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首页> 外文期刊>Geophysical Research Letters >Short-period oceanic circulation: implications for satellite altimetry
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Short-period oceanic circulation: implications for satellite altimetry

机译:短期海洋环流:对卫星测高的影响

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Atmospherically forced, high-frequency oceanic variability is investigated using different configurations of an ocean general circulation model. At periods less than 20 days, the dynamic response of the sea surface to pressure loading exceeds that due to wind stress, and is mostly barotropic. Energy at these periods aliases into satellite altimeter measurements of sea surface height (SSHT). The global variance of collinear (approximate to 10 day) differences of this modelled aliased SSHT is between (2 cm)(2) and (3.5 cm)(2), depending on the model configuration used. The local variance can reach (14 cm)(2) at some high latitude locations. We use the ocean model predictions to remove the high-frequency signals from TOPEX/Poseidon (T/P) observations. We obtain a global variance reduction in collinear differences of up to (2 cm)(2), about 7% of the T/P signal. Our model has difficulty in predicting the variability at periods less than 5 days. [References: 10]
机译:使用海洋一般环流模型的不同配置研究了大气强迫的高频海洋变化。在不到20天的时间里,海面对压力载荷的动态响应超过了风应力引起的动态响应,并且大部分为正压。在这些时期的能量会混入卫星高度表对海面高度(SSHT)的测量中。此建模别名SSHT的共线(大约10天)差异的全局方差在(2 cm)(2)和(3.5 cm)(2)之间,具体取决于所使用的模型配置。在某些高纬度位置,局部方差可以达到(14 cm)(2)。我们使用海洋模型预测从TOPEX / Poseidon(T / P)观测值中删除高频信号。我们获得了高达(2 cm)(2)的共线差异的全局方差减少,约为T / P信号的7%。我们的模型很难预测少于5天的变化。 [参考:10]

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