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Rarefied Gas Flow Reflection from a Wall with an Orifice and Gas Outflow into a Vacuum

机译:稀有的气体流量从墙壁上的孔流入孔口和气体流出真空

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摘要

The unsteady two-dimensional problem of the reflection of a uniform supersonic rarefied-gas flow incident normal on a wall with an orifice and the gas outflow through the orifice (slot or channel) is solved on the basis of the kinetic S-model. The slot influence on the reflection nature, the velocity of the shock wave reflected from the wall, and the formation of a gas jet flowing out into a vacuum is studied as a function of the incident flow velocity, the gas rarefaction degree, and the conditions imposed on the wall. The effect of the wall thickness, that is, the length of the channel, through which the gas flows out, is also investigated. The gas flow rate through the orifice is calculated as the main integral characteristic. The attainment of steady reflection regime in the outflow process is traced. The kinetic equation is solved numerically using the conservative difference method of the second order with respect to all variables.
机译:在具有孔口的壁上发生正常的均匀超音速稀土气流的反射的不稳定的二维问题和通过孔口(槽或通道)的气体流出的气体流出。 对反射性质的槽对反射性质,从壁反射的冲击波的速度,以及流入真空中的气体喷射的速度作为入射流速,气体稀疏度和条件的函数研究 施加在墙上。 还研究了壁厚,即气体流出的通道的长度的效果。 通过孔口的气体流速被计算为主要的整体特性。 追踪流出过程中稳定反射制度的效率。 使用第二阶的保守差法在数值上与所有变量的保守差法一起解决。

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