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Hybrid finite element transfer matrix method and its parallel solution for fast calculation of large-scale structural eigenproblem

机译:快速求解大型结构特征问题的混合有限元传递矩阵法及其并行解

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Vibration characteristics play a fundamental role in structural analysis and dynamics design. The determination of vibration characteristics requires the solution of an eigenproblem. In this work, a novel parallel hybrid finite element (FE) transfer matrix method (TMM) is studied for a large-scale structural eigenproblem. The full structure is divided into some substructures, and the vibration characteristics of each substructure are calculated with their proper solution method (FE or TMM). Then by using the order-reduction transformation of the full structure based on an improved fixed interface modal synthesis, the reduced global equation of the full structure is obtained easily, and it can be used to solve the vibration characteristics of the full structure efficiently. To overcome the numerical instability of the ordinary transfer matrix technology in a large-scale structural analysis, the Riccati transform is also adopted. This hybrid method has good parallelism, and the corresponding parallel algorithms are presented. Finally, this method is applied to a vacuum vessel structure of the China fusion engineering test reactor, which has cyclic symmetry conditions. The simulation results demonstrate that this method has low computational cost and satisfactory accuracy. (C) 2019 Elsevier Inc. All rights reserved.
机译:振动特性在结构分析和动力学设计中起着基本作用。振动特性的确定需要解决本征问题。在这项工作中,针对大规模结构特征问题研究了一种新颖的并行混合有限元(FE)传递矩阵方法(TMM)。将整个结构分为一些子结构,并使用适当的求解方法(FE或TMM)计算每个子结构的振动特性。然后,基于改进的固定接口模态综合,通过对整体结构进行降阶变换,可以容易地得到整体结构的简化全局方程,可以有效地求解整体结构的振动特性。为了在大型结构分析中克服常规传递矩阵技术的数值不稳定性,还采用了Riccati变换。该混合方法具有良好的并行性,并提出了相应的并行算法。最后,将该方法应用于具有循环对称条件的中国聚变工程试验堆真空容器结构。仿真结果表明,该方法具有较低的计算成本和令人满意的精度。 (C)2019 Elsevier Inc.保留所有权利。

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