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SIMULATION OF AGGLUTINATES FORMATION

机译:凝聚形成的模拟

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摘要

Micrometeorites that continuously impact on the lunar surface are responsible for creating agglutinates which are uniquely irregular, jagged and high porosity. Due to process of agglutinates formation, the amount of agglutinates in lunar soil can be used to estimate the exposure history of the soil by using a lunar soil evolution model. Using commercially available simulation software called the PFC2D~(TM), we can simulate the mechanical behavior of a system of particles in general. In the companion paper [1], the lunar agglutinates are simulated using the parallel-bond model which allows us to incorporate the resistance to moment, and the same approach is taken here. In this paper, we study the formation of agglutinates by simulating the initial lunar surface soils with no agglutinates, and then generating small particles (<20 μm for example) with very high velocities (>5 km/sec for example) impacting the surface lunar soil particles. The kinetic energy associated with an impacting micrometeorite is high enough to fragment/pulverize the coarse particles and the agglutinates and also produce the crater ejecta. In this analysis the equation developed by O’Keefe and Ahrens (1977) is used to estimate the volume of melt.
机译:持续影响月球表面的微晶体是负责产生唯一不规则,锯齿状和高孔隙率的凝集物。由于凝集产物的形成,月球土壤中的凝集素量可用于估计通过使用月球土壤进化模型来估计土壤的暴露病史。使用称为PFC2D〜(TM)的市售仿真软件,我们可以一般模拟粒子系统的机械行为。在伴随纸张[1]中,使用并联粘合模型模拟月球凝聚物,该模型允许我们掺入抵抗力的抵抗力,并且在此拍摄相同的方法。在本文中,我们通过模拟初始月球表面污染没有凝集物,然后用非常高的速度(例如5km / sec)产生小颗粒(例如,例如5km / sec)来研究凝集氨酸的形成。土壤颗粒。与撞击微晶体相关的动能足够高,以片段/粉碎粗颗粒和凝集物,并产生火山口喷射物。在该分析中,O'Keefe和Ahrens(1977)开发的方程用于估计熔体的体积。

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