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首页> 外文期刊>Journal of Fluid Mechanics >Particle transport induced by internal wave beam streaming in lateral boundary layers
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Particle transport induced by internal wave beam streaming in lateral boundary layers

机译:横向边界层内部波束流引起的颗粒传输

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摘要

Quantifying the physical mechanisms responsible for the transport of sediments, nutrients and pollutants in the abyssal sea is a long-standing problem, with internal waves regularly invoked as the relevant mechanism for particle advection near the sea bottom. This study focuses on internal-wave-induced particle transport in the vicinity of (almost) vertical walls. We report a series of laboratory experiments revealing that particles sinking slowly through a monochromatic internal wave beam experience significant horizontal advection. Extending the theoretical analysis by Beckebanze et al. (J. Fluid Mech., vol. 841, 2018, pp. 614-635), we attribute the observed particle advection to a peculiar and previously unrecognized streaming mechanism in the stratified boundary layer originating at the lateral walls. This vertical boundary layer streaming mechanism is most efficient for significantly inclined wave beams, when vertical and horizontal velocity components are of comparable magnitude. We find good agreement between our theoretical prediction and experimental results.
机译:量化沉积物运输的物理机制,深海海洋中的植物,营养素和污染物是一个长期存在的问题,内部海浪定期被调用为海底附近的粒子平流的相关机制。该研究侧重于(几乎)垂直墙壁附近的内波诱导的颗粒输送。我们报告了一系列实验室实验,揭示了通过单色内波束缓慢下沉的粒子体验显着的横向平流。将Beckebaze等人扩展的理论分析。 (J. Fluid Mech。,Vol.841,2018,PP。614-635),我们将观察到的粒子平程归因于源自在侧壁的分层边界层中的特殊和先前未被识别的流动机制。当垂直和水平速度分量具有相当的幅度时,该垂直边界层流媒体机构对于显着倾斜的波束最有效。我们在理论预测和实验结果之间找到了良好的一致性。

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