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Water induced sediment levitation enhances downslope transport on Mars

机译:水诱导沉积物悬浮增强了火星上的下坡运输

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摘要

On Mars, locally warm surface temperatures (~293?K) occur, leading to the possibility of (transient) liquid water on the surface. However, water exposed to the martian atmosphere will boil, and the sediment transport capacity of such unstable water is not well understood. Here, we present laboratory studies of a newly recognized transport mechanism: “levitation” of saturated sediment bodies on a cushion of vapor released by boiling. Sediment transport where this mechanism is active is about nine times greater than without this effect, reducing the amount of water required to transport comparable sediment volumes by nearly an order of magnitude. Our calculations show that the effect of levitation could persist up to ~48 times longer under reduced martian gravity. Sediment levitation must therefore be considered when evaluating the formation of recent and present-day martian mass wasting features, as much less water may be required to form such features than previously thought.
机译:在火星上,会出现局部温暖的地表温度(〜293?K),从而导致(暂时)液态水在地表上流动的可能性。但是,暴露在火星大气中的水会沸腾,并且这种不稳定的水的沉积物输送能力还不是很清楚。在这里,我们介绍了一种新认识的传输机制的实验室研究:饱和悬浮物在沸腾释放的蒸气垫层上的“悬浮”。具有这种机制的泥沙输送比没有这种作用的泥沙输送大约九倍,从而将输送相当量的泥沙所需的水量减少了近一个数量级。我们的计算结果表明,在火星重力降低的情况下,悬浮效应可能会持续长达48倍左右。因此,在评估近期和目前的火星物质消减特征的形成时,必须考虑沉积物悬浮,因为形成这种特征所需的水量可能比以前想象的要少得多。

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