a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis

A novel energy targeting framework is proposed to analyse an urban-industrial symbiosis (UIS) system by incorporating Heat Integration, Power Integration, heat storage, power storage, renewable energy sources, and waste heat cogeneration. A trigeneration power plant is incorporated into the framewor...

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Main Authors: Yong, W. N., Liew, P. Y., Woon, K. S., Wan Alwi, S. R., Klemeš, J. J.
Format: Article
Published: Elsevier Ltd. 2021
Subjects:
Online Access:http://eprints.utm.my/id/eprint/94535/
http://dx.doi.org/10.1016/j.rser.2021.111482
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Institution: Universiti Teknologi Malaysia
id my.utm.94535
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spelling my.utm.945352022-03-31T14:55:30Z http://eprints.utm.my/id/eprint/94535/ a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis Yong, W. N. Liew, P. Y. Woon, K. S. Wan Alwi, S. R. Klemeš, J. J. TP Chemical technology A novel energy targeting framework is proposed to analyse an urban-industrial symbiosis (UIS) system by incorporating Heat Integration, Power Integration, heat storage, power storage, renewable energy sources, and waste heat cogeneration. A trigeneration power plant is incorporated into the framework to connect the multi-energy microgrid. The trigeneration system provides high operational flexibility of the UIS through the manipulation of system outputs. This framework can handle multiple heating and cooling grids, which have different temperatures. An illustrative case study is also developed to demonstrate the proposed Pinch-based multi-energy targeting framework. The energy requirement of the heating-cooling-power microgrid in the UIS is successfully targeted. With the flexible trigeneration load estimated based on the thermal energy requirement of the UIS, the case study shows 34% of energy-saving opportunities and a payback period within a year. The case study suggests that the constant load operation can reduce the design capacity of the trigeneration system; however, the energy loss in the energy storage increases the utility cost and causes the system less attractive. Elsevier Ltd. 2021 Article PeerReviewed Yong, W. N. and Liew, P. Y. and Woon, K. S. and Wan Alwi, S. R. and Klemeš, J. J. (2021) a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis. Renewable and Sustainable Energy Reviews, 150 . ISSN 1364-0321 http://dx.doi.org/10.1016/j.rser.2021.111482 DOI: 10.1016/j.rser.2021.111482
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Yong, W. N.
Liew, P. Y.
Woon, K. S.
Wan Alwi, S. R.
Klemeš, J. J.
a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis
description A novel energy targeting framework is proposed to analyse an urban-industrial symbiosis (UIS) system by incorporating Heat Integration, Power Integration, heat storage, power storage, renewable energy sources, and waste heat cogeneration. A trigeneration power plant is incorporated into the framework to connect the multi-energy microgrid. The trigeneration system provides high operational flexibility of the UIS through the manipulation of system outputs. This framework can handle multiple heating and cooling grids, which have different temperatures. An illustrative case study is also developed to demonstrate the proposed Pinch-based multi-energy targeting framework. The energy requirement of the heating-cooling-power microgrid in the UIS is successfully targeted. With the flexible trigeneration load estimated based on the thermal energy requirement of the UIS, the case study shows 34% of energy-saving opportunities and a payback period within a year. The case study suggests that the constant load operation can reduce the design capacity of the trigeneration system; however, the energy loss in the energy storage increases the utility cost and causes the system less attractive.
format Article
author Yong, W. N.
Liew, P. Y.
Woon, K. S.
Wan Alwi, S. R.
Klemeš, J. J.
author_facet Yong, W. N.
Liew, P. Y.
Woon, K. S.
Wan Alwi, S. R.
Klemeš, J. J.
author_sort Yong, W. N.
title a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis
title_short a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis
title_full a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis
title_fullStr a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis
title_full_unstemmed a pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis
title_sort pinch-based multi-energy targeting framework for combined chilling heating power microgrid of urban-industrial symbiosis
publisher Elsevier Ltd.
publishDate 2021
url http://eprints.utm.my/id/eprint/94535/
http://dx.doi.org/10.1016/j.rser.2021.111482
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