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Mathematical model to optimize design of integrated utility supply network and future global hydrogen supply network under demand uncertainty SCIE SCOPUS

Title
Mathematical model to optimize design of integrated utility supply network and future global hydrogen supply network under demand uncertainty
Authors
Hwangbo, S.Lee, I.-B.Han, J.
Date Issued
2017-06
Publisher
Elsevier Ltd
Abstract
Existing energy-efficient management and development of alternative energy infrastructure are the most important issues in modern industry. The former has been mainly studied in terms of optimal design of utility supply network. The latter has been consistently researched in the field of strategic planning of future global hydrogen supply network. In this work, we develop an integrated network model of huge chemical industrial complexes to combine various utility supply networks with a global hydrogen supply network. To construct an integrated network model, the steam methane reforming process is used as a linkage between the two networks. The developed model is a two-stage stochastic mixed integer linear programming that optimizes total cost and also considers demand uncertainty about water, electricity, steam, and hydrogen that are consumed in each network. Finally, a case study in South Korea is conducted to validate the proposed model; it suggests reasonable scenarios to decision makers. ? 2017 Elsevier Ltd
URI
https://oasis.postech.ac.kr/handle/2014.oak/94637
DOI
10.1016/j.apenergy.2017.03.041
ISSN
0306-2619
Article Type
Article
Citation
Applied Energy, vol. 195, page. 257 - 267, 2017-06
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이인범LEE, IN BEUM
Dept. of Chemical Enginrg
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