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首页> 外文期刊>Journal of Physical Oceanography >A Study of Intermediate Water Circulation in the Strait of Georgia Using Tracer-Based, Eulerian, and Lagrangian Methods
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A Study of Intermediate Water Circulation in the Strait of Georgia Using Tracer-Based, Eulerian, and Lagrangian Methods

机译:基于示踪,欧拉和拉格朗日方法研究格鲁吉亚海峡中间水循环研究

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The intermediate circulation of the Strait of Georgia, British Columbia, Canada, plays a key role in dispersing contaminants throughout the Salish Sea, yet little is known about its dynamics. Here, we use hydrographic observations and hindcast fields from a regional 3D model to approach the intermediate circulation from three perspectives. First, we derive and model a "seasonality'' tracer from temperature observations to age the water, estimate mixing, and infer circulation. Second, we analyze modeled velocity fields to create mean current maps and examine the advective and diffusive components of the mean flow field. Last, we calculate Lagrangian trajectories to derive transit time distributions and Lagrangian statistics. In combination, these analyses provide an overview of the mean intermediate circulation that can be summarized as follows: subducting water in Haro Strait ventilates the intermediate water primarily via an up-strait boundary current that flows along the eastern shores of the southernmost basin in 1-2 months. This inflowing water is either incorporated into the interior of the basin, recirculated southward, or transported into the northernmost basin, mixing steadily with adjacent water masses during its transit. A second, shallower ventilating jet emanates southward from Discovery Passage, locally modifying the Haro Strait inflow signal. Outside of these well-defined advective features, diffusive transport dominates in the majority of the region. The intermediate renewal signal fully ventilates the region in 100-140 days, which serves as a benchmark for contaminant dispersal time scale estimates.
机译:加拿大不列颠哥伦比亚省海峡的中间循环,加拿大不列颠哥伦比亚省(不列颠哥伦比亚省)在分散整个盐水海域的污染物中发挥着关键作用,但它对其动态知之甚少。在这里,我们使用来自区域3D模型的水文观测和Hindcast领域,从三个角度接近中间流通。首先,我们从温度观察中衍生和模型,从温度观测到年龄,估计混合和推断循环。第二,我们分析了建模的速度场,以创建平均流量的平均映射并检查平均流量的平均和扩散组件领域。最后,我们计算拉格朗日轨迹衍生过境时间分布和拉格朗日统计。组合,这些分析概述了可以概述如下:Haro海峡中的水介水主要通过呼吸 - 在1-2个月内沿着南端的东部海岸流动的边界电流。这种流入水被纳入盆中的内部,向南再循环,或运送到最北端的盆地,稳定地与相邻的水块混合在一起它的过境。第二,较浅的通风喷射从发现通道向南发出,当地修改围绕Haro海峡流入信号。在这些明确定义的平均特征之外,扩散运输在大多数地区都占主导地位。中间更新信号在100-140天内完全通风,这用作污染物分散时间尺度估计的基准。

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