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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >On the validity of thermal wind balance in alongshelf currents off the New Jersey coast
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On the validity of thermal wind balance in alongshelf currents off the New Jersey coast

机译:关于新泽西海岸外沿洋流热风平衡的有效性

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The validity of thermal wind balance (TWB) as an approximation for the observed vertical shear in coastal currents (depth 10-30 m) is analyzed based oil the ADCP and CTD transects conducted off the New Jersey coast in early August of 1996. At that time, the study area was forced simultaneously by a brief upwelling-favorable wind event and the arrival of a buoyant plume from the Hudson Estuary. As a result. both downwelling- and upwelling-favorable alongshelf Currents resided within the same area, the former inshore and the latter offshore. The very intense pycilocline (buovancy frequency similar to 0.06 s(-1)) was shaped as a dome and thus the TWB shear of both signs was observed within the same across-shelf transects and under the same wind conditions. In average, the geostrophic (TWB) shear overestimated the observed by a factor of 2. The maximum of the ageostrophic shear (which is the observed minus TWB shear) was within the sloping pycnocline and not near the bottom (where one would expect to find a strong frictional shear). For both upwelling and downwelling-favorable currents, the geostrophic shear had a sharp maximum in the pycnocline (localized within a few meters). while the ageostrophic shear tended to smooth the actual velocity profile. counteracting the TWB shear in the pycnocline and adding to it (changing sign) below. The result was a more linear velocity distribution with depth compared to the TWB prediction. The significant reduction of the TWB shear in the pycriocline described in this study was likely related to the turbulence production by the internal wave breaking. The wind-induced stresses were trapped in the shallow. similar to 5 m deep surface layer. and were inhibited below by a strong pycnocline. Nonfrictional mechanisms (inertia or momentum advection) did not contribute significantly to the ageostrophic shear. (c) 2006 Elsevier Ltd. All rights reserved.
机译:基于1996年8月上旬在新泽西海岸外进行的ADCP和CTD断面油的分析,热风平衡(TWB)作为在沿海海流(深度10-30 m)中观测到的垂直剪切的近似值的有效性。当时,由于短暂的上升气流有利的风场以及哈德逊河口的浮羽的到来,研究区同时被迫入内。结果是。沿上下涌有利的沿陆架流都位于同一区域,前者在岸上,后者在近海。极高的吡喹啉(浮力频率类似于0.06 s(-1))被塑造成圆顶形,因此在相同的跨架样条线和相同的风况下都观察到了两个标志的TWB剪切。平均而言,地转(TWB)剪切将观测值高估了2倍。非营养剪切(即观测到的TWB剪切值)的最大值在倾斜的比克诺斜线以内,而不是在底部附近(期望找到该值)强大的摩擦剪切力)。对于上升流和下降流有利的情况,地转剪切在明斜线中都有一个急剧的最大值(位于几米之内)。而变质剪切力趋于使实际速度剖面平滑。抵消比考克林中的TWB剪切并在下面添加(变号)。与TWB预测相比,结果是深度的线性速度分布更线性。这项研究中描述的环线型TWB剪切的显着降低可能与内部波浪破裂产生的湍流有关。风引起的应力被困在浅层。类似于5 m深的表层。并在下方被强效比考林抑制。非摩擦机制(惯性或动量对流)对年龄变化的剪切没有显着贡献。 (c)2006 Elsevier Ltd.保留所有权利。

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