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Tidally averaged circulation in Puget Sound sub-basins: Comparison of historical data, analytical model, and numerical model

机译:普吉特海湾流域的潮汐平均环流:历史数据,分析模型和数值模型的比较

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Through extensive field data collection and analysis efforts conducted since the 1950s, researchers have established an understanding of the characteristic features of circulation in Puget Sound. The pattern ranges from the classic fjordal behavior in some basins, with shallow brackish outflow and compensating inflow immediately below, to the typical two-layer flow observed in many partially mixed estuaries with saline inflow at depth. An attempt at reproducing this behavior by fitting an analytical formulation to past data is presented, followed by the application of a three-dimensional circulation and transport numerical model. The analytical treatment helped identify key physical processes and parameters, but quickly reconfirmed that response is complex and would require site-specific parameterization to include effects of sills and interconnected basins. The numerical model of Puget Sound, developed using unstructured-grid finite volume method, allowed resolution of the sub-basin geometric features, including presence of major islands, and site-specific strong advective vertical mixing created by bathymetry and multiple sills. The model was calibrated using available recent short-term oceanographic time series data sets from different parts of the Puget Sound basin. The results are compared against 1) recent velocity and salinity data collected in Puget Sound from 2006 and 2) a composite data set from previously analyzed historical records, mostly from the 1970s. The results highlight the ability of the model to reproduce velocity and salinity profile characteristics, their variations among Puget Sound sub-basins, and tidally averaged circulation. Sensitivity of residual circulation to variations in freshwater inflow and resulting salinity gradient in fjordal sub-basins of Puget Sound is examined.
机译:自1950年代以来,通过广泛的现场数据收集和分析工作,研究人员已经了解了普吉特海湾的环流特征。模式的变化范围从某些盆地的典型峡湾行为,浅咸咸水流出和紧随其后的补偿流量到在许多部分混合河口中观察到的典型的两层流,深处有盐水流入。提出了通过将分析公式拟合到过去的数据来重现此行为的尝试,然后应用了三维循环和传输数值模型。分析处理有助于确定关键的物理过程和参数,但很快又确认响应是复杂的,因此需要针对特定​​地点进行参数设置,以包括窗台和相互连接的盆地的影响。使用非结构网格有限体积方法开发的普吉特海湾的数值模型可以解决亚盆地的几何特征,包括主要岛屿的存在,以及通过测深法和多个窗台产生的特定地点的强对流垂直混合。使用来自普吉特海湾盆地不同地区的最新短期海洋时间序列数据集对模型进行了校准。将结果与1)普吉特湾(Puget Sound)2006年收集的近期速度和盐度数据以及2)先前分析的历史记录(主要是1970年代)的复合数据集进行比较。结果突出了该模型再现速度和盐度剖面特征,它们在普吉特海湾子盆地之间的变化以及潮汐平均环流的能力。研究了普吉特海湾峡湾子流域剩余循环对淡水流入量变化和盐度梯度变化的敏感性。

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