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Exploring groundwater and soil water storage changes across the CONUS at 12.5 km resolution by a Bayesian integration of GRACE data into W3RA

机译:在12.5公里分辨率下,拜耳数据的恩惠数据探索地下水和土壤水储存变化。

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摘要

Climate variability and change along with anthropogenic water use have affected the (re)distribution of water storage and fluxes across the Contiguous United States (CONUS). Available hydrological models, however, do not represent recent changes in the water cycle. Therefore, in this study, a novel Bayesian Markov Chain Monte Cario-based Data Assimilation (MCMC-DA) approach is formulated to integrate Terrestrial Water Storage changes (TWSC) from the Gravity Recovery and Climate Experiment (GRACE) satellite mission into the W3RA water balance model. The benefit of this integration is its dynamic solution that uses GRACE TWSC to update W3RA's individual water storage estimates while rigorously accounting for uncertainties. It also down-scales GRACE data and provides groundwater and soil water storage changes at ~12.5 km resolution across the CONUS covering 2003-2017. Independent validations are performed against in-situ groundwater data (from USGS) and Climate Change Initiative (CCI) soil moisture products from the European Space Agency (ESA). Our results indicate that MCMC-DA introduces trends, which exist in GRACE TWSC, mostly to the groundwater storage and to a lesser extent to the soil water storage. Higher similarity is found between groundwater estimation of MCMC-DA and those of USGS in the southeastern CONUS. We also show a stronger linear trend in MCMC-DA soil water storage across the CONUS, compared to W3RA (changing from ±0.5 mm/yr to ±2 mm/yr), which is closer to independent estimates from the ESA CCI. MCMC-DA also improves the estimation of soil water storage in regions with high forest intensity, where ESA CCI and hydrological models have difficulties in capturing the soil-vegetation-atmosphere continuum. The representation of El Nino Southern Oscillation (ENSO)-related variability in groundwater and soil water storage are found to be considerably improved after integrating GRACE TWSC with W3RA. This new hybrid approach shows promise for understanding the links between climate and the water balance over broad regions.
机译:气候变异性和随人人工使用的变化影响了(重新)水储存和在连续的美国(康明斯)的助水资源的分布。然而,可用的水文模型不代表近期水循环变化。因此,在这项研究中,制定了一种新的贝叶斯马尔可夫链蒙特卡里奥的数据同化(MCMC-DA)方法,以将地面储水变化(TWSC)与重力恢复和气候实验(Grace)卫星使命集成到W3RA水中平衡模型。这种集成的好处是它的动态解决方案,它使用Grace TWSC更新W3RA的单独储水估计,同时严格地核对不确定性。它还缩小了宽度数据,并在康斯覆盖2003-2017的康斯副决议中提供地下水和土壤储水变化。独立验证针对原位地下水数据(来自USGS)和来自欧洲航天局(ESA)的气候变化倡议(CCI)土壤水分产品进行。我们的结果表明,MCMC-DA介绍趋势,在Grace TWSC中存在,主要是地下水储存以及土壤储水的程度较小。 MCMC-DA的地下水估计和东南康纳斯的USGS之间存在更高的相似性。与W3RA(从±0.5 mm / YR变为±2 mm / YR)相比,我们还展现了康明斯的MCMC-DA土壤蓄水储量更强的线性趋势,这与ESA CCI更接近独立估算。 MCMC-DA还改善了具有高森林强度的地区土壤蓄水储量的估计,其中ESA CCI和水文模型难以捕获土壤 - 植被 - 氛围连续体。在与W3RA集成后,发现地下水和土壤水储存中的EL Nino Southern振荡(ENSO)的置换变异性在很大程度上得到了大大改善。这种新的混合方法显示了理解气候与广阔地区的水平之间的联系。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|143579.1-143579.16|共16页
  • 作者单位

    School of Earth and Environmental Sciences Cardiff University CF103AT Cardiff UK;

    School of Mathematics Cardiff University CF244AC Cardiff UK;

    School of Earth and Environmental Sciences Cardiff University CF103AT Cardiff UK Water Research Institute Cardiff University CF103AX Cardiff UK Earth Research Institute University of California Santa Barbara 91306 Santa Barbara USA;

    Institute of Physics and Meteorology (IPM) University of Hohenheim 70593 Stuttgart Germany;

    Microwaves and Radar Institute German Aerospace Center 82234 Wessling Germany;

    Bureau of Economic Geology Jackson School of Geosciences University of Texas at Austin TX 78758 Austin USA;

    Bureau of Economic Geology Jackson School of Geosciences University of Texas at Austin TX 78758 Austin USA;

    School of Earth and Environmental Sciences Cardiff University CF103AT Cardiff UK Geodesy and Earth Observation Group Institute of Planning Aalborg University Rendburggade 14 9000 Aalborg Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CONUS; Markov Chain Monte Carlo (MCMC); GRACE TWSC; W3RA; Groundwater storage; Soil water storage;

    机译:圆锥;马尔可夫链蒙特卡罗(MCMC);Grace TWSC;W3ra;地下水储存;土壤储水;

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