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EULERIAN NUMERICAL METHOD FOR SIMULATION OF EXPLOSION PROBLEMS

机译:爆炸问题的欧拉数值方法

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摘要

This paper presents an adaptive grid subdivision algorithm based on the Youngs' interface reconstruction algorithm to treat the advection of the mixed grids in the multi-material Eulerian method. The advantage of this algorithm is that it only needs to calculate the advection between pure grids, escaping the complexity encountered in the advection of mixed grids with two materials. In addition, this algorithm is a multi-dimensional advection algo rithm, and it can decrease the error encountered in the direction-split advection algorithm. In order to verify the efficiency of the proposed adaptive grid subdivision algorithm in the actual physical field, it is added to the indigenously developed EXPLOSION-2D simulation software, and some numerical tests are performed to demonstrate the utility of this algo rithm. The simulation results verify that the adaptive grid subdivision algorithm is simple and effi cient.
机译:提出了一种基于杨氏界面重构算法的自适应网格细分算法,以多材料欧拉方法处理混合网格的平流问题。该算法的优势在于,它仅需要计算纯网格之间的对流,而避免了使用两种材料混合网格对流时遇到的复杂性。另外,该算法是多维对流算法,可以减少方向分割对流算法中遇到的误差。为了验证所提出的自适应网格细分算法在实际物理领域中的效率,将其添加到本地开发的EXPLOSION-2D仿真软件中,并进行了一些数值测试,以证明该算法的实用性。仿真结果验证了自适应网格细分算法简单有效。

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