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Where large deep-ocean waves break

机译:大型深海海浪破碎的地方

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摘要

Underwater topography like seamounts causes the breaking of large “internal waves” with associated turbulent mixing strongly affecting the redistribution of sediment. Here ocean turbulence is characterized and quantified in the lowest 100?m of the water column at three nearby sites above the slope of a deep-ocean seamount. Moored high-resolution temperature sensors show very different turbulence generation mechanisms over 3 and 5?km horizontal separation distances. At the steepest slope, turbulence was 100 times more energetic than at the shallowest slope where turbulence was still 10 times more energetic than found in the open ocean, away from topography. The turbulence on this extensive slope is caused by slope steepness and nonlinear wave evolution, but not by bottom-friction, “critical” internal tide reflection or lee wave generation.
机译:像海山这样的水下地形会导致大的“内部波浪”破裂,并且相关的湍流混合强烈影响沉积物的重新分配。在这里,海洋湍流的特征是在深海海山斜坡上方三个附近的水柱最低100?m处进行表征和量化。系泊的高分辨率温度传感器在3和5?km的水平分隔距离上显示出截然不同的湍流产生机理。在最陡的斜坡上,湍流的能量比在最浅的斜坡上高100倍。在最浅的斜坡,湍流的能量仍比在远离地形的公海中高10倍。在这个宽广的斜坡上的湍流是由斜坡陡度和非线性波演化引起的,而不是由底部摩擦,“临界”内部潮汐反射或背风波产生引起的。

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