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Regional GRACE-based estimates of water mass variations over Australia: validation and interpretation

机译:基于地区GRACE的澳大利亚水量变化估算:验证和解释

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Time series of regional 2° × 2° Gravity Recovery and Climate Experiment (GRACE) solutions have been computed from 2003 to 2011 with a 10-day resolution by using an energy integral method over Australia (112° E–156° E; 44° S–10° S). This approach uses the dynamical orbit analysis of GRACE Level 1 measurements, and specially accurate along-track K-band range rate (KBRR) residuals with a 1 μm ssup?1/sup level of errors, to estimate the total water mass over continental regions. The advantages of regional solutions are a significant reduction of GRACE aliasing errors (i.e. north–south stripes) providing a more accurate estimation of water mass balance for hydrological applications. In this paper, the validation of these regional solutions over Australia is presented, as well as their ability to describe water mass change as a response of climate forcings such as El Ni?o. Principal component analysis of GRACE-derived total water storage (TWS) maps shows spatial and temporal patterns that are consistent with independent data sets (e.g. rainfall, climate index and in situ observations). Regional TWS maps show higher spatial correlations with in situ water table measurements over Murray–Darling drainage basin (80–90%), and they offer a better localization of hydrological structures than classical GRACE global solutions (i.e. Level 2 Groupe de Recherche en Géodésie Spatiale (GRGS)) products and 400 km independent component analysis solutions as a linear combination of GRACE solutions provided by different centers.
机译:通过使用澳大利亚的能量积分方法,从2003年到2011年以10天的分辨率计算了区域2°×2°重力恢复和气候实验(GRACE)解决方案的时间序列(112°E–156°E; 44° S–10°S)。该方法使用GRACE 1级测量的动态轨道分析,以及误差水平为1μms ?1 的特别精确的沿轨K波段测距率(KBRR)残差,来估计总误差。大陆地区的水团。区域解决方案的优点是可以显着减少GRACE混叠误差(即南北条纹),从而为水文应用提供更准确的水质平衡估算。在本文中,将介绍在澳大利亚的这些区域性解决方案的有效性,以及它们将水质变化描述为气候强迫(如厄尔尼诺现象)的反应的能力。 GRACE衍生的总储水量(TWS)地图的主成分分析显示了与独立数据集(例如降雨,气候指数和原位观测)一致的时空格局。区域TWS地图显示了在Murray-Darling流域(80-90%)上的原位地下水位测量具有更高的空间相关性,并且与传统的GRACE全球解决方案(即,Recherche enGéodésieSpatiale 2级组)相比,它们提供了更好的水文结构定位(GRGS)产品和400 km独立成分分析解决方案,这是由不同中心提供的GRACE解决方案的线性组合。

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