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An Inexact Two-Stage Water Quality Management Model for Supporting Sustainable Development in a Rural System

机译:支持农村系统可持续发展的不精确的两阶段水质管理模型

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摘要

Water quality management is essential for preserving valuable water resources and facilitating sustainable socio-economic development in watershed systems. However, it is challenging for decision makers to identify desired schemes for management of economic development and environmental protection due to complexities of rural systems. In this study, an inexact two-stage water quality management (ITWQM) model is developed for supporting economic and environmental management of a rural area in Heshui Watershed. In the modeling formulation, pollutant discharge and soil loss are allowed under a range of relaxed constraints in association with a variety of probabilities, such that the reliability of satisfying (or risk of violating) system constraints can be analyzed; besides, penalties are imposed when policies expressed as allowable pollutant discharge levels are not satisfied. Solutions in connection with regional sustainable development such as land use, water quality protection, crop cultivation, livestock husbandry, forest expansion, fishery and industrial production, have been obtained. The results can be used for generating decision alternatives and helping local managers to identify desired policies under various environmental, economic, and system-reliability conditions. Decisions at a lower risk level would lead to an increased reliability in fulfilling environmental requirements but with a reduced system benefit; conversely, a desire for increasing system benefit could result in a raised risk of violating environmental constraints.
机译:水质管理对于保护宝贵的水资源和促进流域系统的可持续社会经济发展至关重要。但是,由于农村系统的复杂性,决策者要确定管理经济发展和环境保护的理想计划具有挑战性。在这项研究中,开发了一种不精确的两阶段水质管理(ITWQM)模型,以支持鹤水流域农村地区的经济和环境管理。在建模公式中,污染物排放和土壤流失是在一定范围内与各种概率相关联的宽松约束条件下进行的,从而可以分析满足(或违反风险)系统约束条件的可靠性;此外,当不满足以污染物允许排放量表示的政策时,将处以罚款。已经获得了与区域可持续发展有关的解决方案,例如土地利用,水质保护,作物种植,畜牧业,森林扩张,渔业和工业生产。结果可用于生成决策选择方案,并帮助本地管理人员在各种环境,经济和系统可靠性条件下确定所需的策略。较低风险级别的决策会提高满足环境要求的可靠性,但会降低系统收益;相反,增加系统效益的愿望可能导致违反环境约束的风险增加。

著录项

  • 来源
    《Journal of environment informatics》 |2014年第1期|52-64|共13页
  • 作者单位

    MOE Key Laboratory of Regional Energy Systems Optimization, Resources and Environmental Research Academy, North China Electric Power University, Beijing 102206, China,Faculty of Engineering and Applied Sciences, University of Regina, Regina, Saskathewan S4S 0A2, Canada;

    MOE Key Laboratory of Regional Energy Systems Optimization, Resources and Environmental Research Academy, North China Electric Power University, Beijing 102206, China;

    Department of Civil Engineering, McMaster University, Hamilton, Ontario, Canada L8S 4L7;

    MOE Key Laboratory of Regional Energy Systems Optimization, Resources and Environmental Research Academy, North China Electric Power University, Beijing 102206, China;

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

    optimization; risk analysis; sustainable development; water quality; uncertainty;

    机译:优化;风险分析;可持续发展;水质;不确定;

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