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Assessment of Surface Runoff Vulnerability to Climate Change in the Lerma-Chapala Basin, Mexico

机译:墨西哥莱马-恰帕拉盆地地表径流对气候变化的脆弱性评估

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摘要

The Intergovernmental Panel on Climate Change (IPCC) suggests that vulnerability to climate change depends on three main factors: exposure, sensitivity, and adaptive capacity. Each factor was evaluated in a hydrologic context; for instance, exposure was interpreted as a change in surface runoff. Factors were combined using a geographic information system (GIS), and an overall methodology was proposed to map hydrologic vulnerability. The Lerma-Chapala basin was selected as a case study since the largest water body in Mexico is located at its outlet. The long-term rate of change in surface runoff was estimated considering the variation in future precipitation from 23 atmosphere-ocean general circulation models (AOGCMs) and by using the reliability ensemble averaging (REA) method. Two climate change scenarios from an IPCC special report on emissions scenarios and three time horizons (2030, 2050, and 2100) were chosen. Results showed a decrease in surface runoff of up to 29% (A1B-2100) in the northern part of the basin, and consequently this area is likely to have more frequent droughts. However, it would be challenging to compensate for the lack of surface runoff since ground water resources are already depleted, and thus adaptive measures need to be taken.
机译:政府间气候变化专门委员会(IPCC)建议,气候变化的脆弱性取决于三个主要因素:暴露,敏感性和适应能力。在水文环境中评估了每个因素;例如,暴露被解释为地表径流的变化。使用地理信息系统(GIS)组合因素,并提出了一种总体方法来绘制水文脆弱性图。由于墨西哥最大的水域位于其出水口,因此选择莱尔马-恰帕拉盆地作为案例研究。考虑到未来的降水变化,从23个大气-海洋总循环模型(AOGCM)并使用可靠性集成平均(REA)方法,估计了地表径流的长期变化率。从IPCC关于排放情景的特别报告中选择了两个气候变化情景,并选择了三个时间范围(2030、2050和2100)。结果表明,该盆地北部的地表径流减少了多达29%(A1B-2100),因此该地区可能更经常发生干旱。然而,由于地下水资源已经枯竭,要弥补地表径流的不足将是一项挑战,因此需要采取适应性措施。

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