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Goal-oriented error estimation for beams on elastic foundation with double shear effect

机译:双重剪力作用下弹性地基梁的目标导向误差估计

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In this paper, goal-oriented error estimation for Timoshenko beams on Pasternak foundation, which involves double shear effect, is performed. The constitutive relation error (CRE) estimation is used in finite element analysis (FEA) to acquire strict bounds on quantities of interest. Due to the coupling of the displacement field and the internal force field in the equilibrium equations of the beam, the prolongation condition for construction of the admissible internal force field, a pillar of the CRE estimation, is not directly applicable. To overcome this difficulty, an auxiliary approximate problem whose stress solution enables the CRE estimation to proceed is introduced. Thereafter, strict bounds of outputs for the beam are obtained by dual analysis to which a significant adjunct is the circumvention of shear locking in low-order finite element analysis. Numerical results are presented to validate the strict bounding properties for quantities of beams on elastic foundation and accurate estimation of displacement quantities that is impervious to shear locking.
机译:本文对帕斯捷尔纳克地基上的蒂莫申科梁进行了目标导向的误差估计,该估计涉及双剪力效应。本构关系误差(CRE)估计用于有限元分析(FEA)中,以获取感兴趣量的严格边界。由于梁的平衡方程中位移场和内力场的耦合,构造可容许内力场(CRE估计的支柱)的延长条件不能直接应用。为了克服这个困难,引入了一个辅助近似问题,其应力解使得CRE估计得以进行。此后,通过双重分析获得梁的输出严格界限,在低阶有限元分析中,重要的辅助因素是避免剪切锁定。数值结果表明,可以验证弹性地基上梁数量的严格约束特性,并能准确估计不受剪力锁定影响的位移量。

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