...
首页> 外文期刊>Journal of Environmental Management >Integrated assessment of policy interventions for promoting sustainable irrigation in semi-arid environments: A hydro-economic modeling approach
【24h】

Integrated assessment of policy interventions for promoting sustainable irrigation in semi-arid environments: A hydro-economic modeling approach

机译:在半干旱环境中促进可持续灌溉的政策干预措施的综合评估:一种水力经济模拟方法

获取原文
获取原文并翻译 | 示例
           

摘要

Sustaining irrigated agriculture to meet food production needs while maintaining aquatic ecosystems is at the heart of many policy debates in various parts of the world, especially in arid and semi-arid areas. Researchers and practitioners are increasingly calling for integrated approaches, and policy-makers are progressively supporting the inclusion of ecological and social aspects in water management programs. This paper contributes to this policy debate by providing an integrated economic-hydrologic modeling framework that captures the socio-economic and environmental effects of various policy initiatives and climate variability. This modeling integration includes a risk-based economic optimization model and a hydrologic water management simulation model that have been specified for the Middle Guadiana basin, a vulnerable drought-prone agro-ecological area with highly regulated river systems in southwest Spain. Namely, two key water policy interventions were investigated: the implementation of minimum environmental flows (supported by the European Water Framework Directive, EU WFD), and a reduction in the legal amount of water delivered for irrigation (planned measure included in the new Guadiana River Basin Management Plan, GRBMP, still under discussion). Results indicate that current patterns of excessive water use for irrigation in the basin may put environmental flow demands at risk, jeopardizing the WFD's goal of restoring the 'good ecological status' of water bodies by 2015. Conflicts between environmental and agricultural water uses will be stressed during prolonged dry episodes, and particularly in summer low-flow periods, when there is an important increase of crop irrigation water requirements. Securing minimum stream flows would entail a substantial reduction in irrigation water use for rice cultivation, which might affect the profitability and economic viability of small rice-growing farms located upstream in the river. The new GRBMP could contribute to balance competing water demands in the basin and to increase economic water productivity, but might not be sufficient to ensure the provision of environmental flows as required by the WFD. A thoroughly revision of the basin's water use concession system for irrigation seems to be needed in order to bring the GRBMP in line with the WFD objectives. Furthermore, the study illustrates that social, economic, institutional, and technological factors, in addition to bio-physical conditions, are important issues to be considered for designing and developing water management strategies. The research initiative presented in this paper demonstrates that hydro-economic models can explicitly integrate all these issues, constituting a valuable tool that could assist policy makers for implementing sustainable irrigation policies.
机译:在世界各地,尤其是在干旱和半干旱地区,许多政策辩论的重点是维持灌溉农业以满足粮食生产需求,同时维持水生生态系统。研究人员和从业人员日益呼吁采用综合方法,而政策制定者正在逐步支持将生态和社会方面纳入水管理计划。本文通过提供一个综合的经济-水文模型框架,为各种政策倡议和气候多变性带来的社会经济和环境影响,为这一政策辩论做出了贡献。该模型集成包括为西班牙中西部的瓜迪亚纳中部地区指定的基于风险的经济优化模型和水文水管理模拟模型,该中部地区是干旱多发的农业生态脆弱地区,河流系统高度管制。即,调查了两项重要的水政策干预措施:最低环境流量的实施(由欧洲水框架指令,欧盟WFD支持)和减少灌溉用水的合法量(新的瓜迪亚纳河中包括了计划措施)流域管理计划,GRBMP,仍在讨论中)。结果表明,流域目前过度灌溉用水的模式可能使环境流量需求面临风险,危及世界粮食日的到2015年恢复水体“良好生态状态”的目标。将强调环境与农业用水之间的冲突在长期干旱期间,特别是在夏季低流量时期,这时农作物灌溉需水量显着增加。确保最小的水流量将需要大量减少用于水稻种植的灌溉用水,这可能会影响位于河上游的小型水稻种植农场的盈利能力和经济可行性。新的GRBMP可能有助于平衡流域内竞争的用水需求并提高经济用水效率,但可能不足以确保按照WFD的要求提供环境流量。为了使GRBMP与WFD目标保持一致,似乎有必要彻底修改流域的灌溉用水特许权制度。此外,研究表明,除了生物物理条件外,社会,经济,制度和技术因素也是设计和制定水资源管理策略时应考虑的重要问题。本文提出的研究计划表明,水力经济​​模型可以明确地整合所有这些问题,从而构成了可以帮助决策者实施可持续灌溉政策的宝贵工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号