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Plasma behavior in the boundary layer near a railgun surface

机译:电磁炮表面附近边界层中的等离子体行为

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Viscous flow and thermal characteristics are theoretically analyzed for the plasma behind a moving projectile inside a railgun. When only convective effects are included in the turbulent boundary layer analysis, the results suggest a temperature maximum in the wall region for very-high-velocity flow. The case of radiative as well as convective transport has also been investigated for an optically thick boundary layer flow by application of an approximate method. Results show a sizable effect of radiation on the flow characteristics, especially on the heat transfer rate to the railgun surface. Specifically, the theory predicts that the heat flux to the wall is proportional to the square root of the sum of the radiation and convection parameters.
机译:理论上分析了轨道炮内部移动弹丸后面的等离子体的粘性流动和热特性。如果在湍流边界层分析中仅包括对流效应,则结果表明,对于超高速流动,壁区域的温度最高。还通过应用近似方法研究了光学厚边界层流的辐射和对流传输情况。结果表明辐射对流动特性有很大影响,尤其是对枪炮表面的传热速率。具体而言,该理论预测到壁的热通量与辐射和对流参数之和的平方根成比例。

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