Design and development of dynamic parallel computing code for three-dimensional gaseous detonation

被引:0
|
作者
Wang, Cheng [1 ]
Han, Wen-Hu [1 ]
Ning, Jian-Guo [1 ]
机构
[1] State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100871, China
关键词
Dynamics - Codes (symbols) - Detonation - Shock waves - Wavefronts - Numerical models;
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摘要
In numerical simulation of three-dimensional gaseous detonation, a large number of grids resulting from relative mesh resolution and large-scale computing domain consume tremendous computing resources, which brings a great challenge for the numerical simulation. Based on MPI parallel mode, this paper uses 5-th order WENO scheme to discrete partial differential term of the governing equations with chemical reaction, and develops high-resolution dynamic parallel code. Then it is used to simulate the propagation of detonation in square tube with obstacle. The numerical results show that high-resolution dynamic parallel code can effectively simulate the propagation of 3-D gas detonation in large-scale tube. It not only improves the computational efficiency but also the resolution of the detonation wave front. Compared with static parallel mode, high-resolution dynamic parallel code saves communication time of data in interface, and further enhances the computational efficiency. So, it is an effectively means to explore new physical mechanism of 3-D gaseous detonation.
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页码:948 / 953
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