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首页> 外文期刊>Multidiscipline modeling in materials and structures >Resonance failure sensitivity analysis of straight-tapered assembled pipes conveying nonuniform axial fluid by active learning Kriging method
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Resonance failure sensitivity analysis of straight-tapered assembled pipes conveying nonuniform axial fluid by active learning Kriging method

机译:通过主动学习克里格化方法输送非均匀轴流流体直锥形组装管的共振失效敏感性分析

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Purpose - The purpose of this paper is to study the resonance failure sensitivity analysis of straight-tapered assembled pipe conveying nonuniform axial fluid by an active learning Kriging (ALK) method. Design/methodology/approach - In this study, first, the motion equation of straight-tapered assembled pipe conveying nonuniform fluid is built Second, the Galerkin method is used for calculating the natural frequency of assembled pipe conveying nonuniform fluid. Third, the ALK method based on expected risk function (ERF) is used to calculate the resonance failure probability and moment independent global sensitivity analysis. Findings - The findings of this paper highlight that the eigenfrequency and critical velocity of uniform fluid-conveying pipe are less than the reality and the error is biggest in first-order natural frequency. The importance ranking of input variables affecting the resonance failure can be obtained. The importance ranking is different for a different velocity and mode number. By reducing the uncertainty of variables with a high index, the resonance failure probability can be reduced maximally. Research limitations/implications - There are no experiments on the eigenfrequency and critical velocity. There is no experiments about natural frequency and critical velocity of straight tapered assembled pipe to verify the theory in this paper. Originality/value - The originality of this paper lies as follows: the motion equation of straight-tapered pipe conveying nonuniform fluid is first obtained. The eigenfrequency of nonuniform fluid and uniform fluid inside the assembled pipe are compared. The resonance reliability analysis of straight-tapered assembled pipe is first proposed. From the results, it is observed that the resonance failure probability can be reduced efficiently.
机译:目的 - 本文的目的是通过主动学习克里格(ALK)方法研究直锥形轴向流体输送非圆形轴向流体的共振故障敏感性分析。设计/方法/接近 - 在本研究中,首先,建立了直锥形组装管的运动方程,延伸了非均匀流体,Galerkin方法用于计算输送不均匀流体的组装管的固有频率。第三,基于预期风险函数(ERF)的ALK方法用于计算共振失效概率和时刻独立的全局敏感性分析。结果 - 本文的调查结果强调了均匀流体输送管的特征频率和临界速度小于现实,并且误差是一流的自然频率最大。可以获得影响谐振故障的输入变量的重要性排序。对于不同的速度和模式编号,重要性排名是不同的。通过减少高索引的变量的不确定性,谐振失效概率可以最大化。研究限制/含义 - 对特征频率和临界速度没有实验。没有关于直锥形组装管的固有频率和临界速度的实验,以验证本文的理论。原创性/值 - 本文的原创性如下:首先获得输送不均匀流体的直锥形管道的运动方程。比较了组装管内的非均匀流体和均匀液的特征频率。首先提出了直锥形组装管的共振可靠性分析。从结果中,观察到可以有效地减少共振失效概率。

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