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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Simulating vertical mixing in a shelf-break region: addition of a shear instability model, accounting for the overall effect of internal tides, on top of a one-dimensional turbulence closure mixed layer model
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Simulating vertical mixing in a shelf-break region: addition of a shear instability model, accounting for the overall effect of internal tides, on top of a one-dimensional turbulence closure mixed layer model

机译:模拟货架破裂区域的垂直混合:在一维湍流闭合混合层模型的基础上,增加了剪切不稳定性模型(考虑了内部潮汐的总体影响)

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A simple parameterization of eddy diffusivity is used to simulate the shear mixing from tidally induced internal waves generated in the continental slope region southwest of Brittany. Near the edge of the shelf, the seasonal thermocline oscillates under the forcing of the barotropic tide which propagates over the shelf break. A composite model is constructed to simulate the mixing of the upper ocean from both external (wind stress) and internal (internal waves) sources. A simple one-dimensional eddy kinetic energy model, which predicts the temperature profile from heat flux and wind stress inputs, is validated with respect to regional hydroelimatic conditions, then coupled with a two-layer model of non-linear internal waves, to simulate the mixing encountered in shelf break fronts submitted to tidal forcing. Numerical runs on a transect perpendicular to the shelf break show the formation of a spot of cool water over the edge of the continental margin. The one-dimensional eddy kinetic energy model has been validated over a decade with temperature profiles over the abyssal plain adjacent to the continental slope. An annual validation experiment has also been conducted for the combined models, beginning on Ist January 1985, as well as a short-term validation experiment, using a set of high-frequency temperature measurements at two stations near the shelf edge in September and early October 1985. The simulation has also been spatially validated against three sets of infrared satellite images. The one-dimensional model is calibrated for the minimum turbulent kinetic energy, whereas the best fit to the high-frequency measurements in autumn 1985 above the slope provides the optimum values for the initial thermal content and for the parameterization constant of internal wave diffusivity. The combined model reproduces successfully the seasonal and the high-frequency (neap-spring tidal cycle) variation of the temperature field in the upper ocean along a transect perpendicular to the shelf break. Horizontal advection and mesoscale turbulence somewhat limit the performance of the model at low-amplitude tides and over the shallower part of the shelf, but the satisfactory overall agreement between the results and the measurements is consistent with the formation of a shelf break front in the northern Bay of Biscay and southern Celtic Sea, mainly as a result of mixing enhanced by tidally induced internal waves. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 62]
机译:一个简单的涡流扩散率参数化被用来模拟在布列塔尼西南部大陆斜坡区域产生的潮汐内波引起的剪切混合。在架子边缘附近,季节性温跃层在正压潮的强迫下振荡,该正压浪潮在架子断裂处传播。构建了一个复合模型,以模拟来自外部(风应力)和内部(内部波)源的上层海洋混合。针对区域水力条件验证了一个简单的一维涡动能模型,该模型可根据热通量和风应力输入预测温度曲线,然后与非线性内波的两层模型耦合,以模拟货架断裂锋面遇到的混合会受到潮汐强迫。垂直于陆架折断的横断面上的数值模拟表明,在大陆边缘的边缘形成了一个凉水点。一维涡动能模型已经用十年的时间进行了验证,其温度分布在邻近大陆斜坡的深海平原上。从1985年1月1日开始,还对组合模型进行了年度验证实验,并于9月和10月初在架子边缘附近的两个站进行了一套高频温度测量,并进行了短期验证实验。 1985年。该模拟还针对三组红外卫星图像进行了空间验证。对一维模型进行了最小湍动能的校准,而对斜率以上1985年秋天的高频测量的最佳拟合为初始热含量和内部波扩散系数的参数化常数提供了最佳值。组合模型成功地再现了沿垂直于陆架断裂的横断面的上部海洋温度场的季节变化和高频变化(春季潮汐周期)。水平对流和中尺度湍流在一定程度上限制了模型在低振幅潮汐和架子较浅部分的性能,但是结果与测量结果之间令人满意的总体吻合与北部北部架子破裂锋的形成是一致的比斯开湾和凯尔特海南部,主要是由于潮汐引起的内波增强了混合作用。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:62]

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