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Vertical structure of bottom Ekman tidal flows: Observations, theory, and modeling from the northern Adriatic

机译:底部埃克曼潮汐流的垂直结构:亚得里亚海北部的观测,理论和模型

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摘要

From September 2002 to May 2003, fifteen bottom‐ mounted, acoustic Doppler current profilers measured currents of the northern Adriatic basin. Tidal fluctuations at all seven of the major Adriatic frequencies were synthesized from a response tidal analysis of these measurements. Most observed tidal current ellipses were nearly reversing, but near the bottom, tidal current ellipses all shortened and broadened, semidiurnal currents led upper water column currents, and diurnal tidal current ellipse orientations rotated counterclockwise toward the bottom. Theoretical solutions for a tidally forced, bottom Ekman layer with vertical eddy viscosity of the form A z = β z + k were least squares fit to the observations. Average values were β = 3 · 10− 4 m/s and k = 5 · 10− 4 m2/s. The value of k was important in matching tidal orientation and phase changes, and a nonzero β was important in matching tidal amplitude changes. The Navy Coastal Ocean Model (NCOM) and the Quoddy model were also compared to the observations. The average RMS errors for the bottom Ekman layer were 0.22 cm/s for the best fit theory, 0.35 cm/s for NCOM, and 0.36 cm/s for Quoddy. A z structures from NCOM and Quoddy show that time variation in A z is relatively unimportant for Adriatic tides. The bottom shear stresses from theory were larger in magnitude than those from the bottom drag formulations in NCOM and Quoddy.
机译:从2002年9月到2003年5月,有15个底部安装的声学多普勒电流剖面仪测量了北亚得里亚海盆地的电流。通过对这些测量值的响应潮汐分析,合成了七个主要亚得里亚海频率的潮汐波动。大多数观察到的潮流椭圆几乎都在逆转,但在底部附近,潮流椭圆都缩短了并加宽了,半日潮流导致了上层水柱流,而日潮流椭圆的方向则朝着底部逆时针旋转。具有垂直涡流粘度的形式为A z =βz + k的沿潮汐作用力的底部埃克曼层的理论解最小二乘拟合。平均值为β= 3·10−4 m / s和k = 5·10−4 m2 / s。 k的值对于匹配潮汐方向和相位变化很重要,而非零β对匹配潮汐幅度变化很重要。海军沿海海洋模型(NCOM)和Quoddy模型也与观测值进行了比较。对于最佳拟合理论,底部埃克曼层的平均RMS误差为0.22 cm / s,对于NCOM为0.35 cm / s,对于Quoddy为0.36 cm / s。来自NCOM和Quoddy的z结构表明,对于亚得里亚海潮,A z中的时间变化相对不重要。从理论上讲,底部剪应力的大小要大于NCOM和Quoddy中底部拖曳公式的剪应力。

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