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Investigation on Computing Method of Martian Dust Fluid Based on the Energy Dissipation Method

机译:基于能量耗散方法的火山灰粉液计算方法研究

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摘要

In this paper, an initiative Martian dust fluid simulating research based on the energy dissipation method was developed to simulate the deposition process of Martian dust fluid which was caused by surface adhesion between particles and Martian rovers. Firstly, an energy dissipation model of particles based on the Discrete Element Method (DEM) was established because of the characteristics of Martian dust particles such as tiny size and viscoelasticity. This model is based on the existing DMT model to analyze the collision deposition of dust fluid particles, including particle-spacecraft collision and particle-particle collision. Secondly, this paper analyzed the characteristics of particles after their first collision, then, established the stochastic model of critical wind speed for the particle deposition process. Finally, a series of simulations of the Martian dust fluid particle deposition process were done based on DEM-CFD. The results verified the accuracy of the energy dissipation model and the stochastic model, which could also verify the feasibility and effectiveness of the computing method of Martian dust fluid based on the DEM-CFD technology.
机译:本文采用了一项基于能量耗散方法的倡议火灾火山粉尘仿真研究,以模拟火星粉尘液的沉积过程,其由粒子和火星群体之间的表面粘附引起的。首先,由于Martian粉尘颗粒如微小尺寸和粘弹性,建立了基于离散元法(DEM)的粒子的能量耗散模型。该模型基于现有的DMT模型,分析防尘颗粒的碰撞沉积,包括颗粒 - 航天器碰撞和颗粒颗粒碰撞。其次,本文分析了它们的第一碰撞后颗粒的特点,然后建立了粒子沉积过程的临界风速随机模型。最后,基于DEM-CFD进行了一系列火山粉液颗粒沉积过程的模拟。结果验证了能量耗散模型和随机模型的准确性,也可以验证基于DEM-CFD技术的火星粉尘液计算方法的可行性和有效性。

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