首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Derivation of response spectrum compatible non-stationary stochastic processes relying on Monte Carlo-based peak factor estimation
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Derivation of response spectrum compatible non-stationary stochastic processes relying on Monte Carlo-based peak factor estimation

机译:依赖于基于蒙特卡洛的峰值因子估计,推导响应谱兼容的非平稳随机过程

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摘要

In this paper a novel approach is proposed to address the problem of deriving non-stationary stochastic processes which are compatible in the mean sense with a given (target) response (uniform hazard) spectrum (UHS) as commonly desired in the aseismic structural design regulated by contemporary codes of practice. The appealing feature of the approach is that it is non-iterative and "one-step". This is accomplished by solving a standard over-determined minimization problem in conjunction with appropriate median peak factors. These factors are determined by a plethora of reported new Monte Carlo studies which on their own possess considerable stochastic dynamics merit. In the proposed approach, generation and treatment of samples of the processes individually on a deterministic basis is not required as is the case with the various "two-step" approaches found in the literature addressing the herein considered task. The applicability and usefulness of the approach is demonstrated by furnishing extensive numerical data associated with the elastic design UHS of the current European (EC8) and the Chinese (GB 50011) aseismic code provisions. Purposely, simple and thus attractive from a practical viewpoint, uniformly modulated processes assuming either the Kanai-Tajimi (K-T) or the Clough-Penzien (C-P) spectral form are employed. The Monte Carlo studies yield damping and duration dependent median peak factor spectra, given in a polynomial form, associated with the first passage problem for UHS compatible K-T and C-P uniformly modulated stochastic processes. Hopefully, the herein derived stochastic processes and median peak factor spectra can be used to facilitate the aseismic design of structures regulated by contemporary code provisions in a Monte Carlo simulation-based or stochastic dynamics-based context of analysis.
机译:在本文中,提出了一种新颖的方法来解决非平稳随机过程的问题,该过程在平均意义上与给定的(目标)响应(均匀危害)谱(UHS)兼容,这是抗震结构设计中通常需要的按照当代的行为准则。该方法的吸引人之处在于它是非迭代且“一步一步”的。这是通过结合适当的中位数峰值因素解决标准的过度确定的最小化问题来实现的。这些因素是由大量已报道的新蒙特卡洛研究确定的,这些研究本身就具有相当大的随机动力学优势。在所提出的方法中,不需要像在文献中找到的解决本文所考虑的任务的各种“两步法”的情况那样,以确定性为基础单独地生成和处理过程的样本。通过提供与当前欧洲(EC8)和中国(GB 50011)抗震规范规定的弹性设计UHS相关的大量数值数据,证明了该方法的适用性和实用性。有目的的是,从实际的观点出发,简单且因此有吸引力,采用假设Kanai-Tajimi(K-T)或Clough-Penzien(C-P)光谱形式的均匀调制过程。蒙特卡洛研究以多项式形式给出了与阻尼和持续时间相关的中值峰值因子谱,与UHS兼容K-T和C-P均匀调制随机过程的初次通过问题相关。希望地,在基于蒙特卡罗模拟或基于随机动力学的分析环境中,本文中得出的随机过程和中值峰值因子谱可用于促进受现代规范规定调节的结构的抗震设计。

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