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首页> 外文期刊>Engineering Structures >Shakedown Analysis Of Spatial Frames With Parameterized Load Domain
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Shakedown Analysis Of Spatial Frames With Parameterized Load Domain

机译:参数化载荷域的空间框架减震分析

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摘要

This work addresses shakedown analysis of geometrically linear spatial frames with linearized yield criteria and parameterized general variable load domain. If the boundary of the load domain is curved, the respective optimization problem has an infinite number of constraints. Using parameterization, a computational bi-level decomposition methodology is developed, which is capable of treating problems of this kind. Two alternative bi-level procedures are presented: the centered minmax technique and the parameterized Maier's technique. The lower level, shared by both procedures, comprises a series of local constrained optimization problems for the check points across the frame. These low-order problems, solved either algorithmically or analytically, provide data for the upper level, where a linear programming problem of limit analysis type is solved in each procedure for the whole frame. Two examples with ellipsoidal load domain are presented. Several aspects are discussed.
机译:这项工作解决了具有线性屈服准则和参数化一般可变载荷域的几何线性空间框架的减震分析。如果负载域的边界是弯曲的,则相应的优化问题将具有无限数量的约束。使用参数化,开发了一种计算双层分解方法,该方法能够处理此类问题。提出了两种可供选择的双层程序:集中式minmax技术和参数化Maier技术。这两个过程共享的较低级别包括针对框架中检查点的一系列局部约束优化问题。这些通过算法或解析方式解决的低阶问题为上层提供了数据,其中在整个过程的每个过程中都解决了极限分析类型的线性规划问题。给出了两个椭圆负载域的例子。讨论了几个方面。

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