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Model Simulations of the Bay of Fundy Gyre: 1. Climatological Results

机译:芬迪涡流湾的模型模拟:1.气候学结果

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摘要

The characteristics of a persistent gyre in the mouth of the Bay of Fundy are studied using model simulations. A set of climatological runs are conducted to evaluate the relative importance of the different forcing mechanisms affecting the gyre. The main mechanisms are tidal rectification, and density-driven circulation. Stronger circulation of the gyre occurs during the later part of the stratified season (July–August and September–October). The density-driven flow around the gyre is set-up by weak tidal mixing in the deep basin in the central Bay of Fundy and strong tidal mixing on the shallow flanks around Grand Manan Island and western Nova Scotia. Retention of particles in the Gyre is controlled by the residual tidal circulation, increased frontal retention during stratified periods, wind stress, and interactions with the adjacent circulation of the Gulf of Maine. Residence times longer than 30 days are predicted for particles released in the proximity of the gyre.
机译:使用模型模拟研究了芬迪湾河口持续回旋的特征。进行了一组气候运行,以评估影响回旋的不同强迫机制的相对重要性。主要机制是潮汐整流和密度驱动的环流。在分层季节的后期(7月至8月和9月至10月),回旋的循环更强。绕流的密度驱动流是由芬迪湾中部深海盆地的弱潮汐混合和大马南岛和新斯科舍省西部的浅侧面强潮汐混合建立的。残留在潮汐中的环流,分层期的正面滞留量增加,风应力以及与缅因湾相邻环流的相互作用控制着旋流中颗粒的保留。对于在回旋附近释放的颗粒,预计停留时间超过30天。

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