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Market-based stochastic optimization of water resources systems for improving drought resilience and economic efficiency in arid regions

机译:基于市场的水资源系统随机优化,提高干旱地区的干旱弹性和经济效率

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摘要

Efficient reallocation and conjunctive operation of existing water supplies have been receiving increasing attention as the competition among water users are intensified in worldwide. In this paper, a market-based stochastic optimization model is developed to address inherent uncertainties and complexities in water resources planning in arid regions. This model can be used not only to explore the water conservation potential via three strategies as cropping pattern optimization, irrigation infrastructure improvement and water trading, but also to help generate related water policy that promote the local welfare and facilitate local cleaner production.A real case study of the pumping irrigation system located in Yellow River basin is conducted to demonstrate applicability of the proposed model. Our findings indicate that the adjusted cropping pattern significantly increases the irrigator's income by growing economic crops such as herb and wolfberry; meanwhile, it does not sacrifice the food production. With the efficient infrastructural development, substantial water resources are saved and traded to other industries, thereby stimulating the local economy. Optimum subsidization policy is identified to increase the local welfare by allowing seasonal water trading while lessening the financial burden of the local government. (C) 2019 Elsevier Ltd. All rights reserved.
机译:随着Water用户的竞争加剧,现有水供应的高效重新分配和联合运行一直受到越来越关注全球。本文,开发了一种基于市场的随机优化模型,以解决干旱地区水资源规划中固有的不确定性和复杂性。该模型不仅可以通过三种策略作为种植模式优化,灌溉基础设施改善和水交易来探索水利潜力,也有助于产生促进当地福利的相关水量,并促进局部清洁生产。实际情况进行了位于黄河流域的泵送灌溉系统的研究,以证明所提出的模型的适用性。我们的调查结果表明,调整后的种植模式通过不断增长的经济作物(如草药和枸杞)显着提高了灌溉者的收入;同时,它不会牺牲食品生产。随着有效的基础设施发展,将大量水资源保存并交易到其他行业,从而促进当地经济。通过允许季节性水交易来减少当地政府的金融负担,确定最佳补贴政策以增加当地福利。 (c)2019 Elsevier Ltd.保留所有权利。

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  • 来源
    《Journal of Cleaner Production》 |2019年第1期|522-537|共16页
  • 作者单位

    Univ Regina Fac Engn Regina SK S4S 0A2 Canada;

    Univ Regina Fac Engn Regina SK S4S 0A2 Canada;

    Hong Kong Polytech Univ Dept Land Surveying & Geoinformat Hong Kong Peoples R China;

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