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Modeling circulation patterns induced by spatial cross-shore wind variability in a small-size coastal embayment

机译:模拟小型沿海航道中空间跨岸风变率引起的环流模式

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摘要

This contribution shows the importance of the cross-shore spatial wind variability in the water circulation in a small-sized micro-tidal bay. The hydrodynamic wind response at Alfacs Bay (Ebro River delta, NW Mediterranean Sea) is investigated with a numerical model (ROMS) supported by in situ observations. The wind variability observed in meteorological measurements is characterized with meteorological model (WRF) outputs. From the hydrodynamic simulations of the bay, the water circulation response is affected by the cross-shore wind variability, leading to water current structures not observed in the homogeneous-wind case. If the wind heterogeneity response is considered, the water exchange in the longitudinal direction increases significantly, reducing the water exchange time by around 20%. Wind resolutions half the size of the bay (in our case around 9 km) inhibit cross-shore wind variability, which significantly affects the resultant circulation pattern. The characteristic response is also investigated using idealized test cases. These results show how the wind curl contributes to the hydrodynamic response in shallow areas and promotes the exchange between the bay and the open sea. Negative wind curl is related to the formation of an anti-cyclonic gyre at the bay's mouth. Our results highlight the importance of considering appropriate wind resolution even in small-scale domains (such as bays or harbors) to characterize the hydrodynamics, with relevant implications in the water exchange time and the consequent water quality and ecological parameters. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这一贡献表明了跨岸空间风变率在小型微潮湾水循环中的重要性。利用现场观测支持的数值模型(ROMS)研究了Alfacs湾(西北地中海埃布罗河三角洲)的水动力响应。气象测量中观察到的风变率以气象模型(WRF)输出为特征。从海湾的流体动力学模拟来看,水循环响应受跨岸风变率的影响,导致在均风情况下未观察到水流结构。如果考虑到风的非均质性响应,则沿纵向的水交换量将显着增加,从而使水交换时间减少约20%。海湾一半大小的风分辨率(在我们的案例中约为9 km)抑制了跨岸风的可变性,这极大地影响了最终的环流模式。还使用理想的测试用例研究了特性响应。这些结果表明,风的卷曲如何有助于浅水区的水动力响应并促进海湾与公海之间的交换。负风卷曲与海湾口处反气旋回旋的形成有关。我们的结果强调了即使在小范围区域(如海湾或港口)也要考虑适当的风速分辨率来表征水动力的重要性,这对换水时间以及随之而来的水质和生态参数具有重要意义。 (C)2016 Elsevier Ltd.保留所有权利。

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