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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Seasonal Variability of the Southern Tip of the Oxygen Minimum Zone in the Eastern South Pacific (30 degrees-38 degrees S): A Modeling Study
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Seasonal Variability of the Southern Tip of the Oxygen Minimum Zone in the Eastern South Pacific (30 degrees-38 degrees S): A Modeling Study

机译:东南太平洋东部氧气最小区南端的季节变化(30摄氏度-38度):建模研究

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We investigate the seasonal variability of the southern tip (30 degrees-38 degrees S) of the eastern South Pacific oxygen minimum zone (OMZ) based on a high horizontal resolution (1/12 degrees) regional coupled physical-biogeochemical model simulation. The simulation is validated by available in situ observations and the OMZ seasonal variability is documented. The model OMZ, bounded by the contour of 45 mu M, occupies a large volume (4.5x10(4) km(3)) during the beginning of austral winter and a minimum (3.5x10(4) km(3)) at the end of spring, just 1 and 2 months after the southward transport of the Peru-Chile Undercurrent (PCUC) is maximum and minimum, respectively. We showed that the PCUC significantly impacts the alongshore advection of dissolved oxygen (DO) modulating the OMZ seasonal variability. However, zonal transport of DO by meridionally alternating zonal jets and mesoscale eddy fluxes play also a major role in the seasonal and spatial variability of the OMZ. Consistently, a DO budget analysis reveals a significant contribution of advection terms to the rate of change of DO and the prominence of mesoscale variability within the seasonal cycle of these terms. Biogeochemical processes and horizontal and vertical mixing, associated with subgrid scale processes, play only a secondary role in the OMZ seasonal cycle. Overall, our study illustrates the interplay of mean and (mesoscale) eddy-induced transports of DO in shaping the OMZ and its seasonal cycle off Central Chile.
机译:我们根据高水平分辨率(1/12度)区域耦合物理 - 生物地球化学模型模拟,调查东南太平洋最小区(OMZ)的南端尖端(30摄氏度-38摄氏度)的季节变异性。通过现场观测可用验证模拟,并记录了OMZ季节变异性。由45 mu m的轮廓限制的型号OMZ占据了澳大利亚冬季开始期间的大容量(4.5×10(4)km(3)),最小(3.5×10(4)km(3))春季末端的春天结束,秘鲁智利暗流(PCUC)的南向运输分别是最大和最低限度。我们表明,PCUC显着影响沿岸的溶解氧(DO)调制OMZ​​季节性变异性的平流。然而,通过单位交替的Zonal射流和Mescle eDdy助焊剂的局部传输在奥兹的季节性和空间变异性中也发挥着重要作用。始终如一地,DO预算分析揭示了平流术语对这些条款的季节周期内的季度变化率和Messcale变异率的重大贡献。与亚射出刻度过程相关的生物地球化学过程和水平和垂直混合,仅在OMZ季节周期中起二次作用。总体而言,我们的研究说明了平均值和(Mesoscale)涡流诱导的运输在智利中央季节旋转omz和季节周期的相互作用。

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