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评估气候变化对小地中海流域地下水资源的影响。

Evaluating the impact of climate change on groundwater resources in a small Mediterranean watershed.

机构信息

Istanbul University, Faculty of Fisheries, Division of Freshwater Biology, 34470 Laleli, Istanbul, Turkey.

Istanbul Technical University, Environmental Engineering Department, 34469 Maslak, Istanbul, Turkey.

出版信息

Sci Total Environ. 2014 Nov 15;499:437-47. doi: 10.1016/j.scitotenv.2014.07.001. Epub 2014 Jul 23.

Abstract

Western Mediterranean Region of Turkey is subject to considerable impacts of climate change that may adversely affect the water resources. Decrease in annual precipitation and winter precipitation as well as increase in temperatures are observed since 1960s. In this study, the impact of climate change on groundwater resources in part of Köyceğiz-Dalyan Watershed was evaluated. Evaluation was done by quantifying the impacts of climate change on the water budget components. Hydrological modeling was conducted with SWAT model which was calibrated and validated successfully. Climate change and land use scenarios were used to calculate the present and future climate change impacts on water budgets. According to the simulation results, almost all water budget components have decreased. SWAT was able to allocate less irrigation water because of the decrease of overall water due to the climate change. This resulted in an increase of water stressed days and temperature stressed days whereas crop yields have decreased according to the simulation results. The results indicated that lack of water is expected to be a problem in the future. In this manner, investigations on switching to more efficient irrigation methods and to crops with less water consumption are recommended as adaptation measures to climate change impacts.

摘要

土耳其西部地中海地区受到气候变化的重大影响,这可能会对水资源产生不利影响。自 20 世纪 60 年代以来,已经观察到年降水量和冬季降水量减少以及温度升高。在这项研究中,评估了气候变化对科伊切吉兹-达利安流域部分地区地下水资源的影响。通过量化气候变化对水预算组成部分的影响来进行评估。使用成功校准和验证的 SWAT 模型进行了水文模型模拟。利用气候变化和土地利用情景来计算当前和未来气候变化对水预算的影响。根据模拟结果,几乎所有水预算组成部分都减少了。由于气候变化导致整体水量减少,SWAT 能够分配的灌溉水减少。这导致用水紧张天数和温度紧张天数增加,而根据模拟结果,作物产量减少。结果表明,未来预计会出现缺水问题。因此,建议采取适应气候变化影响的措施,例如转向更高效的灌溉方法和耗水量较少的作物,以解决缺水问题。

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