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A Simulation-Based Optimization Approach for Water Quality Management of Xiangxihe River Under Uncertainty

机译:不确定条件下基于仿真的湘西河水质优化管理方法

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摘要

A simulation-based interval quadratic programming (IQP) method was developed for river water quality management, where uncertainties associated with water quality parameters, cost functions, and environmental requirements were described as interval values. IQP was applied to a real-case study of the Xiangxihe River, China. A multisegment simulation model of one river with one tributary was used to generate water-quality transformation matrices and vectors, which were used to establish the river water quality constraints; in addition, the cost function of wastewater treatment were expressed as quadratic form. System cost, wastewater treatment efficiencies, and river pollution situations were analyzed under two scenarios and three criteria. A number of cost-effective schemes were generated by adjusting different combinations of decision variables within their solution intervals. Results can help decision makers generate alternatives between wastewater treatment cost and stream water quality requirement under uncertainty.
机译:针对河流水质管理开发了基于模拟的区间二次规划(IQP)方法,其中将与水质参数,成本函数和环境要求相关的不确定性描述为区间值。 IQP被应用于中国湘西河的真实案例研究。用一条河流和一条支流的多段模拟模型来生成水质转换矩阵和向量,以建立河流水质约束。此外,废水处理的成本函数以二次形式表示。在两种情况和三种标准下分析了系统成本,废水处理效率和河流污染情况。通过在解决方案间隔内调整决策变量的不同组合,产生了许多具有成本效益的方案。结果可以帮助决策者在不确定的情况下在废水处理成本和溪流水质要求之间找到替代方案。

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