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A smoothed particle hydrodynamics model for electrostatic transport of charged lunar dust on the moon surface

机译:一种平滑的粒子流体动力学模型,用于月球表面上带电月球粉尘的静电运输

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The behavior of lunar dust on the Moon surface is quite complicated compared to that on the Earth surface due to the small lunar gravity and the significant influence of the complicated electrostatic filed in the Universe. Understanding such behavior is critical for the exploration of the Moon. This work develops a smoothed particle hydrodynamics (SPH) model with the elastic-perfectly plastic constitutive equation and Drucker-Prager yield criterion to simulate the electrostatic transporting of multiple charged lunar dust particles. The initial electric field is generated based on the particle-in-cell method and then is superposed with the additional electric field from the charged dust particles to obtain the resultant electric field in the following process. Simulations of cohesive soil's natural failure and electrostatic transport of charged soil under the given electric force and gravity were carried out using the SPH model. Results obtained in this paper show that the negatively charged dust particles levitate and transport to the shadow area with a higher potential from the light area with a lower potential. The motion of soil particles finally comes to a stable state. The numerical result for final distribution of soil particles and potential profile above planar surface by the SPH method matches well with the experimental result, and the SPH solution looks sound in the maximum levitation height prediction of lunar dust under an uniform electric field compared to theoretical solution, which prove that SPH is a reliable method in describing the behavior of soil particles under a complicated electric field and small gravity field with the consideration of interactions among soil particles.
机译:由于宇宙中的较小的农历和宇宙复杂的静电提交的复杂静电施加的显着影响,月球表面对月球表面对月球表面上的行为非常复杂。了解这种行为对于月球探索至关重要。这项工作具有平滑的粒子流体动力学(SPH)模型,具有弹性 - 完美的构成方程和DRUCKER-PRAGER屈服标准,以模拟多个带电的月球粉尘颗粒的静电输送。基于粒子内方法产生初始电场,然后用来自带电粉尘颗粒的附加电场叠加,以在以下工艺中获得所得电场。使用SPH模型对给定电力和重力下的带电土自然失效和带电土壤静电运输的模拟。本文获得的结果表明,带负电荷的粉尘颗粒从具有较低电位的光面积的潜在电位浮出和运输到阴影区域。土壤颗粒的运动终于达到了稳定状态。通过SPH方法对土壤颗粒的最终颗粒和潜在轮廓的数值结果与实验结果匹配良好,与理论上的溶液相比,SPH溶液在均匀电场的最大悬浮高度预测中的最大悬浮高度预测这证明了SPH是一种可靠的方法,用于描述在复杂的电场和小重力场下的土壤颗粒的行为,考虑到土壤颗粒之间的相互作用。

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