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Advection diffusion model for gas transport within a packed bed of JSC-1A regolith simulant

机译:JSC-1A重水石模拟物填充床内气体输运的对流扩散模型

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摘要

The advection diffusion model was evaluated for gas transport within a packed bed of lunar JSC-1A regolith simulant at low to medium total pressures over three flow regimes: (1) the slip flow (2) transition and (3) Knudsen regimes. These regimes are pertinent to the design of H2O extraction devices for in situ resource utilization, sampling missions, and surface science. Experiments were conducted over a range of average pressures of 100 to 25,000 Pa, corresponding to Knudsen numbers between 0.01 and 100 at ambient temperature with Ar and N-2. Non-condensing gases were evaluated to isolate key flow properties as a first step towards evaluating more complex H2O flows. Experimental results were coupled to physical models, and key properties were evaluated to assess the model fit. The experimental results in the transition regime followed the expected behavior based on similar work for microchannel flow and showed that advection is not negligible for transition regime flows. The advection diffusion model in the transition regime fit the results for Knudsen numbers less than unity, and showed the need to further develop gas slip models for Knudsen numbers greater than unity. Parameters necessary to define were the porosity, tortuosity, wall diameter of the regolith medium, and the gas slip parameter was key in determining the gas-specific transport rate.
机译:对流扩散模型评估了月球JSC-1A重水石模拟物在低到中的总压力下在以下三种流动状态下的气体传输:(1)滑流(2)过渡和(3)Knudsen状态。这些制度与原位资源利用,取样任务和地表科学的H2O提取设备的设计有关。实验是在100至25,000 Pa的平均压力范围内进行的,对应于环境温度下使用Ar和N-2在0.01至100之间的克努森数。评估非冷凝气体以隔离关键的流动特性,这是评估更复杂的H2O流动的第一步。实验结果与物理模型耦合,并评估了关键属性以评估模型的拟合度。在过渡状态下的实验结果遵循基于微通道流动相似工作的预期行为,并表明平流对于过渡状态下的流动不可忽略。过渡态中的对流扩散模型适合Knudsen数小于1的结果,并表明需要进一步开发Knudsen数大于1的气滑模型。定义必要的参数是孔隙度,曲折度,重灰石介质的壁直径,而瓦斯滑移参数是确定比气传输速率的关键。

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