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Self-sharpening induces jet-like structure in seafloor gravity currents

机译:自锐化在海底重力流中诱发喷射状结构

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摘要

Gravity currents are the primary means by which sediments, solutes and heat are transported across the ocean-floor. Existing theory of gravity current flow employs a statistically-stable model of turbulent diffusion that has been extant since the 1960s. Here we present the first set of detailed spatial data from a gravity current over a rough seafloor that demonstrate that this existing paradigm is not universal. Specifically, in contrast to predictions from turbulent diffusion theory, self-sharpened velocity and concentration profiles and a stable barrier to mixing are observed. Our new observations are explained by statistically-unstable mixing and self-sharpening, by boundary-induced internal gravity waves; as predicted by recent advances in fluid dynamics. Self-sharpening helps explain phenomena such as ultra-long runout of gravity currents and restricted growth of bedforms, and highlights increased geohazard risk to marine infrastructure. These processes likely have broader application, for example to wave-turbulence interaction, and mixing processes in environmental flows.
机译:重力流是沉积物,溶质和热量跨海底传输的主要手段。现有的重力流理论采用自1960年代以来一直存在的统计稳定的湍流扩散模型。在这里,我们介绍了来自粗糙海底上的重力流的第一组详细的空间数据,这些数据证明了这种现有范例不是通用的。具体而言,与湍流扩散理论的预测相反,观察到自锐化的速度和浓度曲线以及稳定的混合障碍。我们的新观测结果是由统计不稳定的混合和自锐化,边界引起的内部重力波解释的。如流体动力学的最新进展所预测。自锐化有助于解释重力流超长跳动和床形生长受限等现象,并突出显示对海洋基础设施的地质灾害风险增加。这些过程可能具有更广泛的应用,例如在波湍流相互作用以及环境流中的混合过程中。

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