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Spatial Mapping of Time-Variable Errors in Jason-1 and TOPEX/Poseidon Sea Surface Height Measurements

机译:Jason-1和TOPEX / Poseidon海面高度测量中时变误差的空间映射

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Fitting ocean models to altimeter sea surface height (SSH) measurements requires knowledge of instrument noise (radar noise, sea state bias, path delay corrections, and orbit errors) and "representation" errors related to SSH signals (e.g., tidal or pressure driven) not computed in the models. Comparisons between the independent Ocean Topography Experiment (TOPEX)/Poseidon and Jason-1 altimetric missions when they were in identical orbits show that point by point the data are consistent within the mission specifications of about 3-cm rms, but large-scale dependences exist in the data differences, and these are both poorly known and capable of introducing major errors into oceanic state estimates. Here the authors focus on the time-variable component of the spatially dependent errors. The analysis reveals errors ranging from 2 cm in the Tropics to 4 cm at mid- and high latitudes and roughly consistent with a dependence of instrument noise on significant wave height. Analysis of the representation errors suggests that, over the deep ocean, uncertainties associated with the simplifying assumption of an inverted barometer response to pressure loading are larger than the remaining errors in modeling the large-scale tides. Over extensive regions, however, errors associated with eddy signals missing in coarse resolution models dominate. Obtaining a more quantitative estimate of the latter errors remains a challenge.
机译:使海洋模型适合高度计海面高度(SSH)测量需要了解仪器噪声(雷达噪声,海况偏差,路径延迟校正和轨道误差)以及与SSH信号有关的“表示”误差(例如,潮汐或压力驱动)没有在模型中计算。独立海洋地形实验(TOPEX)/波塞冬和Jason-1高空任务在相同轨道上的比较表明,逐点数据在大约3厘米rms的任务规格范围内是一致的,但存在大规模依赖在数据差异方面,这些信息鲜为人知,并且能够将主要错误引入海洋状态估计中。在这里,作者专注于空间相关误差的时变分量。分析表明,误差范围从热带地区的2 cm到中高纬度的4 cm,大致与仪器噪声对重要波高的依赖性相一致。对表示误差的分析表明,在深海中,与简化反向气压计对压力载荷响应的假设有关的不确定性大于对大潮建模的其余误差。然而,在广泛的区域中,与粗分辨率模型中缺少的涡流信号相关的误差占主导地位。对后一种错误进行更定量的估计仍然是一个挑战。

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