A multi-level programming for shale gas-water supply chains accounting for tradeoffs between economic and environmental concerns

•A multi-level model is developed for optimal design of the shale gas-water supply chains.•Economic and environmental performances of the supply chains are presented.•A comprehensive comparison among the single- and multi-level models is discussed.•The Marcellus shale is used to verify the applicati...

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Vydané v:Computers & chemical engineering Ročník 135; s. 106761
Hlavní autori: Chen, Yizhong, Cheng, Xi, Li, Jing, He, Li
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Elsevier Ltd 06.04.2020
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ISSN:0098-1354, 1873-4375
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Abstract •A multi-level model is developed for optimal design of the shale gas-water supply chains.•Economic and environmental performances of the supply chains are presented.•A comprehensive comparison among the single- and multi-level models is discussed.•The Marcellus shale is used to verify the application of the multi-level model.•Design and operational decisions can be provided for multiple decision makers. This study develops a multi-level programming model for planning the shale gas-water supply chains. A set of leader-follower-interactive objectives with emphases of water consumption, economic performance, and pollutant discharge are integrated into a sequential decision-making process. Satisfactory degree is introduced to tackle the computationally challenging problem based on an interactive fuzzy approach. Operational decisions regarding water resources allocation, transportation mode selection, and pollutant discharge control would be achieved. Results reveal that the environmentally- or economically-aggressive strategies would be generated when a single goal for optimizing economic benefits or pollutant discharge. The multi-objective decisions are limited by the selected weights. However, the multi-level model would provide more comprehensive schemes due to its sequential consideration of the economic/environmental concerns. Findings from the multi-level model can facilitate (a) balancing the conflicts among different decision makers, (b) timing and siting for shale gas production, and (c) managing water resources for pollutant discharge control.
AbstractList •A multi-level model is developed for optimal design of the shale gas-water supply chains.•Economic and environmental performances of the supply chains are presented.•A comprehensive comparison among the single- and multi-level models is discussed.•The Marcellus shale is used to verify the application of the multi-level model.•Design and operational decisions can be provided for multiple decision makers. This study develops a multi-level programming model for planning the shale gas-water supply chains. A set of leader-follower-interactive objectives with emphases of water consumption, economic performance, and pollutant discharge are integrated into a sequential decision-making process. Satisfactory degree is introduced to tackle the computationally challenging problem based on an interactive fuzzy approach. Operational decisions regarding water resources allocation, transportation mode selection, and pollutant discharge control would be achieved. Results reveal that the environmentally- or economically-aggressive strategies would be generated when a single goal for optimizing economic benefits or pollutant discharge. The multi-objective decisions are limited by the selected weights. However, the multi-level model would provide more comprehensive schemes due to its sequential consideration of the economic/environmental concerns. Findings from the multi-level model can facilitate (a) balancing the conflicts among different decision makers, (b) timing and siting for shale gas production, and (c) managing water resources for pollutant discharge control.
ArticleNumber 106761
Author Li, Jing
Cheng, Xi
He, Li
Chen, Yizhong
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  givenname: Xi
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  email: lijingb10@hebtu.edu.cn, 2019075@hebut.edu.cn
  organization: Hebei Key Laboratory of Environmental Change and Ecological Construction, College of Resource and Environment Science, Hebei Normal University, Shijiazhuang, 050024, China
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  givenname: Li
  surname: He
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  organization: State Key Laboratory of Hydraulic Engineering Simulation and Safety, Tianjin University, Tianjin, 300072, China
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CitedBy_id crossref_primary_10_1016_j_jhydrol_2022_128970
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Keywords Water consumption
Pollutant discharge
Satisfactory degree
Multi-level preprograming
Shale gas
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Snippet •A multi-level model is developed for optimal design of the shale gas-water supply chains.•Economic and environmental performances of the supply chains are...
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SubjectTerms Multi-level preprograming
Pollutant discharge
Satisfactory degree
Shale gas
Water consumption
Title A multi-level programming for shale gas-water supply chains accounting for tradeoffs between economic and environmental concerns
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