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A coupled human-natural systems analysis of irrigated agriculture under changing climate

机译:气候变化下灌溉农业的人-自然系统耦合分析

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摘要

Exponentially growing water demands and increasingly uncertain hydrologic regimes due to changes in climate and land use are challenging the sustainability of agricultural water systems. Farmers must adapt their management strategies in order to secure food production and avoid crop failures. Investigating the potential for adaptation policies in agricultural systems requires accounting for their natural and human components, along with their reciprocal interactions. Yet this feedback is generally overlooked in the water resources systems literature. In this work, we contribute a novel modeling approach to study the coevolution of irrigated agriculture under changing climate, advancing the representation of the human component within agricultural systems by using normative meta-models to describe the behaviors of groups of farmers or institutional decisions. These behavioral models, validated against observational data, are then integrated into a coupled human-natural system simulation model to better represent both systems and their coevolution under future changing climate conditions, assuming the adoption of different policy adaptation options, such as cultivating less water demanding crops. The application to the pilot study of the Adda River basin in northern Italy shows that the dynamic coadaptation of water supply and demand allows farmers to avoid estimated potential losses of more than 10 MEuro/yr under projected climate changes, while unilateral adaptation of either the water supply or the demand are both demonstrated to be less effective. Results also show that the impact of the different policy options varies as function of drought intensity, with water demand adaptation outperforming water supply adaptation when drought conditions become more severe.
机译:由于气候和土地利用的变化,对水资源的需求呈指数增长,而对水文状况的不确定性也在挑战着农业水系统的可持续性。农民必须调整其管理策略,以确保粮食生产并避免农作物歉收。要研究农业系统中适应政策的潜力,就必须考虑其自然和人为成分,以及它们之间的相互影响。然而,这种反馈在水资源系统文献中通常被忽略。在这项工作中,我们提供了一种新颖的建模方法来研究气候变化下的灌溉农业的共同发展,通过使用规范性元模型来描述农民群体或机构决策的行为来推进农业系统中人为因素的表示。这些行为模型经过观察数据验证,然后整合到人与自然系统的耦合模拟模型中,以更好地表示未来气候变化条件下的两个系统及其协同进化,并假设采用了不同的政策适应方案,例如减少对水的需求庄稼。在意大利北部的阿达河流域试点研究中的应用表明,对水供需的动态适应使农民避免了在预计的气候变化下每年潜在的估计损失超过10 MEuro的情况,同时单方面调整了其中一种水供给或需求都没有那么有效。结果还表明,不同政策方案的影响随干旱强度的变化而变化,当干旱条件变得更加严重时,对水需求的适应胜过对水的适应。

著录项

  • 来源
    《Water resources research》 |2016年第9期|6928-6947|共20页
  • 作者单位

    Politecn Milan, Dept Elect Informat & Bioengn, Milan, Italy;

    Politecn Milan, Dept Elect Informat & Bioengn, Milan, Italy;

    Politecn Milan, Dept Elect Informat & Bioengn, Milan, Italy|Swiss Fed Inst Technol, Inst Environm Engn, Zurich, Switzerland;

    Univ Milan, Dept Agr & Environm Sci, Prod, Landscape,Agroenergy, Milan, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    coupled human-natural systems; climate change; water management;

    机译:人与自然系统的耦合;气候变化;水资源管理;

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