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A Model Study of the Salish Sea Estuarine Circulation

机译:盐海河口环流的模型研究

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摘要

A realistic hindcast simulation of the Salish Sea, which encompasses the estuarine systems of Puget Sound, the Strait of Juan de Fuca, and the Strait of Georgia, is described for the year 2006. The model shows moderate skill when compared against hydrographic, velocity, and sea surface height observations over tidal and subtidal time scales. Analysis of the velocity and salinity fields allows the structure and variability of the exchange flow to be estimated for the first time from the shelf into the farthest reaches of Puget Sound. This study utilizes the total exchange flow formalism that calculates volume transports and salt fluxes in an isohaline framework, which is then compared to previous estimates of exchange flow in the region. From this analysis, residence time distributions are estimated for Puget Sound and its major basins and are found to be markedly shorter than previous estimates. The difference arises from the ability of the model and the isohaline method for flux calculations to more accurately estimate the exchange flow. In addition, evidence is found to support the previously observed spring-neap modulation of stratification at the Admiralty Inlet sill. However, the exchange flow calculated increases at spring tides, exactly opposite to the conclusion reached from an Eulerian average of observations.
机译:描述了2006年对萨利什海进行的逼真的后验模拟,其中包括普吉特海湾,胡安德富卡海峡和乔治亚海峡的河口系统。与水文,速度,和潮汐和潮下时间尺度的海面高度观测。通过分析速度场和盐度场,可以首次估算从架子到普吉特海湾最远范围的交换流量的结构和可变性。这项研究利用总交换流量形式,该方法计算了在等卤盐框架中的体积输运和盐通量,然后将其与该地区先前的交换流量估计值进行比较。根据该分析,估计了普吉特海湾及其主要盆地的停留时间分布,发现其明显短于先前的估计。差异来自模型和等盐度方法进行通量计算的能力,以更准确地估计交换流量。另外,发现证据支持先前在金钟入口门槛处观察到的春季小睡分层的调制。但是,计算出的交换流量在春季潮汐时增加,这与欧拉平均观测值得出的结论完全相反。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第6期|p.1125-1143|共19页
  • 作者单位

    Sutherland, NOAA/ Northwest Fisheries Science Center, 2725 Montlake Blvd. E,Seattle, WA 98112;

    School of Oceanography, University of Washington, Seattle, Washington;

    Applied Physics Laboratory, University of Washington, Seattle, Washington;

    Naval Research Laboratory, Stennis Space Center, Mississippi;

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