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Taguchi design-based seismic reliability analysis of geostructures

机译:基于田口设计的岩土结构地震可靠度分析

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摘要

This paper presents a methodology to evaluate the seismic reliability of geostructures in an optimal way. Taguchi design of experiments are adopted to find the most efficient and cost-effective combination of material properties in the uncertainty domain. Twelve uniform and mixed design models are tested. A polynomial-based response surface meta-model is built for each one and the accuracy of perdition is examined using 10,000 Monte Carlo simulations. A two-dimensional gravity dam is used as a vehicle for probabilistic transient analyses. The ground motion record-to-record variability is added as well using over one hundred earthquake records selected based on probabilistic seismic hazard analysis. Dynamic sensitivity of epistemic random variables are evaluated for the first time. Finally, an efficient and practical procedure is proposed in order to determine the reliability index of the geostructures. This approach, in fact, can be generalised for any type of engineering structures dealing with multi-hazard problems.
机译:本文提出了一种以最佳方式评估地质结构抗震可靠性的方法。 Taguchi设计了实验方法,以在不确定性范围内找到最有效和最具成本效益的材料性能组合。测试了十二种统一和混合设计模型。为每个模型建立一个基于多项式的响应面元模型,并使用10,000个蒙特卡洛模拟法检查蠕变的准确性。二维重力坝用作概率瞬态分析的工具。还使用了基于概率地震危险性分析选择的一百多个地震记录来增加地震动记录间的差异性。首次评估了认知随机变量的动态敏感性。最后,提出了一种有效而实用的程序,以确定地质结构的可靠性指标。实际上,这种方法可以推广到处理多种危险问题的任何类型的工程结构。

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