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Giant ripples on comet 67P/Churyumov–Gerasimenko sculpted by sunset thermal wind

机译:夕阳热风雕刻而成的彗星67P /丘里莫夫–格拉西缅科上的巨大涟漪

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摘要

Explaining the unexpected presence of dune-like patterns at the surface of the comet 67P/Churyumov–Gerasimenko requires conceptual and quantitative advances in the understanding of surface and outgassing processes. We show here that vapor flow emitted by the comet around its perihelion spreads laterally in a surface layer, due to the strong pressure difference between zones illuminated by sunlight and those in shadow. For such thermal winds to be dense enough to transport grains—10 times greater than previous estimates—outgassing must take place through a surface porous granular layer, and that layer must be composed of grains whose roughness lowers cohesion consistently with contact mechanics. The linear stability analysis of the problem, entirely tested against laboratory experiments, quantitatively predicts the emergence of bedforms in the observed wavelength range and their propagation at the scale of a comet revolution. Although generated by a rarefied atmosphere, they are paradoxically analogous to ripples emerging on granular beds submitted to viscous shear flows. This quantitative agreement shows that our understanding of the coupling between hydrodynamics and sediment transport is able to account for bedform emergence in extreme conditions and provides a reliable tool to predict the erosion and accretion processes controlling the evolution of small solar system bodies.
机译:要解释在67P / Churyumov–Gerasimenko彗星表面出乎意料的沙丘状图案,就需要对表层和除气过程进行概念上和数量上的改进。我们在这里表明,由于阳光照射和阴影照射区域之间的强压力差,彗星围绕其近日点发射的蒸气流在表层中横向扩散。为了使这样的热风足够密集以输送谷物(比以前的估算值大10倍),必须通过表面多孔颗粒层进行除气,并且该层必须由粗糙度与接触力学一致地降低内聚力的颗粒组成。对该问题的线性稳定性分析(已通过实验室实验全面测试)定量地预测了观测波长范围内床形的出现及其在彗星旋转尺度下的传播。尽管它们是由稀少的大气产生的,但与粘滞剪切流向颗粒状床层上出现的涟漪反常地相似。这一定量协议表明,我们对水动力与沉积物输送之间的耦合的理解能够解释极端条件下的床形出现,并提供可靠的工具来预测控制小型太阳系物体演化的侵蚀和吸积过程。

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