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Modelling the flow behaviour of granular media through the dosing station of a spacecraft under low gravitational environments

机译:在低重力环境下通过航天器的配料站对颗粒介质的流动行为进行建模

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摘要

The European Space Agency (ESA) will launch the EXOMARS rover mission to Mars in 2018 which will operate a rover for subsurface soil sampling and analysis. Using several electro-mechanical systems within the rover, samples acquired will be mechanically processed and dispensed to instruments. For designing the grain-processing stations of spacecraft such as EXOMARS require reliable estimates on the internal and bulk flow characteristics of granular media under low gravitational environments. However the micromechanical behaviour of granular materials under low-gravitational environments is still complex to understand. Experimental studies on the flow behaviour of grain under a low gravity, for example using parabolic flight tests to simulate Martian gravity, are difficult to perform and expensive. Using computational modelling, here we present results on the flow behaviour of granular materials through flow channels under different gravity conditions including the low-gravity regime. For this, we use three approaches, viz., (i) one-dimensional discrete layer approach (DLA) based on hybrid-Lagrange continuum approach (ii) three dimensional Kirya continuum model and (ii) three dimensional discrete element modelling (DEM). Each model has its merits and limitations. Some qualitative comparisons are also made between the flow characteristics of grains observed from parabolic flight tests and DEM simulations.
机译:欧洲航天局(ESA)将于2018年向火星发射EXOMARS漫游车任务,它将运行一个漫游车进行地下土壤采样和分析。使用流动站内的多个机电系统,将对采集的样品进行机械处理并将其分配到仪器中。为了设计EXOMARS等航天器的谷物处理站,需要对低重力环境下颗粒介质的内部和整体流动特性进行可靠的估算。然而,粒状材料在低重力环境下的微机械性能仍然很难理解。在低重力下进行谷物流动行为的实验研究非常困难且昂贵,例如使用抛物线飞行试验来模拟火星重力。使用计算模型,在此我们给出了颗粒物质在不同重力条件下(包括低重力状态)通过流道的流动行为的结果。为此,我们使用三种方法,即(i)基于混合-拉格朗日连续体方法的一维离散层方法(DLA)(ii)三维Kirya连续体模型和(ii)三维离散元建模(DEM) 。每个模型都有其优缺点。在抛物线飞行试验和DEM模拟中观察到的颗粒流动特性之间也进行了定性比较。

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