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Ultimate limit state design of sheet pile walls by finite elements and nonlinear programming

机译:板桩墙极限极限状态的有限元和非线性规划设计

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摘要

The design of sheet pile walls by lower bound limit analysis is considered. The design problem involves the determination of the necessary yield moment of the wall, the wall depth and the anchor force such that the structure is able to sustain the given loads. This problem is formulated as a nonlinear programming problem where the yield moment of the wall is minimized subject to equilibrium and yield conditions. The finite element discretization used enables exact fulfillment of these conditions and thus, according to the lower bound theorem, the solutions are safe.
机译:考虑通过下限分析来设计板桩墙。设计问题涉及确定墙的必要屈服力矩,墙深度和锚固力,以使结构能够承受给定的载荷。该问题被表述为非线性规划问题,其中壁的屈服力矩在平衡和屈服条件下被最小化。所使用的有限元离散化能够精确满足这些条件,因此,根据下界定理,解是安全的。

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