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A Simplified Linear Consistency Kernel Function in SPH Method

机译:SPH方法中的简化线性一致性核函数

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摘要

Smoothed Particle Hydrodynamics (SPH) is a relatively new technique for simulating the dynamic response of solids, especially for high velocity impact and fracture problem. However, closer examination of SPH reveals some severe problems. The major difficulties are: (1) tensile instability; (2) zero-energy mode; (3) boundary deficiency; (4) less accuracy. One solution to these major difficulties with SPH is to improve the consistency of the kernel function. Based on the Reproducing Kernel Particle Method (RKPM), the concept of the proposed simplified linear consistency is introduced. The most attractive feature of the simplified linear consistency is the ease and cheapness of doing 3D calculation. One contribution of this paper is to show clearly the accuracy of solution gradually improved by increasing the order of the consistency. Simple 3D impacting models are established with different geometries and higher accurate results are obtained by using higher consistency kernel functions. Other features as numerical convergence, computational efficiency, etc. and some considerations of the simplified linear consistency kernel function are also discussed.
机译:平滑粒子流体动力学(SPH)是一种相对较新的技术,用于模拟固体的动力响应,尤其是对于高速冲击和断裂问题。但是,仔细检查SPH会发现一些严重问题。主要困难是:(1)拉伸不稳定性; (2)零能耗模式; (3)边界不足; (4)准确性较低。解决SPH这些主要困难的一种方法是提高内核功能的一致性。基于“再生核粒子法”(RKPM),介绍了所提出的简化线性一致性的概念。简化的线性一致性最吸引人的特征是进行3D计算的简便性和廉价性。本文的一个贡献是清楚地显示出通过增加一致性的阶数逐渐提高的解决方案的准确性。建立具有不同几何形状的简单3D影响模型,并通过使用更高一致性的内核函数获得更高的准确结果。还讨论了数值收敛,计算效率等其他特征,以及简化线性一致性核函数的一些考虑因素。

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