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Porosity gradients as a means of driving lateral flows at cometary surfaces

机译:孔隙度梯度是驱动彗星表面侧向流动的一种手段

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摘要

The Rosetta spacecraft has provided invaluable and unexpected information about cometary outgassing. The on-board instruments ROSINA, MIRO, and VIRTIS showed non-uniform outgassing of H2O over the surface of the nucleus. Rarefied gas flows display remarkable flow phenomena that may help explain diverse physical observations and models have been used in various engineering applications. Typical examples are flows generated by temperature variations such as thermal creeping flows that may have applications in cometary research. In this paper, we demonstrate how porosity variations in a porous medium combined with rarefaction can also lead to high tangential speed flow at a surface. Outgassing through a porous surface layer has been postulated as one possible mechanism at the cometary surfaces. We use the Direct Simulation Monte Carlo (DSMC) method to investigate such flows. The porous media structure consists of micro computed tomography (micro-CT) image of real Earth rock samples with high resolution. We show that lateral gas density gradients can be produced in a straightforward manner leading to substantial non-radial flow.
机译:罗塞塔号航天器提供了有关彗星放气的宝贵且出乎意料的信息。车载仪器ROSINA,MIRO和VIRTIS在核表面上显示出不均匀的H2O脱气。稀薄的气流显示出显着的流动现象,这可能有助于解释各种物理观察结果,并且模型已在各种工程应用中使用。典型的例子是温度变化产生的流量,例如热蠕变流量,可能会在彗星研究中得到应用。在本文中,我们证明了多孔介质中孔隙率的变化与稀疏性的结合还如何导致表面高切线速度流动。作为一种可能的机制,已经假定在多孔表面上通过多孔表面层除气。我们使用直接模拟蒙特卡洛(DSMC)方法来研究此类流。多孔介质结构由高分辨率的真实地球岩石样品的微计算机断层扫描(micro-CT)图像组成。我们表明,可以以直接的方式产生横向气体密度梯度,从而导致大量的非径向流动。

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  • 来源
    《Planetary and space science》 |2020年第1期|104752.1-104752.6|共6页
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  • 作者单位

    Tickmill Grp London EC2Y 9DT England|Heriot Watt Univ Inst Mech Proc & Energy Engn Edinburgh EH14 4AS Midlothian Scotland;

    Heriot Watt Univ Inst Mech Proc & Energy Engn Edinburgh EH14 4AS Midlothian Scotland;

    Univ Bern Phys Inst Bern Switzerland|Int Space Sci Inst Hallerstr 6 CH-3012 Bern Switzerland;

    Univ Bern Phys Inst Bern Switzerland;

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