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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Tides and mixing in the northwestern East China Sea Part I: Rotating and reversing tidal flows
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Tides and mixing in the northwestern East China Sea Part I: Rotating and reversing tidal flows

机译:东海西北部的潮汐和混合I.旋转和逆向潮流

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Bottom-mounted ADV and ADCP instruments in combination with CTD profiling measurements taken along the Chinese coast of the East China Sea were used to study the vertical structure of temperature, salinity, and velocity in reversing tidal currents on a shallow inner shelf and in rotating tidal flows over a deeper sloping bottom of the outer shelf. These two regimes of barotropic tide affect smallscale dynamics in the lower part of the water column differently. The reversing flow was superimposed by seiches of similar to 2.3 h period generated in semienclosed Jiaozhou Bay located nearby. As the tidal vector rotates over the sloping bottom, the height of the near-bottom logarithmic layer is subjected to tidal-induced variations. A maximum of horizontal velocity U-max appears at the upper boundary of the log layer during the first half of the current vector rotation from the minor to the major axis of tidal ellipse. In rotating tidal flow, vertical shear generated at the seafloor, propagated slowly to the water interior up to the height of U-max with a phase speed of similar to 5 m/h. The time-shifted shear inside the water column, relative to the shear at the bottom, was associated with periodically changing increases and decreases of the tidal velocity above the log layer toward the sea surface. In reversing flows, the shear generated near the bottom and the shear at the upper levels were almost in phase. (C) 2007 Elsevier Ltd. All rights reserved.
机译:底部安装的ADV和ADCP仪器与沿东海中国海岸进行的CTD剖面测量相结合,用于研究浅内架和逆潮流中逆潮流的温度,盐度和速度的垂直结构。流过外部架子的更深的倾斜底部。这两种正压潮对水柱下部的小尺度动力学的影响不同。逆流由附近的半封闭胶州湾产生的类似于2.3 h周期的生境叠加。当潮汐矢量在倾斜的底部上方旋转时,近底对数层的高度会受到潮汐引起的变化的影响。在当前矢量从潮汐椭圆的短轴到长轴旋转的前半部分期间,最大水平速度U-max出现在对数层的上边界。在旋转潮汐流中,在海底产生的垂直剪切力以接近5 m / h的相速度缓慢传播到水内部,直到U-max的高度。相对于底部的剪切,水柱内的时移剪切与日志层上方朝向海面的潮汐速度的周期性变化有关。在反向流动中,底部附近产生的剪切力和上部水平产生的剪切力几乎同相。 (C)2007 Elsevier Ltd.保留所有权利。

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