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Interactive fuzzy optimization for an economic and environmental balance in a river system
Chih-Sheng Lee1, Shui-Ping Chang
1Department of Environmental Engineering, Kun Shan University of Technology, #949 Da-Wan Road, Yun Kan City, Tainan 710, Taiwan, ROC. chihs.lee@msa.hinet.net
Water Research
|December 21, 2004
Summary
This study introduces a fuzzy interactive approach for sustainable river basin water quality management. It effectively balances environmental goals with economic factors like treatment costs using trade-off procedures.
Area of Science:
- Environmental Science
- Operations Research
- Water Resource Management
Background:
- River basin management faces challenges with imprecise data and multi-objective optimization.
- Traditional methods struggle to incorporate decision-maker preferences and economic factors effectively.
Purpose of the Study:
- To develop a sustainable water quality management strategy for river basins.
- To adapt and apply an interactive fuzzy approach for multi-objective optimization problems.
- To integrate economic and environmental factors into water quality planning.
Main Methods:
- Modified Sakawa's interactive fuzzy approach (1983) for water quality management.
- Incorporated decision-maker and analyst views on river water quality, assimilative capacity, and wastewater treatment cost.
- Applied the methodology to a case study in the Tou-Chen River Basin, Taiwan.
Main Results:
- Demonstrated the capability of the fuzzy interactive multi-objective optimization approach.
- Successfully integrated economic and environmental factors into the management plan.
- Showcased the approach's suitability for river basin water quality management through trade-off procedures.
Conclusions:
- The fuzzy interactive approach provides a robust framework for sustainable water quality management.
- Effective trade-offs between economic and environmental considerations are achievable.
- The method is suitable for complex river basin optimization problems with vague information.