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M-2 tidal dissipation around Vancouver Island: an inverse approach

机译:温哥华岛附近的M-2潮汐消散:一种相反的方法

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摘要

A representer approach is used to assimilate M-2 tide gauge harmonics into a high-resolution two-dimensional finite element model of Puget Sound and the waters surrounding Vancouver Island. A preliminary model solution which employs a conventional drag coefficient for quadratic bottom friction is shown to produce elevation amplitudes and phases that differ significantly from the harmonics computed from an analysis of tide gauge observations. The assimilation procedure not only rectifies this problem but also shows that this better fit implies significant momentum equation residuals in regions where strong turbulent mixing and internal tide generation are known to occur. Thus, the assimilation identifies regions where dissipation beyond conventional bottom friction is required. Computed dissipation rates arising from these residuals reveal the largest energy sinks to be in the Gulf and San Juan Islands, Juan de Fuca Strait, and the channels off northeast Vancouver Island. Crown Copyright (C) 2004 Published by Elsevier Ltd. All rights reserved.
机译:代表性方法用于将M-2潮汐仪谐波吸收到Puget Sound和温哥华岛周围水域的高分辨率二维有限元模型中。初步模型解决方案显示了产生的仰角振幅和相位与采用潮汐仪观测分析计算出的谐波截然不同,该初步模型解决方案使用常规的阻力系数来进行二次底摩擦。同化过程不仅纠正了这个问题,而且还表明,这种更好的拟合意味着在已知发生强湍流混合和内部潮汐发生的区域中,动量方程残差很大。因此,同化识别出需要耗散超过常规底部摩擦的区域。由这些残留物产生的计算耗散率表明,最大的能量汇聚在海湾和圣胡安群岛,胡安·德富卡海峡以及东北温哥华岛附近的航道。 Crown版权所有(C)2004,由Elsevier Ltd.发行。保留所有权利。

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