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Reliability-based design optimization of adaptive sliding base isolation system for improving seismic performance of structures

机译:基于可靠性的自适应滑动基础隔离系统设计优化,提高建筑地震性能

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The reliability-based design optimization (RBDO) of base-isolated structures by means of the state-of-the-art methods has been confronted with the high computational cost because the base isolation system often exhibits intrinsic nonlinearities and has to be modelled using a number of parameters in practice. In this regard, the present study aims at developing an efficient scheme for the RBDO of base isolation systems by integrating the probability density evolution method (for global reliability solution) and the variance-based sensitivity analysis (for design parameter reduction).To attain an adaptive seismic mitigation, the newly developed sliding implant magnetic bearings are employed for constituting the base isolation system. It is shown that although the deployment of sliding implant-magnetic bearings allows a safer structure, the base isolation system still suffers from an unexpected failure probability of deflection under the rarely-occurring earthquake. As a result, the design optimization for strengthening the reliability of the base isolation system needs to be carried out. For identification of the critical design parameters to be optimized, the variance-based sensitivity analysis is performed, showing that the parameters of the exponential function that represents the Coulomb sliding friction associated with the sliding implant-magnetic bearing are mostly of concern. Furthermore, the RBDO of the base isolation system is carried out by employing the genetic algorithm. It is revealed that the global reliability of the base-isolated structure after optimization gains a significant improvement compared to that before optimization.
机译:基于最先进的方法的基于可靠性的设计优化(RBDO)基础隔离结构的基础结构已经面对高计算成本,因为基础隔离系统通常呈现内在非线性,并且必须使用A模拟实践中的参数数量。在这方面,本研究旨在通过集成概率密度进化方法(用于全局可靠性解决方案)和基于方差的敏感性分析(用于设计参数减少)来开发基础隔离系统的RBDO的有效方案。要达到一个自适应地震缓解,新开发的滑动植入物磁轴承用于构成基础隔离系统。结果表明,虽然滑动植入磁轴承的展开允许更安全的结构,但是基本隔离系统仍然存在在很少发生的地震下偏转的意外失效概率。结果,需要进行用于加强基本隔离系统可靠性的设计优化。为了识别要优化的关键设计参数,执行基于方差的灵敏度分析,表明指数函数的参数表示与滑动注入磁轴承相关的库仑滑动摩擦主要是关注的。此外,通过采用遗传算法来执行基本隔离系统的RBDO。据透露,与优化之前,优化后,在优化后,基本隔离结构的全球可靠性得到了显着的改进。

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