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Global Assessment of Semidiurnal Internal Tide Aliasing in Argo Profiles

机译:Argo资料中半日内潮汐别名的全球评估

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Though unresolved by Argo floats, internal waves still impart an aliased signal onto their profile measurements. Recent studies have yielded nearly global characterization of several constituents of the stationary internal tides. Using this new information in conjunction with thousands of floats, we quantify the influence of the stationary, mode-1 M-2 and S-2 internal tides on Argo-observed temperature. We calculate the in situ temperature anomaly observed by Argo floats (usually on the order of 0.1 degrees C) and compare it to the anomaly expected from the stationary internal tides derived from altimetry. Globally, there is a small, positive correlation between the expected and in situ signals. There is a stronger relationship in regions with more intense internal waves, as well as at depths near the nominal mode-1 maximum. However, we are unable to use this relationship to remove significant variance from the in situ observations. This is somewhat surprising, given that the magnitude of the altimetry-derived signal is often on a similar scale to the in situ signal, and points toward a greater importance of the nonstationary internal tides than previously assumed.
机译:尽管Argo浮标无法解决,但内部波仍然向其轮廓测量值传递了一个混叠信号。最近的研究已经对固定内部潮汐的几种成分进行了近乎全局的表征。结合数千个浮标使用此新信息,我们可以量化固定的,模式1 M-2和S-2内部潮汐对Argo观测温度的影响。我们计算了Argo浮标观测到的原地温度异常(通常在0.1摄氏度左右),并将其与从测高仪得出的固定内部潮汐所预期的异常进行了比较。在全球范围内,预期信号与原位信号之间存在很小的正相关。在内部波更强烈的区域以及标称最大模式1附近的深度之间存在更强的关系。但是,我们无法使用这种关系从原位观测中去除明显的差异。鉴于高度计衍生信号的幅度通常与原地信号相似,并且指出非平稳内部潮汐的重要性比以前假定的更大,因此这有点令人惊讶。

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