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MINLP Optimization Algorithm for the Synthesis of Heat and Work Exchange Networks

Onishi, Viviani C.; Ravagnani, Mauro A.S.S.; Caballero, Jos� A.

Authors

Viviani C. Onishi

Mauro A.S.S. Ravagnani

Jos� A. Caballero



Contributors

Ji?� Jarom�r Kleme�
Editor

Petar Sabev Varbanov
Editor

Peng Yen Liew
Editor

Abstract

This paper introduces a new optimization model for the simultaneous synthesis of heat and work exchange networks. The work integration is performed in the work exchange network (WEN), while the heat integration is carried out in the heat exchanger network (HEN). In the WEN synthesis, streams at high-pressure (HP) and low-pressure (LP) are subjected to pressure manipulation stages, via turbines and compressors running on common shafts and stand-alone equipment. The model allows the use of several units of single-shaft-turbine-compressor (SSTC), as well as helper motors and generators to respond to any shortage and/or excess of energy, respectively, in the SSTC axes. The heat integration of the streams occurs in the HEN between each WEN stage. Thus, as the inlet and outlet streams temperatures in the HEN are dependent of the WEN design, they must be considered as optimization variables. The proposed multi-stage superstructure is formulated in mixed-integer nonlinear programming (MINLP), in order to minimize the total annualized cost composed by capital and operational expenses. A case study is conducted to verify the accuracy of the proposed approach. The results indicate that the heat integration between the WEN stages is essential to enhance the work integration, and to reduce the total cost of process due the need of a smaller amount of hot and cold utilities.

Citation

Onishi, V. C., Ravagnani, M. A., & Caballero, J. A. (2014). MINLP Optimization Algorithm for the Synthesis of Heat and Work Exchange Networks. In J. Jaromír Klemeš, P. Sabev Varbanov, & P. Yen Liew (Eds.), 24th European Symposium on Computer Aided Process Engineering (115-120). Elsevier. https://doi.org/10.1016/b978-0-444-63456-6.50020-x

Online Publication Date Jun 20, 2014
Publication Date 2014
Deposit Date Oct 9, 2020
Publisher Elsevier
Pages 115-120
Series Title Computer Aided Chemical Engineering
Series Number 33
Book Title 24th European Symposium on Computer Aided Process Engineering
ISBN 9780444634344
DOI https://doi.org/10.1016/b978-0-444-63456-6.50020-x
Public URL http://researchrepository.napier.ac.uk/Output/2690923