Response surface method strategies coupled with NLFEA for structural reliability analysis of prestressed bridges

S. S. Nova, J. Gonzalez-Libreros, G. Sas, R. S. Díaz, M. C. A. T. D. Silva, L. Trautwein
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Abstract

The Response Surface Method (RSM) has become an essential tool to solve structural reliability problems due to its accuracy, efficacy, and facility for coupling with Nonlinear Finite Element Analysis (NLFEA). In this paper, some strategies to improve the RSM efficacy without compromising its accuracy are tested. Initially, each strategy is implemented to assess the safety level of a highly nonlinear explicit limit state function. The strategy with the best results is then identified and used to carry out a reliability analysis of a prestressed concrete bridge, considering the nonlinear material behavior through NLFEA simulation. The calculated value of 𝛽 is compared with the target value established in Eurocode for ULS. The results showed how RSM can be a practical methodology and how the improvements presented can reduce the computational cost of a traditional RSM giving a good alternative to simulation methods such as Monte Carlo.
响应面法与NLFEA相结合的预应力桥梁结构可靠度分析策略
响应面法(RSM)由于其准确性、有效性以及与非线性有限元分析(NLFEA)的耦合性,已成为解决结构可靠性问题的重要工具。本文对在不影响RSM准确率的前提下提高RSM有效性的策略进行了测试。首先,每个策略都是为了评估一个高度非线性的显式极限状态函数的安全级别。在考虑材料非线性特性的情况下,通过NLFEA仿真对某预应力混凝土桥梁进行了可靠性分析。将计算值与欧洲码中为ULS建立的目标值进行比较。结果显示了RSM如何成为一种实用的方法,以及所提出的改进如何降低传统RSM的计算成本,从而为蒙特卡罗等模拟方法提供了一个很好的替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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