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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Analytical study of the transverse distribution of along-channel and transverse residual flows in tidal estuaries
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Analytical study of the transverse distribution of along-channel and transverse residual flows in tidal estuaries

机译:潮河口沿河道和横向残余流横向分布的解析研究

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摘要

We present an analytical model to decompose complex along-channel and transverse residual flows into components induced by individual mechanisms. The model describes the transverse distribution of residual flows in tidally dominated estuaries. Scaling and perturbation techniques are used to obtain analytical solutions for residual flows over arbitrary across-channel bed profiles. The flows are induced by horizontal density gradients, tidal rectification processes, river discharge, wind, channel curvature and the earth's rotation. These rectification processes induce residual flows that are up-estuary to the right and down-estuary to the left of an estuarine channel (looking up-estuary in the northern hemisphere). The tidal rectification processes fundamentally change the transverse structure of along-channel residual flows in many tidal estuaries, as these processes cause the flows to be internally asymmetric about the mid-axis of the channel for relatively large tidal velocities, steep channels or narrow estuaries. In addition, velocity scales are derived from the analytical solutions to estimate the relative importance of the various residual flow mechanisms from estuarine parameters. A case study of a transect across the Upper Chesapeake Bay showed that important features of the residual flow observed in that transect are reproduced and explained by the analytical model. The velocity scales were able to identify the relevant residual flow mechanisms as well. The tidal rectification processes considered here result from advection of along-channel tidal momentum by Coriolis-induced transverse tidal currents. (c) 2007 Elsevier Ltd. All rights reserved.
机译:我们提出了一个分析模型,以分解复杂的沿通道和横向残余流量成单个机制所诱发的组件。该模型描述了潮汐主导河口中剩余水流的横向分布。标度和微扰技术用于获得任意跨通道床剖面上剩余流量的解析解。流量是由水平密度梯度,潮汐整流过程,河流流量,风,河道曲率和地球自转引起的。这些整流过程会引起残留流量,这些残留流量在河口通道的右上口和左下口(在北半球为上口)。潮汐整流过程从根本上改变了许多潮汐河口沿河道残余水流的横向结构,因为这些过程使水流相对于较大的潮汐速度,陡峭的河道或狭窄的河口绕着河道的中轴内部不对称。另外,从解析解中得出速度标度,以根据河口参数估算各种残余流机制的相对重要性。跨切萨皮克湾上段的样例研究表明,该样例中观察到的剩余流量的重要特征被分析模型再现并得到解释。速度标度也能够识别相关的残余流机制。此处考虑的潮汐整流过程是由科里奥利引起的横向潮汐流沿通道潮汐动量平流的结果。 (c)2007 Elsevier Ltd.保留所有权利。

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