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Development of a Daily GRACE Mascon Solution for Terrestrial Water Storage

机译:开发陆地储水的日常恩典MASCON解决方案

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The Gravity Recovery and Climate Experiment (GRACE) and GRACE-Follow On missions have provided a global history of terrestrial water storage changes since 2002. Traditional GRACE products resolve monthly time-variable gravity at spatial resolutions of 300-500 km, with many recent efforts focusing on regularized mass concentration (mascon) solutions to better resolve signals spatially. However, monthly resolution inhibits the applicability of GRACE to investigations of sub-monthly signals. This study presents a new daily mass change solution estimated as deviations from the NASA Goddard Space Flight Center (GSFC) converged monthly mascon product and quantifies the fundamental trade-off between temporal and spatial resolution in GRACE-only solutions. As an iteration of the GSFC product, this daily solution represents a mixing of monthly information at higher relative spatial resolution with daily information at lower relative spatial resolution, resolving each temporal scale at the best resolution achievable without requiring hydrological model dependencies in the estimation. The resolution of the daily mascons is 300-400 km at high latitudes and 600-1,000 km lower, depending on each daily orbital track and the proximity of each mascon to constraint region boundaries (e.g., coastlines). Through simulations and model comparisons, we demonstrate that daily signals over areas larger than 400,000 km(2) are recoverable, with basins larger than 800,000 km(2) exhibiting strong signal recovery relative to leakage. This analysis establishes baselines for daily signal recovery from GRACE in the context of longer time scale solutions, characterizes leakage inherent in daily GRACE information, and creates new opportunities for applying GRACE to investigations of sub-monthly signals.
机译:自2002年以来,任务的重力恢复和气候实验(Grace)和Grace-Depart提供了全球陆地储存变化的历史。传统的恩典产品在300-500公里处的空间分辨率下的每月变量重力,最近的努力专注于正规化质量浓度(MASCON)解决方案,以便在空间上更好地解析信号。但是,月度分辨率抑制了恩典的适用性,以调查分量信号。本研究提出了一项新的每日大规模变化解决方案,估计为NASA戈达德太空飞行中心(GSFC)融合了每月MASCON产品的偏差,并在宽限地解决方案中量化时间和空间分辨率之间的基本折衷。作为GSFC产品的迭代,该每日解决方案表示以较低的相对空间分辨率的日常信息在更高的相对空间分辨率下对每月信息的混合,并在不需要水文模型依赖性的最佳分辨率下解决每个时间尺度而不需要估计中的水文模型依赖性。每日摩拉斯的分辨率在高纬度地区300-400公里,较低600-1,000公里,取决于每个日常轨道轨道以及每个MASCON到约束区域边界的接近(例如,海岸线)。通过模拟和模型比较,我们证明,超过40万公里(2)的区域的日常信号是可恢复的,盆地大于80万公里(2),相对于泄漏具有强烈的信号恢复。该分析在较长时间尺度解决方案的背景下从恩典中建立了每日信号恢复的基线,其特征在于每日宽限性信息中固有的泄漏,并创造了将恩典应用于次月信号的调查的新机会。

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