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Modeling The Interaction Between a Rocket Plume, Scoured Regolith, and a Plume Deflection Fence

机译:建模火箭羽流,彻底凝固曲线和羽毛偏转围栏之间的相互作用

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As a lunar lander approaches the surface, the impinging exhaust gases entrain regolith into a high velocity spray. This two-phase spray can be damaging to nearby structures, such as a lunar outpost. One way of mitigating this damage is to use a berm or fence to shield nearby structures from the dust spray. In this work, we use a coupled continuum - DSMC (direct simulation Monte Carlo) solver to simulate the gas and dust flow fields. A continuum solver, DPLR, is used to model the internal nozzle flow from the nozzle throat out to the continuum regions of the under-expanded exhaust in the near vicinity of the engine. As the rocket exhaust expands further towards vacuum, continuum assumptions break down and kinetic equations are used. Additionally, a dust - gas collision model that conserves momentum and energy transfer between the gas and dust grains has been implemented into the kinetic solver. The distance of the deflection fence from the landing pad is studied parametrically and the corresponding gas and dust flow fields are analyzed. Additionally, the sensitivity of the model to the dust - fence coefficient of restitution is studied when the fence is located 15 m off axis.
机译:当月球兰接近表面时,将废气撞入高速喷雾剂的废气。这种两相喷雾可能对附近的结构造成损害,例如月球前哨。减轻这种损坏的一种方法是使用海膛或围栏来保护附近的灰尘喷雾的结构。在这项工作中,我们使用耦合的连续内 - DSMC(直接仿真蒙特卡罗)求解器来模拟气体和灰尘流场。连续求解器DPLR,用于将内部喷嘴流从喷嘴喉部造型到发动机附近的膨胀余部的连续内区域。由于火箭排气进一步扩展真空,因此连续假设分解,使用动力学方程。另外,在动力学求解器中实施了节省气体和灰尘之间的动力和能量转移的灰尘碰撞模型。参数研究了偏转栅栏从着陆垫的距离,分析了相应的气体和灰尘场。另外,在围栏偏置15米处的轴承位于15米处,研究了模型对灰尘围栏恢复系数的敏感性。

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