首页> 外文会议>55th International Astronautical Congress 2004 vol.6 >ASSESSMENT OF NUMERICAL SIMULATIONS FOR HYPERVELOCITY IMPACTS OF SPACE DEBRIS
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ASSESSMENT OF NUMERICAL SIMULATIONS FOR HYPERVELOCITY IMPACTS OF SPACE DEBRIS

机译:空间碎片超高速撞击的数值模拟评估

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The Japanese Experiment Module (JEM) and the Centrifuge Accommodation module (CAM) developed by JAXA are manned pressurized modules used as research laboratories on orbit and planned to be attached to the International Space Station.rnNumerical simulations were conducted using the SPH (Smoothed Particle Hydrodynamics), Euler and Lagrange techniques to simulate hypervelocity impacts on the JEM debris shields. In the simulation, we found the phenomenon in the SPH method that the total energy of the system decreased when the Debris Cloud started to impact to the Pressure Wall. We need to know the cause of the phenomenon and take care of it when using SPH technique to simulate Hypervelocity Impacts. The numerical simulation techniques of the SPH, Euler and Lagrange methods are compared and evaluated in their comparative accuracy.rnAs to the SPH method applicability in the range of "Vaporization Velocity Range (WR)" where the impact velocity is more than around 7km/sec and the Debris vaporizes after the impact to the Front Bumber, there is possibility that the damage of the Pressure Wall in the simulation is severer than the actual damage, while the damage in "Non-Vaporization Velocity Range (NVVR)" can be simulated well. It is concluded that the SPH method cannot simulate the conservation of internal energy correctly when the density of the particles of the Debris Cloud decreases after the impact to the Front Bumper.
机译:JAXA开发的日本实验模块(JEM)和离心机适应模块(CAM)是用作在轨研究实验室的载人加压模块,并计划连接到国际空间站。 ),欧拉(Euler)和拉格朗日(Lagrange)技术来模拟超高速运动对JEM碎片防护罩的影响。在仿真中,我们发现在SPH方法中,当碎片云开始冲击压力墙时,系统的总能量减少了。当使用SPH技术模拟超高速撞击时,我们需要了解现象的原因并加以解决。比较和评估了SPH,Euler和Lagrange方法的数值模拟技术,并比较了它们的比较精度。rn关于SPH方法在“冲击速度大于7km / sec”的“汽化速度范围(WR)”范围内的适用性并且在撞击前面板后碎片会蒸发,因此模拟中压力墙的损坏可能比实际损坏更严重,而“非蒸发速度范围(NVVR)”中的损坏则可以很好地模拟。得出的结论是,当撞击前保险杠后,碎片云的颗粒密度降低时,SPH方法无法正确模拟内部能量的守恒。

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