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research article

Heat recovery networks synthesis of large-scale industrial sites: Heat load distribution problem with virtual process subsystems

Pouransari, Nasibeh  
•
Maréchal, Francois
2015
Energy Conversion and Management

This paper presents a targeting strategy to design a heat recovery network for an industrial plant by dividing the system into subsystems while considering the heat transfer opportunities between them. The methodology is based on a sequential approach. The heat recovery opportunity between process units and the optimal flow rates of utilities are first identified using a Mixed Integer Linear Programming (MILP) model. The site is then divided into a number of subsystems where the overall interaction is resumed by a pair of virtual hot and cold stream per subsystem which is reconstructed by solving the heat cascade inside each subsystem. The Heat Load Distribution (HLD) problem is then solved between those packed subsystems in a sequential procedure where each time one of the subsystems is unpacked by switching from the virtual stream pair back into the original ones. The main advantages are to min- imize the number of connections between process subsystems, to alleviate the computational complexity of the HLD problem and to generate a feasible network which is compatible with the minimum energy consumption objective. The application of the proposed methodology is illustrated through a number of case studies, discussed and compared with the relevant results from the literature.

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Type
research article
DOI
10.1016/j.enconman.2014.11.006
Web of Science ID

WOS:000346552200093

Author(s)
Pouransari, Nasibeh  
Maréchal, Francois
Date Issued

2015

Publisher

Elsevier

Published in
Energy Conversion and Management
Volume

89

Start page

985

End page

1000

Subjects

Heat Exchanger Network (HEN)

•

Heat Load Distribution (HLD)

•

Mixed Integer Linear Programming (MILP)

•

Large-scale industry

•

Heat Integration

•

Plant layout

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
SCI-STI-FM  
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/111351
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