A trading-partnership model for estimating discharge permits in river systems by Ant Colony optimization
One of the main problems in the quality control of rivers is the high control cost imposed upon pollutant units. The cooperative policy approach in the treatment process between two or more pollutant units is a new and economic perspective in the environmental management of catchment basins. Origins...
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doaj-94cc6b870cc54885afa08165132a79582020-11-25T02:07:15ZengRazi UniversityJournal of Applied Research in Water and Wastewater 2476-62832476-62832014-06-0112869258A trading-partnership model for estimating discharge permits in river systems by Ant Colony optimizationSeyed Masoud Tayefeh Cheraghali0Amin Sarang1Mohammad Ali Zahed2Hossein Vahidi3Moazameh Akbari4Graduate Faculty of Environment, University of Tehran, P.O.Box 14155-6135, Tehran, Iran.Graduate Faculty of Environment, University of Tehran, P.O.Box 14155-6135, Tehran, Iran.Department of Civil Engineering, Auburn University, Auburn, AL 36849, United States of America.Department of Industrial Ecology, Academic Center of Education, Culture and Research(ACECR),Sharif University Branch, Tehran, Iran.Faculty of Management and Economics, Science and Research Branch, Islamic Azad University, Tehran Iran.One of the main problems in the quality control of rivers is the high control cost imposed upon pollutant units. The cooperative policy approach in the treatment process between two or more pollutant units is a new and economic perspective in the environmental management of catchment basins. Origins of large amounts pollutants which require a high cost to control pollution are trying to start partnerships with smaller units in establishing joint refineries in order to reduce their own and the whole system's costs. In this study, considering the one way direction of the river's water, the Streeter – Phelps equations were used to simulate the river. The Ant Colony Optimization was used as an efficiency model in order to acquire the best scenario of cooperation based on the maximum elimination of pollution and reduction of treatment costs without straying from the river's quality standards. Also the ratio – trade system was used for commercial purposes. After this the cost of the depleting units was split evenly between them using the cooperative game theory. The efficiency of the model was evaluated by qualitative and quantitative analysis of the Zarjub River in Gilan province of Iran. Three main scenarios were taken to mind for cooperative trading to take place. Carrying out the trade – partnership model could play positively large role in sufficing the quality the control of river water.https://arww.razi.ac.ir/article_58_2824a33768c10ff05599b9831d6e81b7.pdfpartnership modelRatio – trade system Ant Colony Optimization Theory of cooperative game |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Seyed Masoud Tayefeh Cheraghali Amin Sarang Mohammad Ali Zahed Hossein Vahidi Moazameh Akbari |
spellingShingle |
Seyed Masoud Tayefeh Cheraghali Amin Sarang Mohammad Ali Zahed Hossein Vahidi Moazameh Akbari A trading-partnership model for estimating discharge permits in river systems by Ant Colony optimization Journal of Applied Research in Water and Wastewater partnership model Ratio – trade system Ant Colony Optimization Theory of cooperative game |
author_facet |
Seyed Masoud Tayefeh Cheraghali Amin Sarang Mohammad Ali Zahed Hossein Vahidi Moazameh Akbari |
author_sort |
Seyed Masoud Tayefeh Cheraghali |
title |
A trading-partnership model for estimating discharge permits in river systems by Ant Colony optimization |
title_short |
A trading-partnership model for estimating discharge permits in river systems by Ant Colony optimization |
title_full |
A trading-partnership model for estimating discharge permits in river systems by Ant Colony optimization |
title_fullStr |
A trading-partnership model for estimating discharge permits in river systems by Ant Colony optimization |
title_full_unstemmed |
A trading-partnership model for estimating discharge permits in river systems by Ant Colony optimization |
title_sort |
trading-partnership model for estimating discharge permits in river systems by ant colony optimization |
publisher |
Razi University |
series |
Journal of Applied Research in Water and Wastewater |
issn |
2476-6283 2476-6283 |
publishDate |
2014-06-01 |
description |
One of the main problems in the quality control of rivers is the high control cost imposed upon pollutant units. The cooperative policy approach in the treatment process between two or more pollutant units is a new and economic perspective in the environmental management of catchment basins. Origins of large amounts pollutants which require a high cost to control pollution are trying to start partnerships with smaller units in establishing joint refineries in order to reduce their own and the whole system's costs. In this study, considering the one way direction of the river's water, the Streeter – Phelps equations were used to simulate the river. The Ant Colony Optimization was used as an efficiency model in order to acquire the best scenario of cooperation based on the maximum elimination of pollution and reduction of treatment costs without straying from the river's quality standards. Also the ratio – trade system was used for commercial purposes. After this the cost of the depleting units was split evenly between them using the cooperative game theory. The efficiency of the model was evaluated by qualitative and quantitative analysis of the Zarjub River in Gilan province of Iran. Three main scenarios were taken to mind for cooperative trading to take place. Carrying out the trade – partnership model could play positively large role in sufficing the quality the control of river water. |
topic |
partnership model Ratio – trade system Ant Colony Optimization Theory of cooperative game |
url |
https://arww.razi.ac.ir/article_58_2824a33768c10ff05599b9831d6e81b7.pdf |
work_keys_str_mv |
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