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On the reliability of structures equipped with a class of friction-based devices under stochastic excitation

机译:在随机励磁下配备一类摩擦基于摩擦装置的结构的可靠性

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This work presents a general framework for performing reliability analyses of involved structural models equipped with friction-based devices under stochastic excitation. An experimentally validated model that takes into account main sources of performance degradation that these devices experience during seismic events is considered. To deal with the variability of future excitations, a stochastic excitation model is adopted in the present formulation. First excursion probabilities are used as measures of system reliability. The associated reliability analysis is carried out by combining an advanced simulation technique with an adaptive parametric meta-model. The proposed framework is suitable for direct implementation in realistic applications. The effectiveness of the methodology is demonstrated by means of two application problems involving relatively large finite element models. (C) 2020 Elsevier B.V. All rights reserved.
机译:这项工作介绍了在随机激励下执行配备有基于摩擦的器件的涉及结构模型的可靠性分析的一般框架。一项实验验证的模型,考虑了这些设备在地震事件期间经历的主要绩效劣化来源。为了处理未来激发的可变性,本制定中采用了随机励磁模型。第一次偏移概率用作系统可靠性的衡量标准。通过将高级仿真技术与自适应参数元模型组合来执行相关的可靠性分析。该框架适用于现实应用中的直接实现。通过涉及相对大的有限元模型的两个应用问题,证明了方法的有效性。 (c)2020 Elsevier B.v.保留所有权利。

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