...
首页> 外文期刊>The Science of the Total Environment >A Food-Energy-Water Nexus approach for land use optimization
【24h】

A Food-Energy-Water Nexus approach for land use optimization

机译:一种食品-能源-水结合的方法,以优化土地利用

获取原文
获取原文并翻译 | 示例
           

摘要

Allocation and management of agricultural land is of emergent concern due to land scarcity, diminishing supply of energy and water, and the increasing demand of food globally. To achieve social, economic and environmental goals in a specific agricultural land area, people and society must make decisions subject to the demand and supply of food, energy and water (FEW). Interdependence among these three elements, the Food-Energy-Water Nexus (FEW-N), requires that they be addressed concertedly. Despite global efforts on data, models and techniques, studies navigating the multi-faceted FEW-N space, identifying opportunities for synergistic benefits, and exploring interactions and trade-offs in agricultural land use system are still limited. Taking an experimental station in China as a model system, we present the foundations of a systematic engineering framework and quantitative decision-making tools for the trade-off analysis and optimization of stressed interconnected FEW-N networks. The framework combines data analytics and mixed-integer nonlinear modeling and optimization methods establishing the interdependencies and potentially competing interests among the FEW elements in the system, along with policy, sustainability, and feedback from various stakeholders. A multi-objective optimization strategy is followed for the trade-off analysis empowered by the introduction of composite FEW-N metrics as means to facilitate decision-making and compare alternative process and technological options. We found the framework works effectively to balance multiple objectives and benchmark the competitions for systematic decisions. The optimal solutions tend to promote the food production with reduced consumption of water and energy, and have a robust performance with alternative pathways under different climate scenarios. (c) 2018 Elsevier B.V. All rights reserved.
机译:由于土地稀缺,能源和水的供应减少以及全球粮食需求的增加,对农业土地的分配和管理引起了人们的关注。为了在特定的农业用地地区实现社会,经济和环境目标,人民和社会必须根据食物,能源和水的需求和供应做出决定。食品-能源-水联系(FEW-N)这三个要素之间的相互依赖性要求对它们进行协调解决。尽管在数据,模型和技术方面进行了全球性的努力,但是在多方面的FEW-N空间中导航,确定协同效益的机会以及探索农业土地利用系统中的相互作用和权衡的研究仍然有限。以中国的一个实验站为模型系统,我们为压力互连的FEW-N网络的权衡分析和优化提供了系统工程框架和定量决策工具的基础。该框架结合了数据分析,混合整数非线性建模和优化方法,建立了系统中FEW元素之间的相互依存关系和潜在的竞争利益,以及政策,可持续性和各利益相关者的反馈。遵循多目标优化策略,通过引入复合FEW-N指标来权衡分析,以促进决策制定和比较替代流程和技术选择。我们发现该框架有效地平衡了多个目标,并为系统决策的竞争设定了基准。最佳解决方案倾向于通过减少水和能源的消耗来促进粮食生产,并具有在不同气候情景下具有替代途径的稳健表现。 (c)2018 Elsevier B.V.保留所有权利。

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