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ESTIMATING OCEAN MIDDLE-DEPTH VELOCITIES FROM ARGO FLOATS: ERROR ESTIMATION AND APPLICATION TO PACIFIC

机译:估算来自Argo Floats的海洋中间深度速度:误差估计和太平洋的应用

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The Array for Real-time Geostrophic Oceanography (ARGO) project creates a unique opportunity to estimate the absolute velocity at mid-depths of the global oceans. However, the estimation can only be made based on float surface trajectories. The diving and resurfacing positions of the float are not available in its trajectory file. This surface drifting effect makes it difficult to estimate mid-depth current. Moreover, the vertical shear during decent or ascent between parking depth and the surface is another major error source. In this presentation, we first quantify the contributions of the two major error sources using the current estimates from Estimating the Climate and Circulation of the Ocean (ECCO) and find that the surface drifting is a primary error source. Then, a sequential surface trajectory prediction/estimation scheme based on Kalman Filter is introduced and implemented to reduce the surface drifting error in the Pacific during November 2001 to October 2004. On average, the error of the estimated velocities is greatly reduced from 2.7 to 0.2 cm s~(-1) if neglecting the vertical shear. These velocities with relative error less than 25% are analyzed and compared with previous studies on mid-depth currents. The current system derived from ARGO floats in Pacific at 1000 and 2000 Db is comparable to other measured by ADCP (Reid, 1997; Firing et al., 1998). This presentation is based on two submitted manuscripts of the same authors (Xie and Zhu, 2006; Zhu et al., 2006). More detailed results can be found in the two manuscripts.
机译:用于实时地球嗜哪种海洋学(ARGO)项目的阵列创造了一个独特的机会,可以估计全球海洋中间深度的绝对速度。然而,估计只能基于浮动表面轨迹进行。浮子的潜水和重新铺设位置在其轨迹文件中不可用。这种表面漂移效果使得难以估计中深电流。此外,在停车深度和表面之间体积或上升期间的垂直剪切是另一个主要误差源。在这个演示中,我们首先使用当前估计估计海洋(ecco)的气候和流通来量化两个主要误差源的贡献,并发现表面漂移是主要误差源。然后,引入并实施了基于卡尔曼滤波器的顺序表面轨迹预测/估计方案,以在2001年11月到2004年10月期间降低太平洋的表面漂移误差。平均而言,估计速度的误差大大降低到0.2 CM S〜(-1)如果忽略垂直剪切。分析了具有相对误差小于25%的这些速度,并与先前的中深电流研究进行比较。源自Argo浮子的当前系统在1000和2000dB的情况下与ADCP(Reid,1997; Firing等,1998)相当。此演示文稿基于同一作者的两份提交的手稿(谢和朱,2006; Zhu等,2006)。更详细的结果可以在两份手稿中找到。

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