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Monitoring Groundwater Variation By Satellite And Implications For In-situ Gravity Measurements

机译:通过卫星监测地下水变化及其对原地重力测量的意义

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In order to establish a new technique for monitoring groundwater variations in urban areas, the applicability of precise in-situ gravity measurements and extremely high precision satellite gravity data via GRACE (Gravity Recovery and Climate Experiment) was tested. Using the GRACE data, regional scale water mass variations in four major river basins of the Indochina Peninsula were estimated. The estimated variations were compared with Soil-Vegetation-Atmosphere Transfer Scheme (SVATS) models with a river flow model of 1) globally uniform river velocity, 2) river velocity tuned by each river basin, 3) globally uniform river velocity considering groundwater storage, and 4) river velocity tuned by each river basin considering groundwater storage. Model 3) attained the best fit to the GRACE data, and the model 4) yielded almost the same values. This implies that the groundwater plays an important role in estimating the variation of total terrestrial storage. It also indicates that tuning river velocity, which is based on the in-situ measurements, needs further investigations in combination with the GRACE data. The relationships among GRACE data, SVATS models, and in-situ measurements were also discussed briefly.
机译:为了建立监测城市地区地下水变化的新技术,测试了通过GRACE(重力恢复和气候实验)进行的精确原地重力测量和超高精度卫星重力数据的适用性。利用GRACE数据,估算了印度支那半岛四个主要流域的区域尺度水量变化。将估算的变化与土壤-植被-大气迁移方案(SVATS)模型进行了比较,该模型的河流模型为:1)全球统一的河流速度,2)每个流域调整的河流速度,3)考虑地下水存储的全球统一的河流速度, 4)考虑地下水储量的每个流域调整的河流速度。模型3)获得了与GRACE数据的最佳拟合,模型4)产生了几乎相同的值。这意味着地下水在估算总陆地储量的变化中起着重要作用。这也表明基于原位测量的河速调整需要结合GRACE数据进行进一步研究。还简要讨论了GRACE数据,SVATS模型和现场测量之间的关系。

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