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首页> 外文期刊>Journal of Failure Analysis and Prevention >A Comprehensive Reliability Evaluation Model of Turbine Runner Blades under Complex Conditions
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A Comprehensive Reliability Evaluation Model of Turbine Runner Blades under Complex Conditions

机译:复杂条件下汽轮机流道叶片综合可靠性评价模型

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摘要

In this paper, a comprehensive method to evaluate the reliability of turbine runner blades under complex conditions has been proposed. The method takes into consideration the flow excitation parameters acting on the blades under different conditions, which present different uncertain information characteristics. The structural performance function of both vibration failure and fatigue failure of runner blades has been established, according to their vibration and fatigue characteristics. A probabilistic reliability model of the multi-failure modes of runner blades under their rated conditions has been established through application of random reliability theory, and a probabilistic non-probabilistic reliability model of the multi-failure modes of runner blades under non-rated conditions has been established by applying random reliability theory and non-probabilistic reliability theory, based on the structural performance function of both vibration failure and fatigue failure, taking into consideration the uncertain information characteristics of the flow excitation parameters that act on the runner blades under different conditions. On the basis of the two reliability models, a comprehensive model to evaluate the reliability of runner blades under complex conditions has been constructed. The reliability of the turbine runner blades under complex conditions has been analyzed through the use of examples, and the accuracy of the models has been proved using the Monte Carlo simulation (MCS).
机译:本文提出了一种在复杂条件下评估水轮机转轮叶片可靠性的综合方法。该方法考虑了不同工况下作用在叶片上的流动激励参数,这些参数呈现出不同的不确定性信息特征。根据转轮叶片的振动和疲劳特性,建立了转轮叶片振动失效和疲劳失效的结构性能函数。应用随机可靠性理论,建立了转轮叶片在额定工况下多种失效模式的概率可靠性模型,应用随机可靠性理论和非概率可靠性理论,基于振动失效和疲劳失效的结构性能函数,建立了非额定工况下转轮叶片多失效模式的概率非概率可靠性模型,考虑到在不同条件下作用于转轮叶片的流动激励参数的不确定性信息特征。在这两种可靠性模型的基础上,建立了复杂工况下转轮叶片可靠性的综合评价模型。通过实例分析了水轮机转轮叶片在复杂工况下的可靠性,并通过蒙特卡罗模拟(MCS)验证了模型的准确性。

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