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Buckling analysis of structures under combined loading with acceleration forces

机译:组合荷载作用下结构的屈曲分析

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The structures of concern in this study are subject to two types of forces: dead loads from the acceleration imposed on the structures as well as the installed operation machines and the additional adjustable forces. We wish to determine the critical values of the adjustable forces when buckling of the structures occurs. The mathematical statement of such a problem gives rise to a constrained eigenvalue problem (CEVP) in which the dominant eigenvalue is subject to an equality constraint. A numerical algorithm for solving the CEVP is proposed in which an iterative method is employed to identify an interval embracing the target eigenvalue. The algorithm is applied to four engineering application examples finding the critical loads of a fixed-free beam subject to its own body force, two plane structures and one wide-flange beam using shell elements when acceleration force is present. The accuracy is demonstrated using the first example whose classical solution exists. The significance of the equality constraint in the EVP is shown by comparing the solutions without the constraint on the eigenvalue. Effectiveness and accuracy of the numerical algorithm are presented.
机译:本研究中所关注的结构受到两种类型的力:由施加在结构以及已安装的操作机上的加速度引起的静载荷和附加的可调节力。我们希望确定当结构发生屈曲时可调节力的临界值。这种问题的数学表述引起了一个约束特征值问题(CEVP),其中主导特征值受到等式约束。提出了一种求解CEVP的数值算法,该算法采用迭代方法确定包含目标特征值的区间。该算法被应用于四个工程应用示例,这些示例在存在加速度的情况下使用壳单元来确定自由固定梁在其自身力的作用下的临界载荷,两个平面结构和一个使用壳单元的宽翼缘梁。使用存在经典解决方案的第一个示例证明了准确性。通过比较没有特征值约束的解,可以看出EVP中等式约束的重要性。给出了数值算法的有效性和准确性。

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