Interactive fuzzy optimization for an economic and environmental balance in a river system
An interactive fuzzy approach is applied to develop a water quality management plan in a river basin for solving multi-objective optimization problems involving vague and imprecise information related to data, model formulation, and the decision maker's preferences. This approach, originally pr...
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| Veröffentlicht in: | Water research (Oxford) Jg. 39; H. 1; S. 221 - 231 |
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2005
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| Abstract | An interactive fuzzy approach is applied to develop a water quality management plan in a river basin for solving multi-objective optimization problems involving vague and imprecise information related to data, model formulation, and the decision maker's preferences. This approach, originally proposed by Sakawa in 1983, is modified and presented as a sustainable water quality management strategy in which the decision makers and the environmental analysts put forward their views on three major economic and environmental factors: river water quality, assimilative capacity, and treatment cost of wastewater. This methodology is illustrated in a case study of multi-objective water quality management in the Tou-Chen River Basin in northern Taiwan. The incorporation of these three economic and environmental factors demonstrates the capability of the fuzzy interactive multi-objective optimization approach and also works suitably in water quality management in a river basin by the trade-off procedures. |
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| AbstractList | An interactive fuzzy approach is applied to develop a water quality management plan in a river basin for solving multi-objective optimization problems involving vague and imprecise information related to data, model formulation, and the decision maker's preferences. This approach, originally proposed by Sakawa in 1983, is modified and presented as a sustainable water quality management strategy in which the decision makers and the environmental analysts put forward their views on three major economic and environmental factors: river water quality, assimilative capacity, and treatment cost of wastewater. This methodology is illustrated in a case study of multi-objective water quality management in the Tou-Chen River Basin in northern Taiwan. The incorporation of these three economic and environmental factors demonstrates the capability of the fuzzy interactive multi-objective optimization approach and also works suitably in water quality management in a river basin by the trade-off procedures. An interactive approach that explicitly incorporates model uncertainty in terms of fuzzy set theory was used to identify water-quality management alternatives. The approach is detailed, and results are presented from its application to the basin of the Tou-Chen River in northern Taiwan. The model for multi-objective programming consisted of three objectives and their related constraint sets: the BOD sub(5) of the first upper reach, the cost of wastewater treatment in the entire river basin, and the maximum assimilative capacity of the river. The results demonstrate that the approach can be applied to effectively and efficiently solve river water-management optimization problems. An interactive fuzzy approach is applied to develop a water quality management plan in a river basin for solving multi-objective optimization problems involving vague and imprecise information related to data, model formulation, and the decision maker's preferences. This approach, originally proposed by Sakawa in 1983, is modified and presented as a sustainable water quality management strategy in which the decision makers and the environmental analysts put forward their views on three major economic and environmental factors: river water quality, assimilative capacity, and treatment cost of wastewater. This methodology is illustrated in a case study of multi-objective water quality management in the Tou-Chen River Basin in northern Taiwan. The incorporation of these three economic and environmental factors demonstrates the capability of the fuzzy interactive multi-objective optimization approach and also works suitably in water quality management in a river basin by the trade-off procedures.An interactive fuzzy approach is applied to develop a water quality management plan in a river basin for solving multi-objective optimization problems involving vague and imprecise information related to data, model formulation, and the decision maker's preferences. This approach, originally proposed by Sakawa in 1983, is modified and presented as a sustainable water quality management strategy in which the decision makers and the environmental analysts put forward their views on three major economic and environmental factors: river water quality, assimilative capacity, and treatment cost of wastewater. This methodology is illustrated in a case study of multi-objective water quality management in the Tou-Chen River Basin in northern Taiwan. The incorporation of these three economic and environmental factors demonstrates the capability of the fuzzy interactive multi-objective optimization approach and also works suitably in water quality management in a river basin by the trade-off procedures. |
| Author | Chang, Shui-Ping Lee, Chih-Sheng |
| Author_xml | – sequence: 1 givenname: Chih-Sheng surname: Lee fullname: Lee, Chih-Sheng email: chihs.lee@msa.hinet.net – sequence: 2 givenname: Shui-Ping surname: Chang fullname: Chang, Shui-Ping |
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| Keywords | Fuzzy set theory Water quality management Multiple criteria optimization Interactive fuzzy programming Fuzzy system Multicriteria analysis Drainage basins Water resource management Optimization Surface water Water quality Stream Water pollution |
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| SubjectTerms | Applied sciences Conservation of Natural Resources Continental surface waters Earth sciences Earth, ocean, space Engineering and environment geology. Geothermics Exact sciences and technology Freshwater Fuzzy Logic Fuzzy set theory Interactive fuzzy programming Models, Theoretical Multiple criteria optimization Natural water pollution Oxygen Pollution Pollution, environment geology Rivers Taiwan Waste Disposal, Fluid - economics Water Movements Water Pollution - economics Water Pollution - prevention & control Water quality management Water treatment and pollution |
| Title | Interactive fuzzy optimization for an economic and environmental balance in a river system |
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