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Calculating salinity variance fluxes using isohaline coordinates

机译:使用Isohaline坐标计算盐度方差助熔剂

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Vertical salinity variance (SV) budgets arc derived using the isohaline Total Exchange Flow (TEF) framework, with the ad-vection of vertical SV quantified by the dispersion of salinity classes across sections. A numerical model of the Changjiang Estuary is used to demonstrate the application of this method. The analysis is focused on the North Channel (NC) segment where strong stratification is produced during neap tides. We find that the advection of vertical SV is stronger than that of horizontal SV during early neap due to the landward excursion of stratified water. However, strong northerly winds can significantly decrease the contribution of advection of vertical SV but increase the advection of horizontal SV into the NC due to the landward transport of relatively well-mixed saline water. This process increases the seaward advection of vertical SV in the southern channels. In addition, we highlight that the vertical SV dissipation (mixing) term balances the straining term arid peaks at late neap in the NC, coinciding with the maximum volume-integrated vertical SV.
机译:垂直盐度方差(SV)预算弧的弧线使用异屋总交换流(TEF)框架来源,通过横跨盐度类分散的垂直SV的广告。长江口的数值模型用于证明这种方法的应用。分析集中在NeA潮汐期间产生强烈分层的北路(NC)段。我们发现,由于分层水的陆地偏移,垂直SV在早期NeAP期间的平流比水平SV更强。然而,强烈的北风可以显着降低垂直SV的平流的贡献,而是由于相对良好良好的盐水的陆地运输,增加了水平SV进入NC的平流。该过程增加了南部通道垂直SV的海洋平流。此外,我们突出显示垂直的SV耗散(混合)术语平衡NC中NC的后期NeAP的紧张术语干旱峰,与最大体积集成的垂直SV一致。

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    《Oceanographic Literature Review 》 |2021年第5期| 950-950| 共1页
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