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Impact of climate changes during the last 5 million years on groundwater in basement aquifers

机译:近五百万年来气候变化对地下蓄水层地下水的影响

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Climate change is thought to have major effects on groundwater resources. There is however a limited knowledge of the impacts of past climate changes such as warm or glacial periods on groundwater although marine or glacial fluids may have circulated in basements during these periods. Geochemical investigations of groundwater at shallow depth (80–400?m) in the Armorican basement (western France) revealed three major phases of evolution: (1) Mio-Pliocene transgressions led to marine water introduction in the whole rock porosity through density and then diffusion processes, (2) intensive and rapid recharge after the glacial maximum down to several hundred meters depths, (3) a present-day regime of groundwater circulation limited to shallow depth. This work identifies important constraints regarding the mechanisms responsible for both marine and glacial fluid migrations and their preservation within a basement. It defines the first clear time scales of these processes and thus provides a unique case for understanding the effects of climate changes on hydrogeology in basements. It reveals that glacial water is supplied in significant amounts to deep aquifers even in permafrosted zones. It also emphasizes the vulnerability of modern groundwater hydrosystems to climate change as groundwater active aquifers is restricted to shallow depths.
机译:人们认为气候变化会对地下水资源产生重大影响。然而,尽管海洋或冰川流体在这些时期可能已经在地下室中循环了,但是对过去气候变化(例如温暖或冰川期)对地下水的影响的了解仍然有限。在Armorican地下室(法国西部)的浅层地下水(80-400?m)的地球化学研究中,发现了三个主要的演化阶段:(1)上新世越界导致海洋水在整个孔隙中通过密度引入,然后进入扩散过程,(2)在冰川最大下降至几百米深度后进行密集而快速的补给,(3)目前仅限于浅层深度的地下水循环方案。这项工作确定了有关海洋和冰川流体迁移及其在地下室中保存的机制的重要限制。它定义了这些过程的第一个明确的时间尺度,从而为理解气候变化对地下室水文地质的影响提供了独特的案例。结果表明,即使在多年冻土区,冰川水也大量供应给深层含水层。它还强调了现代地下水水系系统对气候变化的脆弱性,因为地下水有效含水层仅限于浅层深度。

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