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Symplectic Eigenvalue Analysis Method for Bending of Beams Resting on Two-Parameter Elastic Foundations

机译:双参数弹性基础围绕梁弯曲的辛偏见分析方法

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This paper develops a new symplectic eigenvalue analysis (SEA) method for deriving the symplectic analytical solutions for the bending of Timoshenko beams resting on two-parameter elastic foundations. The SEA method accommodates various beam-foundation models with arbitrary external loads and arbitrary boundary conditions. A generalized Hamiltonian functional is first derived by introducing the Lagrange multipliers into the total potential energy functional, and then the first-order dual equation and its corresponding boundary conditions are obtained. Once the variables are separated, the beam bending is transformed into an eigenvalue problem, and the corresponding eigenvalues and eigenvectors are used to derive the symplectic solutions. In addition, a new hybrid method, which incorporates the singular functions and the variable separation method, is proposed to obtain the particular solutions with respect to arbitrary external loads. The systematic SEA method provides a new general analytical framework for studying beam-foundation interaction problems, and the comprehensive analyses on the symplectic eigenvalues help to deeply understand the characteristics of the symplectic solutions. Three examples are presented to assess the applicability of the SEA method and to validate the accuracy of the symplectic solutions. The differences and similarities between the Pasternak elastic foundation and the generalized elastic foundation are quantitatively and qualitatively investigated by the SEA method. (C) 2017 American Society of Civil Engineers.
机译:本文开发了一种新的杂项特征值分析(SEA)方法,用于导出旋转分析解决方案,以便在两参数弹性基础上休息Timoshenko梁的弯曲。海洋方法可容纳各种梁基础型号,具有任意外部载荷和任意边界条件。首先通过将拉格朗日乘法器引入总电位能量功能,然后获得一级双方程及其对应的边界条件来实现广义哈密顿功能。一旦变量分开,将光束弯曲变为特征值问题,并且相应的特征值和特征向量用于导出辛溶液。另外,提出了一种结合奇异功能和可变分离方法的新的混合方法,以获得关于任意外部负载的特定解决方案。系统海洋方法为研究光束基础相互作用问题提供了一种新的一般分析框架,杂志特征值的综合分析有助于深刻了解杂项解决方案的特征。提出了三个例子以评估海洋方法的适用性并验证杂项解决方案的准确性。普斯康纳克弹性地基与广义弹性基础之间的差异和相似度通过海洋方法定量和定性地研究。 (c)2017美国土木工程师协会。

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