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An accurate and efficient computational method for structural dynamic stresses under random loading

机译:随机荷载下结构动应力的精确高效计算方法

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One of challenging issues in structural random analysis is to accurately predict the dynamic stresses. It is even important for fatigue life prediction and strength-safe design. This paper proposes an accurate and efficient computational method to obtain the dynamic stresses of structures under random loading. Firstly, the random loading given by PSD is transferred into harmonic functions. Meanwhile, structural modal stress analysis is conducted. Based on the modal stress superposition and the equivalent treatment for higher modal responses, the dynamic stresses are determined. It consists of two parts: one is from the modal stress superposition, and the other is from the equivalent analysis including the contributions of the ignored higher modes. This new method is verified by the experiment conducted in our laboratory, showing that the dynamic stresses predicted by the new method agree well with the experimental results, and it is of high computational efficiency. The proposed method can be easily applied to dynamic stresses prediction for engineering structures under random loading. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:结构随机分析中具有挑战性的问题之一是准确预测动态应力。对于疲劳寿命预测和强度安全设计而言,它甚至非常重要。本文提出了一种精确有效的计算方法来获得结构在随机荷载下的动态应力。首先,由PSD产生的随机负载被转换为谐波函数。同时,进行结构模态应力分析。基于模态应力叠加和较高模态响应的等效处理,确定了动态应力。它由两部分组成:一个来自模态应力叠加,另一个来自等效分析,包括被忽略的较高模的贡献。通过在实验室进行的实验验证了该方法的有效性,表明该方法预测的动应力与实验结果吻合良好,具有较高的计算效率。所提出的方法可以容易地应用于随机荷载下工程结构的动态应力预测。 (C)2016 Elsevier Masson SAS。版权所有。

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