Crisp and fuzzy optimisation approaches for water network retrofit
Material reuse/recycle has gained much attention in recent years for both economic and environmental reasons. Process integration techniques for water network synthesis have evolved rapidly in the past decade. With in-plant water reuse/recycle, fresh water and wastewater flowrates are reduced simult...
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oai:animorepository.dlsu.edu.ph:faculty_research-42552023-03-08T03:10:32Z Crisp and fuzzy optimisation approaches for water network retrofit Hul, Seingheng Ng, Denny K. S. Tan, Raymond Girard R. Chiang, Choon Lai Foo, Dominic C. Y. Material reuse/recycle has gained much attention in recent years for both economic and environmental reasons. Process integration techniques for water network synthesis have evolved rapidly in the past decade. With in-plant water reuse/recycle, fresh water and wastewater flowrates are reduced simultaneously. In this work, linear programming and mixed integer linear programming models that include piping cost and process constraints are developed to retrofit an existing water network in a paper mill that was not originally designed with process integration techniques. Five scenarios are presented, each representing different aspects of decision-making in real process integration projects. The fifth scenario makes use of fuzzy optimisation to achieve a compromise solution that considers the inherent conflict between maximising water recovery and minimising capital cost for retrofit. Copyright © 2007 The Berkeley Electronic Press. All rights reserved. 2007-05-17T07:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/3240 Faculty Research Work Animo Repository Water reuse—Linear programming Chemical Engineering |
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Water reuse—Linear programming Chemical Engineering Hul, Seingheng Ng, Denny K. S. Tan, Raymond Girard R. Chiang, Choon Lai Foo, Dominic C. Y. Crisp and fuzzy optimisation approaches for water network retrofit |
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Material reuse/recycle has gained much attention in recent years for both economic and environmental reasons. Process integration techniques for water network synthesis have evolved rapidly in the past decade. With in-plant water reuse/recycle, fresh water and wastewater flowrates are reduced simultaneously. In this work, linear programming and mixed integer linear programming models that include piping cost and process constraints are developed to retrofit an existing water network in a paper mill that was not originally designed with process integration techniques. Five scenarios are presented, each representing different aspects of decision-making in real process integration projects. The fifth scenario makes use of fuzzy optimisation to achieve a compromise solution that considers the inherent conflict between maximising water recovery and minimising capital cost for retrofit. Copyright © 2007 The Berkeley Electronic Press. All rights reserved. |
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Hul, Seingheng Ng, Denny K. S. Tan, Raymond Girard R. Chiang, Choon Lai Foo, Dominic C. Y. |
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Hul, Seingheng Ng, Denny K. S. Tan, Raymond Girard R. Chiang, Choon Lai Foo, Dominic C. Y. |
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Hul, Seingheng |
title |
Crisp and fuzzy optimisation approaches for water network retrofit |
title_short |
Crisp and fuzzy optimisation approaches for water network retrofit |
title_full |
Crisp and fuzzy optimisation approaches for water network retrofit |
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Crisp and fuzzy optimisation approaches for water network retrofit |
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Crisp and fuzzy optimisation approaches for water network retrofit |
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crisp and fuzzy optimisation approaches for water network retrofit |
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Animo Repository |
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2007 |
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https://animorepository.dlsu.edu.ph/faculty_research/3240 |
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