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Tidal eddy motions in the western Gulf of Maine, Part 2: Secondary flow

机译:缅因州西部的潮汐涡流,第2部分:二次流

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The kinematics and dynamics of the tidal circulation in the western Gulf of Maine (GoM) region are investigated with focus on the secondary circulation. This study is motivated by previous research suggesting the formation and evolution of transient tidal eddy motions in a high-density scallop region off Chatham, MA. Three-dimensional flow velocity and surface elevation fields were obtained using the QUODDY finite-element coastal ocean circulation model in the barotropic mode and forced by the five most important tidal constituents in the region (_(M2), _(N2), _(S2), _(K1) and O_1). The secondary flow kinematics related to the primary tidal flows feature time/space-varying convergences and divergences that are affected by the associated transient tidal eddy motions. Interestingly, the upwelling and downwelling in the study region were not dominated by the secondary circulation. Rather, the model results show that instantaneous vertical motions close to the coast and close to the bathymetric slope are mainly controlled by the divergence/convergence of the primary flow. The instantaneous secondary flow dynamics are mainly controlled by a balance between pressure gradient and Coriolis forces. Off Chatham, the surface maximum strength of the secondary flow calculated by the model is consistent with theoretical predictions of 0.025m/s. The mechanisms controlling the long-term average tidal secondary circulation, which is relevant for biological transport, are discussed.
机译:研究了缅因州西部海湾(GoM)区域的潮汐运动学和动力学,重点是二次循环。这项研究是受先前研究的启发而提出的,该研究表明在马萨诸塞州查塔姆附近的一个高密度扇贝区域中,瞬态潮汐涡流的形成和演化。在正压模式下使用QUODDY有限元沿海海洋环流模型获得三维流速和表面高程场,该模型由该区域中最重要的五个潮汐成分(_(M2),_(N2),_( S2),_(K1)和O_1)。与主要潮流相关的次要运动学具有时变/时空会聚和发散的特性,受相关瞬态潮汐涡流的影响。有趣的是,研究区域的上升流和下降流并没有受到二次循环的支配。相反,模型结果表明,靠近海岸和靠近测深斜率的瞬时垂直运动主要由主流的发散/收敛控制。瞬时次级流动动力学主要由压力梯度和科里奥利力之间的平衡控制。在Chatham附近,该模型计算出的二次流的表面最大强度与0.025m / s的理论预测一致。讨论了控制长期平均潮汐二次循环的机制,这与生物运输有关。

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