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首页> 外文期刊>Plasma Science, IEEE Transactions on >Aerothermal Load and Drag Force Analysis of the Electromagnetically Launched Projectiles Under Rarefied Gas Conditions
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Aerothermal Load and Drag Force Analysis of the Electromagnetically Launched Projectiles Under Rarefied Gas Conditions

机译:稀有气体条件下电磁发射弹丸的气热载荷和阻力分析

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摘要

Electromagnetically launched projectiles fly with hypersonic speeds in different regions of the Earth’s atmosphere. Because of their hypersonic speeds, these projectiles are designed to withstand extreme thermal loads. Drag forces should also be considered to maximize the operational range. To reduce the thermal loads and drag forces, the geometric shape of these projectiles should be carefully designed. We can utilize either experimental or numerical methods to calculate these heating effects and drag forces. Numerical methods are more economic in terms of monetary cost and time. However, we cannot use the same numerical method in different regions of the Earth’s atmosphere. In this paper, we used direct simulation Monte Carlo method to calculate thermal loads and drag forces of four different projectile geometries in the rarefied part of the atmosphere. Simulation results show that thermal loads and drag forces vary considerably depending on the projectile geometry.
机译:电磁发射的弹丸以高超音速在地球大气的不同区域飞行。由于其超音速的速度,这些弹丸被设计为承受极端的热负荷。还应考虑拖动力以最大程度地扩大操作范围。为了减少热负荷和阻力,应仔细设计这些弹丸的几何形状。我们可以利用实验或数值方法来计算这些热效应和阻力。就货币成本和时间而言,数值方法更为经济。但是,我们不能在地球大气的不同区域使用相同的数值方法。在本文中,我们使用直接模拟蒙特卡罗方法来计算大气稀少部分中四种不同弹丸几何形状的热载荷和阻力。仿真结果表明,热负荷和阻力取决于弹丸几何形状而有很大变化。

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