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Time-lapse microgravity surveys reveal water storage heterogeneity of a karst aquifer

机译:延时微重力调查显示了岩溶含水层的储水非均质性

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Time-lapse microgravity surveying combined with absolute gravity measurements is used to investigate water storage changes in a karst aquifer of 100 km~2 area. The survey consists of 40 gravity stations measured with a relative gravimeter; absolute gravity is measured at three stations for each survey. In total, four gravity surveys are performed over a 2 year time period during consecutive wet and dry periods. Survey precisions range between 2.4 and 5 uGal, enabling statistically significant detection of 10 uGal change, i.e., 0.25 m equivalent water level change. Observed gravity changes are coherent between consecutive survey periods i.e., net water withdrawal and net water recharge is observed, reaching changes as high as 22 uGal. Observed gravity changes allow refining evapotranspiration estimates, which may serve to improve the water budget of the aquifer. High-and low-gravity amplitude zones characterize the karst system, demonstrating spatially variable storage behavior. Geomorphologic considerations are invoked to explain the location of preferential zones of water storage, and a conceptual model of water storage is discussed for the studied karst.
机译:延时微重力测量与绝对重力测量相结合,用于调查100 km〜2区域岩溶含水层的储水量变化。该调查由40个重力站组成,这些相对站是用相对重力仪测量的。每次测量在三个站测量绝对重力。在连续的干湿两季中,总共进行了两次重力调查,历时2年。测量精度范围为2.4到5 uGal,能够从统计上显着检测10 uGal的变化,即0.25 m当量水位变化。在连续的调查期间,观测到的重力变化是一致的,即,观察到净取水量和净取水量,变化幅度高达22 uGal。观测到的重力变化可以细化蒸散量估算值,这可能有助于改善含水层的水量预算。高和低重力振幅带是岩溶系统的特征,表明了空间可变的存储行为。地貌学的考虑被用来解释优先储水区的位置,并为研究岩溶讨论了储水的概念模型。

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