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Thermal simulation of drilling into lunar rock simulant by discrete element method

机译:分立元素法钻入月球岩石模拟剂的热模拟

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摘要

This study investigated the thermal problem of drilling into a lunar rock simulant. A thermal model involving radiation and heat transfer involved a geometry for drilling into the lunar rock simulant was established using discrete element method (DEM). Drilling experiments were performed in a vacuum to verify the model. Thermal simulations of drilling into the lunar rock simulant in a vacuum with and without lunar soil simulant were conducted, and very good agreement was observed between the simulation and experimental results. The simulation results showed that the lunar soil temperature during drilling in a vacuum simulant was much less than that of the lunar rock simulant, and lunar soil simulant had little effect on heat dissipation from the drilling tool. A drilling procedure intervention strategy for the thermal safety of drilling tools was investigated. It was found from the intervention process based on DEM that the temperatures of the drilling tool were within a safe range, and the time duration for heat dissipation was usually much longer than the time required for temperature increase.
机译:本研究调查了钻入月球岩石模拟的热问题。涉及辐射和传热的热模型涉及使用离散元素法(DEM)建立钻入月球岩石模拟物的几何形状。在真空中进行钻井实验以验证模型。进行了在真空中钻入月球岩石模拟物的热模拟,在具有和没有月球土壤模拟器的真空中,在模拟和实验结果之间观察到非常好的一致性。仿真结果表明,在真空模拟器中钻井期间的月球土壤温度远小于月球岩石模拟剂,并且月球土壤模拟物对钻孔工具的散热几乎没有影响。研究了钻孔工具热安全钻探过程干预策略。它从基于DEM的干预过程中发现了钻孔工具的温度在安全范围内,散热时间的持续时间通常比温度升高所需的时间长。

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