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The dune effect on sand-transporting winds on Mars

机译:沙丘对火星上沙流的影响

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摘要

Wind on Mars is a significant agent of contemporary surface change, yet the absence of in situ meteorological data hampers the understanding of surface-atmospheric interactions. Airflow models at length scales relevant to landform size now enable examination of conditions that might activate even small-scale bedforms (ripples) under certain contemporary wind regimes. Ripples have the potential to be used as modern 'wind vanes' on Mars. Here we use 3D airflow modelling to demonstrate that local dune topography exerts a strong influence on wind speed and direction and that ripple movement likely reflects steered wind direction for certain dune ridge shapes. The poor correlation of dune orientation with effective sand-transporting winds suggests that large dunes may not be mobile under modelled wind scenarios. This work highlights the need to first model winds at high resolution before inferring regional wind patterns from ripple movement or dune orientations on the surface of Mars today.
机译:火星上的风是当代地表变化的重要推动因素,但是缺乏原位气象数据阻碍了对地表与大气相互作用的理解。与地形大小相关的长度比例的气流模型现在可以检查在某些现代风况下甚至可能激活小规模床形(波纹)的条件。涟漪有可能被用作火星上的现代“风向标”。在这里,我们使用3D气流建模来证明局部沙丘地形对风速和风向有很大影响,并且波纹运动可能反映了某些沙丘脊形状的转向风向。沙丘方向与有效的输沙风之间的相关性较差,这表明在模拟的风况下,大型沙丘可能无法移动。这项工作强调了在从火星表面的波纹运动或沙丘方向推断区域风型之前,首先需要以高分辨率模拟风的需要。

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