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Time-variations of equivalent water heights'from Grace Mission and in-situ river stages in the Amazon basin

机译:格雷斯任务和亚马逊河流域原位河段等效水高的时变

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Gravity Recovery and Climate Experiment (GRACE) mission is dedicated to measuring temporal variations of the Earth's gravity field. In this study, the Stokes coefficients made available by Groupe de Recherche en Géodésie Spatiale (GRGS) at a 10-day interval were converted into equivalent water height (EWH) for a ~4-year period in the Amazon basin (from July-2002 to May-2006). The seasonal amplitudes of EWH signal are the largest on the surface of Earth and reach ~ 1250mm at that basin's center. Error budget represents ~130 mm of EWH, including formal errors on Stokes coefficient, leakage errors (12 ~ 21 mm) and spectrum truncation (10 ~ 15 mm). Comparison between in situ river level time series measured at 233 ground-based hydrometric stations (HS) in the Amazon basin and vertically-integrated EWH derived from GRACE is carried out in this paper. Although EWH and HS measure different water bodies, in most of the cases a high correlation (up to ~80%) is detected between the HS series and EWH series at the same site. This correlation allows adjusting linear relationships between in situ and GRACE-based series for the major tributaries of the Amazon river. The regression coefficients decrease from up to down stream along the rivers reaching the theoretical value 1 at the Amazon's mouth in the Atlantic Ocean. The variation of the regression coefficients versus the distance from estuary is analysed for the largest rivers in the basin. In a second step, a classification of the proportionality between in situ and GRACE time-series is proposed.
机译:重力恢复和气候实验(GRACE)任务致力于测量地球重力场的时间变化。在这项研究中,Groupe de Recherche enGéodésieSpatiale(GRGS)在10天的时间间隔内获得的斯托克斯系数被转换为亚马逊盆地(从2002年7月至2002年)的大约4年时间的等效水高(EWH)。至2006年5月)。 EWH信号的季节幅度在地球表面最大,在该盆地中心约1250mm。误差预算表示〜130 mm EWH,包括斯托克斯系数的形式误差,泄漏误差(12〜21 mm)和频谱截断(10〜15 mm)。本文比较了在亚马逊河流域的233个地面水文测温站(HS)实测的河平面时间序列与GRACE得出的垂直积分EWH。尽管EWH和HS测量的水体不同,但在大多数情况下,在同一位置的HS系列和EWH系列之间检测到高度相关(高达〜80%)。这种相关性允许调整亚马逊河主要支流的原位与基于GRACE的序列之间的线性关系。回归系数沿河流从上到下递减,在大西洋的亚马逊河口处达到理论值1。分析了流域内最大河流的回归系数随距河口距离的变化。在第二步中,提出了原位和GRACE时间序列之间的比例比例的分类。

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