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Climate-change impacts in a regional karst aquifer, Texas, USA

机译:美国德克萨斯州区域岩溶含水层的气候变化影响

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摘要

Climate-change scenarios were created from scaling factors derived from several general circulation models to assess the likely impacts of aquifer pumping on the water resources of the Edwards Balcones Fault Zone (BFZ) aquifer, Texas, one of the largest aquifer systems in the United States. Historical climatic time series in periods of extreme water shortage (1947-1959), near-average recharge (1978-1989), and above-average recharge (1975-1990) were scaled to 2 x CO2 conditions to create aquifer recharge scenarios in a wanner climate. Several pumping scenarios were combined with 2 x CO2 climate scenarios to assess the sensitivity of water resources impacts to human-induced stresses on the Edwards BFZ aquifer. The 2 x CO2 climate change scenarios were linked to surface hydrology and used to drive aquifer dynamics with alternative numerical simulation models calibrated to the Edwards BFZ aquifer, Aquifer simulations indicate that, given the predicted growth and water demand in the Edwards BFZ aquifer region, the aquifer's ground water resources appear threatened under 2 x CO2 climate scenarios. Our simulations indicate that 2 x CO2 climatic conditions could exacerbate negative impacts and water shortages in the Edwards BFZ aquifer even if pumping does not increase above its present average level. The historical evidence and the results of this article indicate that without proper consideration to variations in aquifer recharge and sound pumping strategies, the water resources of the Edwards BFZ aquifer could be severely impacted under a warmer climate. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 34]
机译:根据几个通用循环模型得出的比例因子创建了气候变化情景,以评估含水层抽水对德克萨斯州爱德华兹·巴尔孔内斯断层带(BFZ)含水层(美国最大的含水层系统之一)的水资源的可能影响。 。将极端缺水(1947-1959),近乎平均补给(1978-1989)和高于平均补给(1975-1990)期间的历史气候时间序列缩放到2 x CO2条件,以在一个水域中创建含水层补给方案。温纳气候。几种抽水方案与2 x CO2气候方案相结合,以评估水资源影响对Edwards BFZ含水层人为压力的敏感性。将2 x CO2气候变化情景与地表水文学联系起来,并使用针对Edwards BFZ含水层校准的替代数值模拟模型来驱动含水层动力学,Aquifer模拟表明,考虑到Edwards BFZ含水层区域的预测增长和需水量,在2 x CO2气候情景下,含水层的地下水资源似乎受到了威胁。我们的模拟表明,即使抽水量没有增加到目前的平均水平以上,2 x CO2的气候条件也可能加剧Edwards BFZ含水层的负面影响和缺水。本文的历史证据和结果表明,如果不适当考虑含水层补给和合理抽水策略的变化,那么在温暖的气候下,爱德华兹BFZ含水层的水资源可能会受到严重影响。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:34]

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