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Water environmental planning and management at the watershed scale:A case study of Lake Qilu,China 被引量:3
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作者 Kai HUANG huaicheng guo +3 位作者 Yong LIU Feng ZHOU Yajuan YU Zhen WANG 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2008年第2期157-162,共6页
Water environmental planning and management has become essential for guiding the water pollution control activities.Past water pollution control activities have been site specific,with little thought on water quality ... Water environmental planning and management has become essential for guiding the water pollution control activities.Past water pollution control activities have been site specific,with little thought on water quality standard reaching at the watershed scale.Based on the watershed approach,a seven-step methodological framework for water environmental planning and management was developed.The framework was applied to water environmental planning and management of the Lake Qilu watershed in Yunnan Province,China.Results show that the reduction amount of total nitrogen(TN)under the plan is 1,205 tons per year so that the target of environmental capacity can be reached in 2020.Compared with traditional methods,the framework has its prevalence and could be generalized to analogous watersheds. 展开更多
关键词 water environment PLANNING watershed scale watershed approach Lake Qilu
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A refined risk explicit interval linear programming approach for optimal watershed load reduction with objective-constraint uncertainty tradeoff analysis
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作者 Pingjian YANG Feifei DONG +3 位作者 Yong LIU Rui ZOU Xing CHEN huaicheng guo 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2016年第1期129-140,共12页
To enhance the effectiveness of watershed load reduction decision making, the Risk Explicit Interval Linear Programming (REILP) approach was developed in previous studies to address decision risks and system returns... To enhance the effectiveness of watershed load reduction decision making, the Risk Explicit Interval Linear Programming (REILP) approach was developed in previous studies to address decision risks and system returns. However, REILP lacks the capability to analyze the tradeoff between risks in the objective function and constraints. Therefore, a refined REILP model is proposed in this study to further enhance the decision support capability of the REILP approach for optimal watershed load reduction. By introducing a tradeofffactor (α) into the total risk function, the refined REILP can lead to different compromises between risks associated with the objective functions and the constraints. The proposed model was illustrated using a case study that deals with uncertainty- based optimal load reduction decision making for Lake Qionghai Watershed, China. A risk tradeoff curve with different values of a was presented to decision makers as a more flexible platform to support decision formulation. The results of the standard and refined REILP model were compared under 11 aspiration levels. The results demon- strate that, by applying the refined REILP, it is possible to obtain solutions that preserve the same constraint risk as that in the standard REILP but with lower objective risk, which can provide more effective guidance for decision makers. 展开更多
关键词 refined risk explicit interval linear program-ming decision making objective-constraint uncertaintytradeoff aspiration level Lake Qionghai Watershed
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