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STATIC STRESS REDESIGN OF STRUCTURES BY LARGE ADMISSIBLE PERTURBATIONS

机译:静态压力通过大可禁止扰动重新设计结构

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The LargE Admissible Perturbation (LEAP) methodology is developed further to solve static stress redesign problems. The static stress general perturbation equation, which expresses the unknown nodal stresses of the objective structure in terms of the baseline structure stresses, is derived first. This equation depends the on the redesign variables for each element or group of elements; namely, the cross- sectional area and moment of inertia, and the distance between the neutral axis and the outer fiber of the cross section. This equation preserves the shape of the cross-section in the redesign process. LEAP enables the designer to redesign a structure to achieve specifications on modal properties, static displacements, forced response amplitudes, and static stresses. LEAP is implemented in code RESTRUCT which post-processes the FEA results of the baseline structure. Changes on the order of 100% in the above performance particulars and in redesign variables can be achieved without repetitive FE analyses. Several numerical applications on a simple cantilever beam and an offshore tower are used to verify the LEAP algorithm for stress redesign.
机译:进一步开发了静止扰动(LEAP)方法,以解决静态应力重新设计问题。首先推导出在基线结构应力方面表达目标结构的未知节点应力的静态应力一般扰动方程。此方程式取决于每个元素或元素组的Reedesign变量;即,横截面积和惯性矩,以及横截面的中性轴和外纤维之间的距离。该方程保留了重新设计过程中的横截面的形状。 LEAP使设计人员能够重新设计一个结构,以实现模态属性,静态位移,强制响应幅度和静态应力的规范。跳跃是在代码体制中实现的,该代码物质后处理基线结构的FEA结果。在不重复的FE分析的情况下,可以实现上述性能特征和重新设计变量的100%的变化。在简单的悬臂梁和近海塔上的几个数值应用用于验证压力重新设计的跳跃算法。

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