了解摩洛哥苏斯盆地气候变化引起的干旱与农业用水需求之间的权衡关系

Oumaima Attar, Y. Brouziyne, L. Bouchaou, Ali El Bilali, Yassine Ait Brahim, A. Chehbouni
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引用次数: 0

摘要

水资源综合管理的概念要求对流入流域的水量进行深入分析。人口增长和气候变化带来的不确定性导致用水压力和干旱加剧,对农业造成影响。因此,有必要研究气候变化对流域供需互动的影响。本研究首次在该地区使用了通用决策支持系统 ModSim 来研究摩洛哥苏斯流域的农业用水和需水情况。利用记录的物理过程、水利基础设施特征和管理数据,对 1990 年至 2019 年期间的 ModSim 进行了校准。模拟成功地复制了不同灌溉周边地区的不同赤字情况。在 2012 年至 2019 年的模拟期间,流域内不同水坝的供水量下降了 38% 至 89%。因此,1990 年至 2019 年期间,灌溉区水库地表水未满足的平均总需求达到 201 立方毫米,旱季的月平均需求量比其他季节增加了 55%。所有地点都有大量需求未得到满足,这表明可以通过从地下水资源取水来满足需求。事实证明,所采用的方法是了解水资源规划挑战的有用决策支持工具。水资源管理者需要这种可靠的工具来表示流域的水资源权衡。因此,需要进行更多的调查,以改进地下水/地表水相互作用方法的表述,从而加强对不同用途后果的评估,特别是在像苏斯这样水资源严重紧张的干旱和半干旱地区。为了指导有效的水资源管理和治理,我们提出了一个概念框架并进行了详细讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Understanding the trade-offs between climate change-induced aridity and agricultural water demand in the Souss basin, Morocco
The concept of integrated water resource management requires an in-depth analysis of water inflows into a river basin. Population growth and the uncertainties associated with climate change are causing increased water stress and droughts, which are impacting agriculture. Hence the need for studies on the impact of climate change on demand-supply interactions in river basins. In this study, a generic decision support system, ModSim, was used; for the first time in the region; to examine the agricultural water usage and demands over Souss basin in Morocco. ModSim was calibrated over the period from 1990 to 2019 using recorded data about physical processes and hydraulic infrastructures features and management. The simulations succeeded in replicating different deficit episodes at the various irrigated perimeters. During the simulated period from 2012 to 2019, it was observed that the water supplies for the different dams in the basin experienced a decline ranging from 38% to 89%. As a result, the average total unmet demand for surface water from reservoirs in irrigated areas reached 201 mm3 between 1990 and 2019 and the monthly average demand increases by 55% in the dry season, compared to the demands in the rest of the year. The significant amount of unmet demand across all sites suggests that demands are satisfied by the withdrawal of water from groundwater resources. The adopted approach has proven to be a useful decision support tool to understand water resources planning challenges. Water managers require such reliable tools to represent the basin's water trade-offs. Thus, additional investigation to improve the representation of groundwater/surface water interaction approaches is required to enhance the evaluation of the consequences of different uses, especially in arid and semi-arid regions with significant water stress such as Souss. A conceptual framework as well as a detailed discussion have been produced in order to guide efficient water management and governance.
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