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Ocean Circulation and Water Mass Characteristics around the Galápagos Archipelago Simulated by a Multiscale Nested Ocean Circulation Model

机译:多尺度嵌套海洋环流模型模拟的加拉帕戈斯群岛周围海洋环流和水团特征

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Ocean circulation and water mass characteristics around the Galápagos Archipelago are studied using a four-level nested-domain ocean system (HYCOM). The model sensitivity to atmospheric forcing frequency and spatial resolution is examined. Results show, that with prescribed atmospheric forcing, HYCOM can generally simulate the major El Niño events especially the strong 1997-1998 events. Waters surrounding the archipelago show a large range of temperature and salinity in association with four different current systems. West zones of Isabella and Fernandina Islands are the largest upwelling zones, resulting from the collision of the Equatorial Undercurrent (EUC) with the islands, bringing relatively colder, salty waters to the surface and marking the location of the highest biological production. Model results, which agree well with observations, show a seasonal cycle in the transport of the EUC, reaching a maximum during the late spring/early summer and minimum in the late fall. The far northern region is characterized by warmer, fresher water with the greatest mixed layer depth as a result of Panama Current waters entering from the northeast. Water masses over the remainder of the region result from mixing of cool Peru Current waters and upwelled Cold Tongue waters entering from the east.
机译:使用四级嵌套域海洋系统(HYCOM)研究了加拉帕戈斯群岛周围的海洋环流和水团特征。检验了模型对大气强迫频率和空间分辨率的敏感性。结果表明,在规定的大气强迫下,HYCOM通常可以模拟主要的厄尔尼诺事件,尤其是1997-1998年的强事件。群岛周围的水域与四种不同的当前系统相关联,显示出大范围的温度和盐度。伊莎贝拉岛和费尔南迪纳群岛的西部地区是最大的上升区,这是由于赤道暗流(EUC)与这些岛屿的碰撞,使地表相对较冷,咸水泛滥,标志着生物产量最高的位置。模型结果与观察结果非常吻合,显示出EUC运输的季节性周期,在春季末期/初夏期间达到最大值,在秋季末期达到最小值。北部地区的特征是巴拿马水流从东北方向进入,导致混合层深度最大的温暖,淡水。该地区其余地区的水团是由秘鲁东部凉爽水域和从东部进入的上涌冷舌水混合而成的。

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