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Tidal energy fluxes and dissipation in the Chesapeake Bay

机译:切萨皮克湾的潮汐能通量和耗散

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Tidal energy flux and dissipation in the Chesapeake Bay are examined using a three-dimensional baroclinic model. The model currents are validated by a comparison with observed tidal current ellipses collected during previous field surveys. The model elevations are validated against sea-level records collected at tidal gauges. The baroclinic model produces more accurate predictions for sea-level heights and tidal currents than the tidal models which do not consider the effects of stratification. The averaged rms differences between the observed and modeled surface elevations are 3.4 cm for the M-2 constituent and 0.7 cm for the K-1 constituent. The averaged rms differences between the observed and modeled tidal current ellipses are 2.6, 2.1 cm s(-1), 5.1 degrees and 21.7 degrees for the semi-major, semi-minor axes, inclination and phase of the ellipses, respectively. The total amount of tidal energy flux entering the Bay mouth is found to be 188 MW: 88% of which is associated with the M-2 component. Dissipation of tidal energy is highly non-uniform in the Chesapeake Bay. 40% of the energy dissipation occurs in four topographic hotspots: the Bay mouth region around the headland of Delmarva Peninsula, the region near the Rappahannock sill, the constriction near the Bay Bridge and the constriction north of Baltimore. (C) 2006 Elsevier Ltd. All rights reserved.
机译:切萨皮克湾的潮汐能通量和耗能使用三维斜压模型进行了研究。通过与之前实地调查中收集的观察到的潮流椭圆的比较来验证模型电流。对照潮汐仪收集的海平面记录对模型高程进行了验证。与不考虑分层效应的潮汐模型相比,斜压模型可以更准确地预测海平面高度和潮流。观察到的和模型化的表面高程之间的平均均方根差是M-2成分为3.4 cm,K-1成分为0.7 cm。对于半长轴,半短轴,椭圆的倾角和相位,观察到的和建模的潮流椭圆之间的均方根差分别为2.6、2.1 cm s(-1),5.1度和21.7度。进入海湾口的潮汐能通量总量为188兆瓦:其中88%与M-2组分有关。切萨皮克湾的潮汐能耗散非常不均匀。 40%的能量消散发生在四个地形热点上:德尔马瓦半岛岬角周围的湾口区域,拉帕汉诺克窗台附近的区域,海湾大桥附近的缩颈和巴尔的摩北部的缩颈。 (C)2006 Elsevier Ltd.保留所有权利。

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