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Intensive rainfall recharges tropical groundwaters

机译:强烈的降雨补充了热带地下水

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Dependence upon groundwater to meet rising agricultural and domestic water needs is expected to increase substantially across the tropics where, by 2050, over half of the world's population is projected to live. Rare, long-term groundwater-level records in the tropics indicate that groundwater recharge occurs disproportionately from heavy rainfalls exceeding a threshold. The ubiquity of this bias in tropical groundwater recharge to intensive precipitation is, however, unknown. By relating available long-term records of stable-isotope ratios of O and H in tropical precipitation (15 sites) to those of local groundwater, we reveal that groundwater recharge in the tropics is near-uniformly (14/15 sites) biased to intensive monthly rainfall, commonly exceeding the ~70th intensity decile. Our results suggest that the intensification of precipitation brought about by global warming favours groundwater replenishment in the tropics. Nevertheless, the processes that transmit intensive rainfall to groundwater systems and enhance the resilience of tropical groundwater storage in a warming world, remain unclear.
机译:热带地区对地下水的需求日益增加,以满足农业和家庭用水的需求增加,到2050年,预计将有超过一半的人口居住在热带地区。热带地区很少有长期的地下水位记录表明,由于超过阈值的暴雨,地下水补给不成比例地发生。但是,尚不清楚这种热带雨水补给偏向强降水的普遍性。通过将热带降水(15个站点)中O和H的稳定同位素比与当地地下水的长期可用记录相关联,我们发现热带地区的地下水补给几乎均匀(14/15个站点)偏向密集每月降雨,通常超过〜70强度的十分位数。我们的研究结果表明,全球变暖导致的降水增加有利于热带地区的地下水补充。然而,在变暖的世界中,将大量降雨传递到地下水系统并增强热带地下水存储弹性的过程仍不清楚。

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