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Seasonal oceanic variability on meso-and submesoscales: a turbulence perspective

机译:季节性和碱性的季节性海洋变异性:湍流透视

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Seasonal variability of the upper ocean on meso- and submesoscales is investigated in the framework of the quasi-normal scale elimination theory, or QNSE. The longitudinal and transverse velocity spectra in this theory have a bi-component structure comprised of the Coriolis and Kolmogorov-like branches that are identified with meso- and submesoscales, respectively. For the former, spectral amplitudes are determined by the Coriolis parameter, f, while for the latter, the amplitudes are quantified in terms of the energy flux, pi(epsilon), proceeding from larger to smaller scales. This flux can be identified with the effective submesoscale dissipation. The Kolmogorov and Coriolis subranges are delineated at a length scale L-c that marks a crossover between the respective spectra. The theoretical spectra agree well with those obtained in many observational campaigns. In phase with the seasonal variations of the intensities of instabilities and turbulence, the magnitudes of pi(epsilon) and L-c increase in winter and decrease in summer. Mirroring these changes, the bi-component structure of the kinetic energy spectra changes with seasons and renders meaningless the characterization of their seasonal variability in terms of a single slope. The theoretical results are validated against the data collected in Oleander, LatMix and North-Western Pacific observations.
机译:在准正常规模消除理论或QNSE的框架内研究了中间海洋上海和潜水阶段上海的季节变异性。该理论中的纵向和横向速度光谱具有由Coriolis和Kolmogorov样分成的双组分结构,分别与中间碱和碱循粒瘤鉴定。对于前者,光谱幅度由科里奥利参数,F确定,而对于后者,幅度在能量通量PI(epsilon)方面量化,从较大到更小的尺度。可以通过有效的子尺度耗散来识别该助焊剂。 Kolmogorov和科里奥利子标度以长度尺度L-C描绘,标记各个光谱之间的交叉。理论光谱与在许多观察活动中获得的人很好。同期,随着稳定性和湍流强度的季节变化,PI(epsilon)和L-C的大小增加冬季和夏季减少。镜像这些变化,动能谱的双组分结构随季节而变化,并且呈现出对单个斜率方面的季节变异性的表征。理论结果是针对在夹竹桃,拉特米克斯和西北太平洋观测中收集的数据的验证。

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