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首页> 外文期刊>Journal of Physical Oceanography >Some Expectations for Submesoscale Sea Surface Height Variance Spectra
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Some Expectations for Submesoscale Sea Surface Height Variance Spectra

机译:对亚中尺度海面高度方差谱的一些期望

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In anticipation of the Surface Water and Ocean Topography (SWOT) wide-swath altimetry mission, this study reviews expectations for sea surface height (SSH) variance spectra at wavelengths of 10-100 km. Kinetic energy spectra from in situ observations and numerical simulations indicate that SSH variance spectra associated with balanced flow drop off steeply with wavenumber, with at least the negative fourth power of the wavenumber. Such a steep drop-off implies that even drastic reductions in altimetry noise yield only a modest improvement in the resolution of balanced flow. This general expectation is made concrete by extrapolating SSH variance spectra from existing altimetry to submesoscales, the results of which suggest that in the extratropics (poleward of 20 degrees latitude) SWOT will improve the resolution from currently about 100 km to a median of 51 or 74 km, depending on whether or not submesoscale balanced flows are energetic. Internal waves, in contrast to balanced flow, give rise to SSH variance spectra that drop off relatively gently with wavenumber, so SSH variance should become strongly dominated by internal waves in the submesoscale range. In situ observations of the internal-wave field suggest that the internal-wave signal accessible by SWOT will be largely dominated by internal tides. The internal-wave continuum is estimated to have a spectral level close to but somewhat lower than SWOT's expected noise level.
机译:预期进行地表水和海洋地形(SWOT)广域测高任务时,本研究回顾了对波长10-100 km的海面高度(SSH)方差谱的期望。来自原位观测和数值模拟的动能谱表明,与平衡流相关的SSH方差谱随波数急剧下降,至少具有波数的负四次方。如此陡峭的下降意味着,即使高度降低了测高噪声,也只能适度地改善平衡流的分辨率。通过将SSH方差谱从现有测高仪推算到亚中尺度,可以使这种总体期望具体化,其结果表明,在温带(纬度为20度的极地)中,SWOT会将分辨率从目前的约100 km提高到中值51或74 km,取决于亚尺度范围内的平衡流是否充满能量。与平衡流相反,内部波会产生SSH方差谱,该谱随波数的下降相对缓和,因此SSH方差应该由亚中尺度范围内的内部波强烈控制。对内部波场的原位观测表明,SWOT可访问的内部波信号将主要由内部潮汐控制。估计内部波连续体的频谱水平接近但略低于SWOT的预期噪声水平。

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