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Blown by wind: nonlinear dynamics of aeolian sand ripples

机译:风吹:风沙波动的非线性动力学

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A nonlinear continuum model is considered that describes the dynamics of two-dimensional aeolian sand ripples. This integro-differential model is based on a phenomenological approach due to Anderson. Linear stability analysis using this model shows that a flat sand bed exposed to the action of wind is linearly unstable to long-wavelength perturbations. As the ripples grow, nonlinear effects become important, ripples become asymmetric and the wavelength increases due to merging events. A long-wavelength approximation to the full integral model is then derived. The ripple field produced by the long-wave theory undergoes coarsening, drifts downwind and displays bifurcations and defects which move from one ripple to another, similar to what is observed for sand ripples in the desert. (C) 2004 Published by Elsevier B.V.
机译:考虑了一个非线性的连续模型,该模型描述了二维风沙波动。这个积分微分模型基于安德森的现象学方法。使用该模型的线性稳定性分析表明,暴露于风作用下的平坦沙床对于长波扰动是线性不稳定的。随着纹波的增加,非线性效应变得很重要,纹波变得不对称,并且由于合并事件,波长也会增加。然后推导出对全积分模型的长波近似。长波理论产生的脉动场经历了变粗,顺风漂移并显示出分叉和缺陷,这些分叉和缺陷从一种波纹移动到另一种波纹,类似于在沙漠中观察到的沙子波纹。 (C)2004由Elsevier B.V.发布

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