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Fatigue damage estimation in non-linear systems using a combination of Monte Carlo simulation and the First Order Reliability Method

机译:蒙特卡罗模拟和一阶可靠性方法相结合的非线性系统疲劳损伤估计

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摘要

For non-linear systems the estimation of fatigue damage under stochastic loadings can be rather time-consuming. Usually Monte Carlo simulation (MCS) is applied, but the coefficient-of-variation (COV) can be large if only a small set of simulations can be done due to otherwise excessive CPU time. The reason is that the fatigue damage estimation is very sensitive to the largest values from the simulations. The paper suggests the additional use of the First Order Reliability Method (FORM) to get a better estimation of the tail in the distribution of the estimated fatigue damage and thereby reducing the COV. For a specific example dealing with stresses in a tendon in a tension leg platform the COV is thereby reduced by a factor of three. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于非线性系统,随机载荷下的疲劳损伤估计可能非常耗时。通常应用蒙特卡洛模拟(MCS),但是如果由于CPU时间过长而只能进行少量模拟,则变异系数(COV)可能会很大。原因是疲劳损伤估计对模拟中的最大值非常敏感。本文建议额外使用一阶可靠性方法(FORM)来更好地估计疲劳损伤分布中的尾部,从而降低COV。对于处理张力腿平台中的肌腱应力的特定示例,COV因此降低了三倍。 (C)2015 Elsevier Ltd.保留所有权利。

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