XU Bin-bin, TANG Wen-hui, RAN Xian-wen, XU Zhi-hong, CHEN Hua. Numerical Simulation of SPH for Dynamics Effect of Multilayer Discontinuous Structure Irradiated by Impulse X-ray[J]. Atomic Energy Science and Technology, 2012, 46(增刊): 48-52. DOI: 10.7538/yzk.2012.46.suppl.0048
Citation: XU Bin-bin, TANG Wen-hui, RAN Xian-wen, XU Zhi-hong, CHEN Hua. Numerical Simulation of SPH for Dynamics Effect of Multilayer Discontinuous Structure Irradiated by Impulse X-ray[J]. Atomic Energy Science and Technology, 2012, 46(增刊): 48-52. DOI: 10.7538/yzk.2012.46.suppl.0048

Numerical Simulation of SPH for Dynamics Effect of Multilayer Discontinuous Structure Irradiated by Impulse X-ray

  • When high energy X-ray irradiates material, it will cause energy deposition in materials, and generates thermal shock wave. At present, finite difference method is used to the numerical simulation of thermal shock usually, but if considering the interspace between the multilayer materials, the difference method will be more difficult. This paper used the SPH method to simulate multilayer discontinuous structure irradiated by high energy X-ray, and the results show that the gap between the materials of each layer has a certain influence on the thermal shock wave intensity, but doesn’t have any affect to gasification impulse.
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