首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >High-resolution modeling of the Eastern Tropical Pacific oxygen minimum zone: Sensitivity to the tropical oceanic circulation
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High-resolution modeling of the Eastern Tropical Pacific oxygen minimum zone: Sensitivity to the tropical oceanic circulation

机译:东部热带太平洋含氧量最小区域的高分辨率模拟:对热带海洋环流的敏感性

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摘要

The connection between the equatorial mean circulation and the oxygen minimum zone (OMZ) in the Eastern Tropical Pacific is investigated through sensitivity experiments with a high-resolution coupled physical-biogeochemical model. A validation against in situ observations indicates a realistic simulation of the vertical and horizontal oxygen distribution by the model. Two sets of climatological openboundary conditions for the physical variables, which differ slightly with respect to the intensity and vertical structure of the Equatorial Current System, are shown to lead to contrasting characteristics of the simulated OMZ dynamics. From a Lagrangian perspective, the mean differences near the coast originate to a large extent from the different transport of deoxygenated waters by the secondary Tsuchiya Jet (secondary Southern Subsurface Countercurrent, sSSCC). The O_2 budget further indicates a large difference in the balance between tendency terms, with advection exhibiting the largest difference between both simulations, which is shown to result from both linear and nonlinear advection. At regional scale, we also find that the variability of the physical contribution to the rate of O_2 change is one order of magnitude larger than the variability associated with the biogeochemical contribution, which originates from internal highfrequency variability. Overall our study illustrates the large sensitivity of the OMZ dynamics to the equatorial circulation.
机译:通过使用高分辨率耦合物理-生物地球化学模型进行的敏感性实验,研究了热带东部太平洋赤道平均环流与最小氧气区(OMZ)之间的联系。针对原位观测的验证表明,该模型对垂直和水平氧气分布进行了实际模拟。两组物理变量的气候开放边界条件在赤道洋流系统的强度和垂直结构方面略有不同,它们显示出模拟的OMZ动力学的对比特征。从拉格朗日的角度来看,海岸附近的平均差异在很大程度上是由次级土族喷气机(次级南方地下逆流,sSSCC)对脱氧水的不同运输所致。 O_2预算还表明趋势项之间的平衡存在很大差异,对流在两个模拟之间表现出最大的差异,这表明是线性和非线性对流共同作用的结果。在区域尺度上,我们还发现,物理贡献对O_2变化速率的变化比与生物地球化学贡献相关的变化大一个数量级,而生物地球化学贡献的变化是源于内部高频变化。总的来说,我们的研究说明了OMZ动力学对赤道环流的巨大敏感性。

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