首页> 外文期刊>Surveys in Geophysics: An International Review Journal of Geophysics and Planetary Sciences >Assessing Global Water Storage Variability from GRACE: Trends, Seasonal Cycle, Subseasonal Anomalies and Extremes
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Assessing Global Water Storage Variability from GRACE: Trends, Seasonal Cycle, Subseasonal Anomalies and Extremes

机译:从GRACE评估全球储水量的变化:趋势,季节性周期,亚季节异常和极端事件

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摘要

Throughout the past decade, the Gravity Recovery and Climate Experiment (GRACE) has given an unprecedented view on global variations in terrestrial water storage. While an increasing number of case studies have provided a rich overview on regional analyses, a global assessment on the dominant features of GRACE variability is still lacking. To address this, we survey key features of temporal variability in the GRACE record by decomposing gridded time series of monthly equivalent water height into linear trends, inter-annual, seasonal, and subseasonal (intra-annual) components. We provide an overview of the relative importance and spatial distribution of these components globally. A correlation analysis with precipitation and temperature reveals that both the inter-annual and subseasonal anomalies are tightly related to fluctuations in the atmospheric forcing. As a novelty, we show that for large regions of the world high-frequency anomalies in the monthly GRACE signal, which have been partly interpreted as noise, can be statistically reconstructed from daily precipitation once an adequate averaging filter is applied. This filter integrates the temporally decaying contribution of precipitation to the storage changes in any given month, including earlier precipitation. Finally, we also survey extreme dry anomalies in the GRACE record and relate them to documented drought events. This global assessment sets regional studies in a broader context and reveals phenomena that had not been documented so far.
机译:在过去的十年中,重力恢复和气候实验(GRACE)对陆地储水的全球变化给出了空前的看法。尽管越来越多的案例研究提供了有关区域分析的丰富概述,但仍缺乏对GRACE变异性主要特征的全球评估。为了解决这个问题,我们通过将每月当量水高的网格化时间序列分解为线性趋势,年际,季节和季节内(年内)成分,来调查GRACE记录中时间变化的关键特征。我们概述了这些组件在全球范围内的相对重要性和空间分布。与降水和温度的相关性分析表明,年际和季节下的异常都与大气强迫的波动密切相关。作为一种新颖性,我们表明,对于世界的大部分地区,一旦应用了足够的平均滤波器,每月GRACE信号中的高频异常(已部分被解释为噪声)可以从每日降水量统计重建。该过滤器将降水在任何给定月份(包括较早的降水)中对存储变化的时间衰减贡献积分。最后,我们还调查了GRACE记录中的极端干燥异常,并将其与已记录的干旱事件相关联。这项全球评估在更广泛的背景下进行了区域研究,并揭示了迄今为止尚未记录的现象。

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