Development of an Integrated Technique for Energy and Property Integration in Batch Processes

This paper presented a new technique for targeting minimum total annual cost of property-based heat integrated resource conservation networks (HIRCNs) for batch processes. This new technique takes in consideration of simultaneously heat and property integration with an objective to minimize the usag...

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Main Authors: Yeo, W., Tan, Y., Samyudia, Yudi
Format: Journal Article
Published: American Chemical Society 2018
Online Access:http://hdl.handle.net/20.500.11937/74588
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author Yeo, W.
Tan, Y.
Samyudia, Yudi
author_facet Yeo, W.
Tan, Y.
Samyudia, Yudi
author_sort Yeo, W.
building Curtin Institutional Repository
collection Online Access
description This paper presented a new technique for targeting minimum total annual cost of property-based heat integrated resource conservation networks (HIRCNs) for batch processes. This new technique takes in consideration of simultaneously heat and property integration with an objective to minimize the usage of fresh resources and energy utilities prior to the detailed network design. It is formulated as a mixed integer nonlinear programming (MINLP) mathematical model for HIRCNs which consists of property-based resource conservation network (RCN) and heat exchanger network (HEN) models. The property-based RCN model is formulated based on a supertargeting approach while the HEN model is developed via automated targeting approach. Two case studies were used to demonstrate the proposed model's applicability and advantages. Moreover, comparisons of the results for the proposed model for HIRCN with storage system and without storage system as well as sequential targeting approach are also addressed.
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format Journal Article
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institution Curtin University Malaysia
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last_indexed 2025-11-14T11:01:32Z
publishDate 2018
publisher American Chemical Society
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spelling curtin-20.500.11937-745882019-03-25T01:31:28Z Development of an Integrated Technique for Energy and Property Integration in Batch Processes Yeo, W. Tan, Y. Samyudia, Yudi This paper presented a new technique for targeting minimum total annual cost of property-based heat integrated resource conservation networks (HIRCNs) for batch processes. This new technique takes in consideration of simultaneously heat and property integration with an objective to minimize the usage of fresh resources and energy utilities prior to the detailed network design. It is formulated as a mixed integer nonlinear programming (MINLP) mathematical model for HIRCNs which consists of property-based resource conservation network (RCN) and heat exchanger network (HEN) models. The property-based RCN model is formulated based on a supertargeting approach while the HEN model is developed via automated targeting approach. Two case studies were used to demonstrate the proposed model's applicability and advantages. Moreover, comparisons of the results for the proposed model for HIRCN with storage system and without storage system as well as sequential targeting approach are also addressed. 2018 Journal Article http://hdl.handle.net/20.500.11937/74588 10.1021/acs.iecr.7b03803 American Chemical Society restricted
spellingShingle Yeo, W.
Tan, Y.
Samyudia, Yudi
Development of an Integrated Technique for Energy and Property Integration in Batch Processes
title Development of an Integrated Technique for Energy and Property Integration in Batch Processes
title_full Development of an Integrated Technique for Energy and Property Integration in Batch Processes
title_fullStr Development of an Integrated Technique for Energy and Property Integration in Batch Processes
title_full_unstemmed Development of an Integrated Technique for Energy and Property Integration in Batch Processes
title_short Development of an Integrated Technique for Energy and Property Integration in Batch Processes
title_sort development of an integrated technique for energy and property integration in batch processes
url http://hdl.handle.net/20.500.11937/74588