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Submesoscale Water-Mass Spectra in the Sargasso Sea

机译:萨尔加索海中亚尺度水质质谱

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摘要

Submesoscale stirring contributes to the cascade of tracer variance from large to small scales. Multiple nested surveys in the summer Sargasso Sea with tow-yo and autonomous platforms captured submesoscale water-mass variability in the seasonal pycnocline at 20-60-m depths. To filter out internal waves that dominate dynamic signals on these scales, spectra for salinity anomalies on isopycnals were formed. Salinity-gradient spectra are approximately flat with slopes of -0.2 +/- 0.2 over horizontal wavelengths of 0.03-10 km. While the two to three realizations presented here might be biased, more representative measurements in the literature are consistent with a nearly flat submesoscale passive tracer gradient spectrum for horizontal wavelengths in excess of 1 km. A review of mechanisms that could be responsible for a flat passive tracer gradient spectrum rules out (i) quasigeostrophic eddy stirring, (ii) atmospheric forcing through a relict submesoscale winter mixed layer structure or nocturnal mixed layer deepening, (iii) a downscale vortical-mode cascade, and (iv) horizontal diffusion because of shear dispersion of diapycnal mixing. Internal-wave horizontal strain appears to be able to explain horizontal wavenumbers of 0.1-7 cycles per kilometer (cpkm) but not the highest resolved wavenumbers (7-30 cpkm). Submesoscale subduction cannot be ruled out at these depths, though previous observations observe a flat spectrum well below subduction depths, so this seems unlikely. Primitive equation numerical modeling suggests that nonquasigeostrophic subinertial horizontal stirring can produce a flat spectrum. The last need not be limited to mode-one interior or surface Rossby wavenumbers of quasigeostrophic theory but may have a broaderband spectrum extending to smaller horizontal scales associated with frontogenesis and frontal instabilities as well as internal waves.
机译:亚中尺度搅拌有助于示踪剂从大尺度到小尺度的级联。在夏季的Sargasso海中,使用拖曳溜溜和自主平台进行多次嵌套调查,捕获了在20至60 m深度的季节性比诺克林中亚尺度水质变化。为了滤除在这些尺度上占主导地位的动态信号的内部波,形成了等比杆上盐度异常的光谱。盐度梯度光谱在0.03-10 km的水平波长上具有-0.2 +/- 0.2的斜率,大约是平坦的。虽然此处介绍的两个到三个实现可能会有偏差,但是文献中更具代表性的测量结果与水平波长超过1 km的近中亚尺度无源示踪剂梯度光谱相一致。对可能导致平坦的被动示踪剂梯度谱的机理的研究排除了(i)准地转涡旋搅动,(ii)穿过残余亚中尺度冬季混合层结构或夜间混合层加深的大气强迫,(iii)较低尺度的涡旋-模式分布,以及(iv)由于对辉石混合的剪切分散而引起的水平扩散。内波水平应变似乎能够解释每公里0.1-7个周期(cpkm)的水平波数,但不能解释最高分辨波数(7-30 cpkm)。尽管先前的观测结果观测到的频谱远低于俯冲深度,但仍不能排除在这些深度下的亚中尺度俯冲。原始方程数值模拟表明,非准地转亚惯性水平搅拌可产生平坦光谱。最后一个不必限于准地转理论的模式一内部或表面Rossby波数,而是可以具有更宽的频谱,扩展到与额生和额顶不稳定性以及内部波相关的较小水平尺度。

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  • 来源
    《Journal of Physical Oceanography》 |2015年第5期|1325-1338|共14页
  • 作者单位

    NorthWest Res Associates, Redmond, WA 98052 USA;

    Univ Victoria, Victoria, BC, Canada;

    Univ Washington, Appl Phys Lab, Seattle, WA 98105 USA;

    MIT, Cambridge, MA 02139 USA;

    Univ Washington, Appl Phys Lab, Seattle, WA 98105 USA;

    Univ Massachusetts Dartmouth, New Bedford, MA USA;

    Univ Massachusetts Dartmouth, New Bedford, MA USA;

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