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Research on the Effect of Particle Distribution on the Crack Propagation in Shaped Energy Blasting Based on the Smoothed Particle Hydrodynamics

机译:基于平滑粒子动力学的颗粒分布对成形能量爆破裂纹传播影响的研究

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摘要

Conventional smoothed particle hydrodynamics (SPH) methods suffer from disadvantages, such as difficult initial particle configuration, uneven distribution of generated particles, and low computational efficiency when applied to numerical simulation of shaped charge blasting. In this research, to overcome these problems, a modified SPH method that generates the particle configuration through self-adaptive optimization is developed by the combined application of MATLAB and LS-DYNA. The results presented in this paper demonstrate that the modified configuration method solves the problem of uneven distribution of particles in complex geometry domains by providing a more uniform smoothed particle distribution than the conventional SPH method. Furthermore, the results from the application of these two methods to the bidirectional-shaped charge blasting problem reveal that the defects in the particle configuration in the conventional SPH method lead to the development of main cracks in both the shaped and the unshaped directions. However, with the self-adaptive optimization method, the main cracks develop only in the shaped direction. In addition, the equivalent stress difference between the shaped and unshaped directions, 0.7 ms after detonation, is 120 MPa with the modified method. This is 85 MPa more than that with the conventional method.
机译:传统的平滑颗粒流体动力学(SPH)方法遭受缺点,例如难度的初始颗粒构造,产生的颗粒的不均匀分布,并且当应用于成形电荷喷射的数值模拟时,产生的低计算效率。在这项研究中,为了克服这些问题,通过MATLAB和LS-DYNA的组合应用,开发了一种通过自适应优化产生粒子配置的修改的SPH方法。本文提出的结果表明,修改的配置方法通过提供比传统的SPH方法更均匀的平滑颗粒分布来解决复杂几何结构域中颗粒在复杂几何结构域中的不均匀分布的问题。此外,从双向形状的电荷爆破问题应用这两种方法的结果表明,传统的SPH方法中的颗粒构造中的缺陷导致了成形和未形成的方向上的主裂缝的发育。然而,利用自适应优化方法,主要裂缝仅在形状方向上显影。另外,在爆炸后,成形和未形成的方向,0.7ms之间的等效应力差为120MPa,具有改进的方法。这比传统方法更为85 MPa。

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