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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >A Quantitative characterization of the seasonal lagrangian circulation of the gulf of california from a three-dimensional numerical model
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A Quantitative characterization of the seasonal lagrangian circulation of the gulf of california from a three-dimensional numerical model

机译:基于三维数值模型的加利福尼亚海湾季节性拉格朗日环流的定量表征

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摘要

A set of four indices that quantify Lagrangian properties of the Gulf of California seasonal circulation were implemented from outputs of a three-dimensional numerical model. From trajectories of particles seeded over the entire Gulf, we calculated for 12 one-month periods the following indices: net and total distance traveled by the particles, the number of particles that are found within an area centered on the release positions after one month, and time taken by particles to escape from a 50-km-radius circle. These indices can be used for studies on transport of inert properties and passive planktonic organisms such as eggs and early-stage larvae; their use is illustrated for typical summer and winter conditions in the Gulf of California. These indices show the potential for connecting areas separated by a few hundreds of km along the eastern side of the Gulf, due to the strong seasonal up-gulf and down-gulf current. In the Northern Gulf, large displacements occur at the borders of the basin-wide seasonally reversing eddy that dominates the large-scale circulation (cyclonic in summer, anticyclonic in winter). On the other hand, the potential for self-recruitment areas is found as particles can be trapped for longer than one month within these eddies, as well as in smaller ones in the Northern Gulf, and near the coast of the peninsular side of the Southern Gulf, where current speeds are slow and many small capes and islands are present.
机译:从三维数值模型的输出中实施了一组四个指标,这些指标量化了加利福尼亚湾季节性环流的拉格朗日特性。根据整个海湾地区播种的粒子轨迹,我们在12个1个月期间计算出以下指标:粒子行进的净距离和总距离,一个月后以释放位置为中心的区域内发现的粒子数,以及粒子从50公里半径的圆中逃逸所花费的时间。这些指标可用于研究惰性特性和被动浮游生物(如卵和早期幼虫)的运输。说明了它们在加利福尼亚湾典型的夏季和冬季条件下的使用。这些指数表明,由于强劲的季节性上海湾和下海湾潮流,沿海湾东侧相隔几百公里的区域连接的潜力。在北部海湾,流域大范围的季节性倒流涡流边界发生大位移,该涡流主导着大规模的环流(夏季为旋风,冬季为反旋风)。另一方面,发现了自我招募区域的潜力,因为这些涡流中以及北部湾和南部半岛沿岸附近的较小涡流中,粒子的滞留时间可以超过一个月。海湾,目前的速度很慢,有许多小岬角和岛屿。

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