桥。此外,基于无应变长度的无应变长度方法(ULM)使用两个过程应用于桥梁结构。最后,通过一个具有垂直外倾角的桥梁实例证明,所提出的分析方法确实可以提供最佳的初始解决方案,方法是显示这两种方案均会导致实际上相同的初始配置以及局部较小的弯矩分布。 (C)2019 Elsevier Ltd.保留所有权利。

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