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Concurrent simulation of the eddying general circulation and tides in a global ocean model

机译:全球海洋模型中涡旋的总环流和潮汐的并发模拟

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摘要

This paper presents a five-year global simulation of HYCOM, the HYbrid Coordinate Ocean Model, that simultaneously resolves the eddying general circulation, barotropic tides, and baroclinic tides with 32 layers in the vertical direction and 1/12.5 degrees (equatorial) horizontal grid spacing. A parameterized topographic wave drag is inserted into the model and tuned so that the surface tidal elevations are of comparable accuracy to those in optimally tuned forward tide models used in previous studies. The model captures 93% of the open-ocean sea-surface height variance of the eight largest tidal constituents, as recorded by a standard set of 102 pelagic tide gauges spread around the World Ocean. In order to minimize the impact of the wave drag on non-tidal motions, the model utilizes a running 25-h average to approximately separate tidal and non-tidal components of the near-bottom flow. In contrast to earlier high-resolution global baroclinic tide simulations, which utilized tidal forcing only, the simulation presented here has a horizontally non-uniform stratification, supported by the wind- and buoyancy forcing. The horizontally varying stratification affects the baroclinic tides in high latitudes to first order. The magnitude of the internal tide perturbations to sea surface elevation amplitude and phase in a large box surrounding Hawaii is quite similar to that observed in satellite altimeter data, although the exact locations of peaks and troughs in the modeled perturbations differ from those in the observed perturbations.
机译:本文介绍了HYCOM的五年全球模拟,即Hybrid坐标海洋模型,该模型同时解析了垂直方向为32层,水平方向为(赤道)1 / 12.5度的涡旋性总体环流,正压潮和斜压潮。 。将参数化地形波阻力插入模型并进行调整,以使表面潮汐标高的精度与先前研究中使用的最佳调整正向潮汐模型的精度相当。该模型捕获了八个最大潮汐成分的公海表面高度变化的93%,这是由分布在世界海洋周围的102个中上潮汐仪的标准集合所记录的。为了最小化波浪阻力对非潮汐运动的影响,该模型利用连续25小时的平均值来近似分离近底流的潮汐和非潮汐分量。与仅使用潮汐强迫的早期高分辨率全球斜压潮汐模拟相反,此处介绍的模拟具有水平非均匀分层,并由风和浮力强迫支持。水平变化的分层影响高纬度的斜压潮至一阶。尽管模拟扰动中波峰和波谷的确切位置与观测到的扰动中的确切位置不同,但夏威夷周围一个大盒子内的内潮扰动对海平面高程振幅和相位的大小与卫星高度计数据中观察到的非常相似。 。

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