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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Eastern North Pacific Subtropical Mode Water in a general circulation model: Formation mechanism and salinity effects
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Eastern North Pacific Subtropical Mode Water in a general circulation model: Formation mechanism and salinity effects

机译:环流模式下北太平洋东部亚热带模式水:形成机理和盐度效应

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The Eastern North Pacific Subtropical Mode Water (ESTMW) is a water mass of low potential vorticity (PV) and appears as a weak pycnostad or thermostad. Distinct from other subtropical mode waters, it forms in the absence of a deep winter mixed layer. The formation mechanism of this ESTMW is investigated using an ocean general circulation model that is forced by monthly climatological temperature, salinity, and wind stress at the sea surface. An equation based on the ventilated thermocline theory is used to diagnose the initial PV of a water mass right after its subduction. In this equation, three factors affect the initial PV: the spacing of density outcrop lines, the mixed layer depth gradient, and the vertical velocity at the bottom of mixed layer. Among them the wide spacing between outcrop lines is the most important for ESTMW's low PV instead of the deep mixed layer, which is most important for classical mode waters. It is found that weak gradients in both sea surface temperature and salinity in the direction of mixed layer flow are important for the low PV formation. A low-salinity tongue that extends southeastward off North America is responsible for the small surface density gradient in the eastern North Pacific and contributes to the formation of the ESTMW. An additional experiment forced with observed freshwater flux demonstrates that the southward advection of fresher water from the high latitude along the eastern boundary is the cause of this low-salinity tongue. [References: 29]
机译:东部北太平洋亚热带模式水(ESTMW)是低势涡(PV)的水团,表现为弱的比丘达斯或热稳定。与其他亚热带模式水不同,它在缺乏深层冬季混合层的情况下形成。利用海洋总环流模型研究了该ESTMW的形成机理,该模型受海面每月气候温度,盐度和风应力的强迫。基于通风的热跃层理论的方程式可用于诊断水团俯冲后的初始PV。在该方程式中,三个因素影响初始PV:密度露头线的间距,混合层深度梯度和混合层底部的垂直速度。其中,露头线之间的宽间隔对ESTMW的低PV最重要,而不是对经典模式水最重要的深层混合层。已经发现,在海面温度和盐度沿混合层流的方向上的弱梯度对于低PV形成很重要。低盐度的舌头从北美向东南延伸,这是造成北太平洋东部较小的表面密度梯度的原因,并有助于ESTMW的形成。强迫进行观测的淡水通量的另一项实验表明,沿东部边界从高纬度向南平流的淡水是这种低盐度舌头的原因。 [参考:29]

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