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Synthesis of three dimensional controlled cable-stayed bridges subject to seismic loading

机译:地震作用下三维控制斜拉桥的综合

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The use of dampers to mitigate the earthquakes effects on structures is an important area of research. In this work, an optimization algorithm is presented to solve the simultaneous structural-control design problem. The algorithm, sensitivity computations and three dimensional finite element models are developed in view of the specific design issues of this problem, in particular the static, dynamic and erection stage analysis. A non-linear elastic model includes the structural P-Delta effects and cable sag by using an equivalent Ernst modulus. A cable-stayed bridge with 350 m length is designed for the standard static and earthquake loading (according to the Eurocode regulation) using different tower-deck connections, in particular free (Case 1), fixed (Case 2) and with viscous dampers (Case 3). The results show that the optimum solutions have different geometries, cross sections and material distribution and that, in this example, the Case 3 solution is the most cost effective. The simultaneous structural-control optimization algorithm converges to a valid and cost effective solution in all cases. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用阻尼器减轻地震对结构的影响是重要的研究领域。在这项工作中,提出了一种优化算法来解决同时结构控制设计问题。针对该问题的具体设计问题,特别是静态,动态和安装阶段分析,开发了算法,灵敏度计算和三维有限元模型。非线性弹性模型通过使用等效的恩斯特模量包括结构P-Delta效应和电缆垂度。 350m长的斜拉桥设计用于标准静力和地震载荷(根据欧洲规范),使用不同的塔式甲板连接,特别是自由(情况1),固定(情况2)和粘性阻尼器(情况)。情况3)。结果表明,最佳解决方案具有不同的几何形状,横截面和材料分布,并且在此示例中,案例3解决方案是最具成本效益的。在所有情况下,同时结构控制优化算法都收敛为有效且具有成本效益的解决方案。 (C)2019 Elsevier Ltd.保留所有权利。

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