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Numerical investigations of the turbulent kinetic energy dissipation rate in the Rhine region of freshwater influence

机译:莱茵河影响淡水湍流动能耗散率的数值研究

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摘要

The turbulent kinetic energy dissipation rate, ε, in tidal seas is maximum at the bottom during full flood and during full ebb, i.e. when tidal currents are strongest. In coastal regions with tides similar to a Kelvin wave, this coincides with high water and low water. If there is a freshwater source at the coast, stratification in such a region will be most stable at high water and least at low water. Measurements of ε in the Rhine region of freshwater influence performed by previous studies have revealed bottom maxima at both high and low water. In addition, a maximum in the upper half of the water column was found around high water, which cannot be explained by tidal shear at the bottom, convective instabilities or wind mixing. This study investigates the dissipation rate and relevant physical properties in the Rhine region of freshwater influence by means of three-dimensional numerical simulations using the General Estuarine Transport Model and idealised conditions. The measurements are well reproduced; two distinct peaks of ε are evident in the upper layer shortly before and after high water. These maxima turn out to be due to strong peaks in the alongshore shear occurring when the fore- and the back-front of the plume transit the water column.
机译:在满水期间和满潮期间,即当潮流最大时,潮汐海中湍动能耗散率ε最大。在潮汐类似于开尔文波浪的沿海地区,这与高水位和低水位相吻合。如果海岸有淡水源,那么在该地区的分层在高水位时最稳定,至少在低水位时最稳定。先前的研究对莱茵河地区的淡水影响进行了测量,结果显示出高水位和低水位时的底部最大值。此外,在高水位附近发现了水柱上半部的最大值,这不能用底部的潮汐剪切,对流不稳定或风混合来解释。本研究通过使用通用河口运输模型和理想条件的三维数值模拟研究了莱茵河地区淡水影响的耗散率和相关物理性质。测量结果被很好地复制;在高水前后不久,在上层中出现了两个明显的ε峰。这些最大值被证明是由于羽流的前部和后部穿过水柱时在近海剪切带中出现了强烈的峰值。

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  • 来源
    《Ocean Dynamics》 |2009年第5期|629-641|共13页
  • 作者单位

    Department of Physical Oceanography and Instrumentation, Leibniz Institute for Baltic Sea Research Warnemuende, Seestrasse 15,18119 Rostock, Germany;

    Department of Physical Oceanography and Instrumentation, Leibniz Institute for Baltic Sea Research Warnemuende, Seestrasse 15,18119 Rostock, Germany;

    Department of Oceanography, Texas A&M University, 3158 TAMU, College Station, TX 77843, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dissipation rate maximum; rhine ROFI; 3D numerical modelling;

    机译:最大耗散率;莱茵ROFI;3D数值建模;

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