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Dynamic fracture simulation of flexible multibody systems via coupled finite elements of ANCF and particles of SPH

机译:通过ANCF和SPH颗粒耦合有限元对柔性多体系统进行动态断裂模拟

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摘要

A parallel computation methodology is proposed to study the dynamic fracture process of a flexible multibody system with initial cracks. The potential fracture domains of the flexible body system are described by using the particles of smoothed particle hydrodynamics (SPH), and the other domains of the system are modeled by using the finite elements of absolute nodal coordinate formulation (ANCF). In order to preserve the continuity of deformation field, extra virtual particles are uniformly embedded into the interface, where the finite elements of ANCF and the particles of SPH are connected, so as to transmit the interaction forces. The OpenACC derivatives are used to parallelize both the particle contact detection and the solution of the integral equations. A predictor-corrector scheme is used to solve the ordinary differential equations for the particles of SPH, while the generalized-alpha method is used to solve the huge set of differential algebraic equations for the multibody system. The OpenMP derivatives are also used to parallelize the evaluation of the elastic force vectors and their Jacobi matrices of the finite elements. Finally, three case studies are given to validate the proposed computation methodology.
机译:提出了一种并行计算方法来研究具有初始裂纹的柔性多体系统的动态断裂过程。通过使用光滑粒子流体动力学(SPH)的粒子描述了柔体系统的潜在断裂域,并使用绝对节点坐标公式(ANCF)的有限元对系统的其他域进行了建模。为了保持形变场的连续性,多余的虚拟粒子均匀地嵌入界面中,ANCF的有限元与SPH的粒子相互连接,从而传递相互作用力。 OpenACC导数用于并行化粒子接触检测和积分方程的解。一种预测器-校正器方案用于求解SPH粒子的常微分方程,而广义α方法用于求解多体系统的庞大微分代数方程组。 OpenMP导数还用于并行化弹性力矢量及其有限元Jacobi矩阵的求值。最后,通过三个案例研究来验证所提出的计算方法。

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