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Support node construction error analysis of a cable-strut tensile structure based on the reliability theory

机译:基于可靠性理论的钢索拉伸结构支撑节点施工误差分析

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摘要

A support node construction error sensitivity analysis was conducted, and the allowable value of node error was determined in this study based on the reliability theory and using the ANSYS software. First, the node construction error sensitivity analysis method was proposed based on Latin hypercube sampling, and detailed procedures were described. Then, a method for determining an allowable error value with a reliability index not less than 1.5, an internal force deviation of the cable not greater than 10%, and a normal serviceability limit state was presented. An exemplary tensile structure with different error distribution and error values was employed to verify the proposed method. Finally, a cable-strut tensile structure model with a diameter of 5.0 m was designed and fabricated. The research showed that different directions of the node construction error had different error sensitivities, and that each direction of the node error had different error sensitivities for different elements. The allowable node construction error can be obtained using a linear searching method with a reliability index not less than 1.5, an internal force deviation of the cable not greater than 10%, and a normal serviceability limit state. The theoretical results were generally consistent with the experimental results, which indicated that the proposed error sensitivity analysis method was accurate. Thus, this study has value for both theoretical research and engineering applications.
机译:进行了支撑节点构造误差敏感性分析,并基于可靠性理论并使用ANSYS软件确定了节点误差的允许值。首先,提出了基于拉丁超立方体抽样的节点构造误差敏感性分析方法,并详细描述了过程。然后,提出了一种用于确定可靠性指标不小于1.5,电缆的内力偏差不大于10%以及正常使用极限状态的容许误差值的方法。具有不同误差分布和误差值的示例性拉伸结构被用来验证所提出的方法。最后,设计并制作了直径为5.0 m的索杆拉伸结构模型。研究表明,不同方向的节点构造误差具有不同的误差敏感性,并且不同元素的节点误差的各个方向具有不同的误差敏感性。可以使用可靠性指标不小于1.5,电缆的内力偏差不大于10%以及正常使用极限状态的线性搜索方法来获得允许的节点构造误差。理论结果与实验结果基本吻合,表明所提出的误差敏感性分析方法是准确的。因此,这项研究对于理论研究和工程应用都具有价值。

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