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Tidal pumping and nutrient fluxes on Georges Bank: A process-oriented modeling study

机译:Georges Bank的潮汐泵送和养分通量:面向过程的模型研究

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Process-oriented studies with the unstructured-grid, three-dimensional Finite-Volume Coastal Ocean Model (FVCOM) of Georges Bank were used to examine the importance of physical processes on the cross-isobath transport of nutrients onto the Bank. Starting from idealized vertical profiles of NO3 constructed from summertime climatologic fields, the nutrient field was integrated in time using a conservative tracer equation with both homogenous and stratified initial hydrography and both tide and wind forcing. The model results reveal that: a) nutrient fluxes are spatially inhomogeneous, with the greatest nutrient flux generated by tidal pumping into surface waters along the edge of the Bank's northern flank; b) a surface nutrient maximum occurs on the northeast flank as a result of advection along the northern edge and bifurcation of the flow as waters circulate clockwise and spread laterally around the eastern portion of the Bank; c) advection enriches nutrient concentrations downstream and around the Bank, generating a donut-shaped pattern of elevated nutrients; and d) waters on the top of the Bank, especially in the southwest portions, experience the lowest nutrient flux rates. The length of time required to reach a quasi-equilibrium state of nutrient distribution over the Bank is controlled primarily by tidal advection, with cross-frontal fluxes modulated by stratification, surface wind stress, and the initial nutrient concentration in the Gulf of Maine source waters.
机译:使用乔治银行的非结构化网格,三维有限体积沿海海洋模型(FVCOM)进行的面向过程的研究,研究了物理过程对养分跨等离子运输到银行的重要性。从夏季气候场构造的理想的NO3垂直剖面开始,利用保守的示踪方程式对营养物场进行及时积分,包括均质和分层的初始水文学资料,以及潮汐和风强迫。模型结果表明:a)养分通量在空间上是不均匀的,潮汐泵入沿银行北翼边缘的地表水产生的养分通量最大; b)由于水沿顺时针方向循环并沿河岸东部横向扩散,东北侧的平流和水流的分叉使东北侧的表层养分最大。 c)对流丰富了河床下游和周围的养分浓度,产生了呈甜甜圈状的养分升高模式; d)沿岸顶部的水,尤其是西南部的水,营养通量最低。达到岸上营养物达到准平衡状态所需的时间长短主要由潮汐平流控制,跨正面通量受分层,地表风应力和缅因州湾源水域的初始营养物浓度调节。

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