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Horns of subaqueous barchan dunes: A study at the grain scale

机译:Barchan Dunes的角:谷物规模的研究

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Many complex aspects are involved in the morphodynamics of crescent-shaped dunes, known as barchans. One of them concerns the trajectories of individual grains over the dune and how they affect its shape. In the case of subaqueous barchans, we proposed [C. A. Alvarez and E. M. Franklin, Phys. Rev. Lett. 121, 164503 (2018)] that their extremities, called horns, are formed mainly by grains migrating from upstream regions of the initial pile, and that they exhibit significant transverse displacements. Here, we extend our previous work to address the dynamics of grains migrating to horns after the dune has reached its crescentic shape and present new aspects of the problem. In our experiments, single barchans evolve, under the action of a turbulent water flow, from heaps of conical shape formed from glass beads poured on the bottom wall of a rectangular channel. Both for evolving and for developed barchans, the horns are fed up with grains coming from upstream regions of the bedform and traveling with significant transverse components, differently from the dynamics usually described for the aeolian case. For these grains, irrespective of their size and the strength of the water flow, the distributions of transverse and streamwise components of velocities are well described by exponential functions, with the probability density functions of their magnitudes being similar to results obtained from previous studies on flat beds. Focusing on moving grains whose initial positions were on the horns, we show that their residence time and traveled distance are related following a quasilinear relation. Our results provide new insights into the physical mechanisms underlying the shape of barchan dunes.
机译:许多复杂的方面都参与了新月形沙丘的形态学性,称为巴克人。其中一个涉及在沙丘上的个体谷物的轨迹以及它们如何影响其形状。在亚基的巴恰特的情况下,我们提出了[C. A. Alvarez和E. Franklin,Phys。 rev. lett。 121,164503(2018)]它们的四肢称为角,主要由谷物从初始桩的上游区域迁移,并且它们表现出显着的横向位移。在这里,我们在沙丘达到新月形后迁移到角迁移到角的谷物的动态,并提出了这个问题的新方面。在我们的实验中,单个Barchans在湍流水流动的作用下,从倒在矩形通道的底壁上形成的玻璃珠粒的圆锥形形状。为了不断发展和开发的Barchans,喇叭被送入来自弯曲区域的上游区域的颗粒,并通过通常针对天空壳体的动态方式行驶,以不同的横向部件行进。对于这些晶粒,无论它们的尺寸和水流强度如何,速度速度的横向和流动分量的分布通过指数函数很好地描述,其大小的概率密度函数类似于从先前的平面研究获得的结果床。专注于移动初始位置在角上的移动粒,我们表明它们的停留时间和行驶距离在Quasilinear关系之后是相关的。我们的结果为Barchan Dunes形状的物理机制提供了新的见解。

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