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Modeling of Fatigue Crack Induced Nonlinear Ultrasonics Using a Highly Parallelized Explicit Local Interaction Simulation Approach

机译:疲劳裂纹诱导非线性超声机的建模使用高度并行化明确局部相互作用仿真方法

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This paper presents a parallelized modeling technique for the efficient simulation of nonlinear ultrasonics introduced by the wave interaction with fatigue cracks. The elastodynamic wave equations with contact effects are formulated using an explicit Local Interaction Simulation Approach (LISA). The LISA formulation is extended to capture the contact-impact phenomena during the wave damage interaction based on the penalty method. A Coulomb friction model is integrated into the computation procedure to capture the stick-slip contact shear motion. The LISA procedure is coded using the Compute Unified Device Architecture (CUDA), which enables the highly parallelized supercomputing on powerful graphic cards. Both the explicit contact formulation and the parallel feature facilitates LISA's superb computational efficiency over the conventional finite element method (FEM). The theoretical formulations based on the penalty method is introduced and a guideline for the proper choice of the contact stiffness is given. The convergence behavior of the solution under various contact stiffness values is examined. A numerical benchmark problem is used to investigate the new LISA formulation and results are compared with a conventional contact finite element solution. Various nonlinear ultrasonic phenomena are successfully captured using this contact LISA formulation, including the generation of nonlinear higher harmonic responses. Nonlinear mode conversion of guided waves at fatigue cracks is also studied.
机译:本文提出了一种平行化建模技术,用于利用疲劳裂纹引入的非线性超声波的高效模拟。具有接触效果的弹性动力波方程使用明确的局部交互仿真方法(LISA)配制。延长丽莎配方以捕获基于惩罚方法的波损伤相互作用期间捕获接触冲击现象。库仑摩擦模型集成到计算过程中,以捕获粘滑触点剪切运动。使用Compute Unified Device架构(CUDA)进行编码LISA程序,这使得在强大的图形卡上能够高度并行化超级计算。显式接触配方和并联特征均促进LISA通过传统有限元方法(FEM)的高超计算效率。引入了基于惩罚方法的理论制剂,并给出了正确选择接触刚度的指导。检查溶液在各种接触刚度值下的收敛行为。数值基准问题用于研究新的LISA配方,并将结果与​​传统的接触有限元溶液进行比较。使用这种联系人的配方成功捕获各种非线性超声波现象,包括产生非线性高谐波反应的产生。还研究了疲劳裂缝的导波的非线性模式转换。

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