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Stability of slender beams and frames resting on 2D elastic half-space

机译:置于2D弹性半空间上的细长梁和框架的稳定性

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摘要

Making use of a mixed variational formulation based on the Green function of the substrate, which assumes as independent fields the structure displacements and the contact pressure, a simple and efficient finite element-boundary integral equation coupling method is derived and applied to the stability analysis of beams and frames resting on an elastic half-plane. Slender Euler-Bernoulli beams with different combinations of end constraints are considered. The examples illustrate the convergence to the existing exact solutions and provide new estimates of the buckling loads for different boundary conditions. Finally, nonlinear incremental analyses of rectangular pipes with compressed columns and free or pinned foundation ends are performed, showing that pipes stiffer than the soil may exhibit snap-through instability.
机译:利用基于基体格林函数的混合变分公式,以结构位移和接触压力为独立域,推导了一种简单有效的有限元边界积分方程耦合方法,并将其应用于结构的稳定性分析。在弹性半平面上搁置的梁和框架。考虑具有不同末端约束组合的细长Euler-Bernoulli梁。这些示例说明了对现有精确解的收敛性,并提供了不同边界条件下屈曲载荷的新估计。最后,对带有压缩柱和自由或固定地基端的矩形管进行非线性增量分析,结果表明,比土壤更硬的管可能会表现出快速的不稳定性。

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