Globally optimal simultaneous heat exchanger network synthesis and basic heat exchanger design

Author:

Oliva Diego G.1ORCID,Nahes Andre L. M.2,Lemos Julia C.2,Costa André L. H.2ORCID,Bagajewicz Miguel J.34ORCID

Affiliation:

1. INGAR Institute for Process Design and Development INGAR, UTN‐CONICET Santa Fe Argentina

2. Institute of Chemistry Rio de Janeiro State University (UERJ) Rio de Janeiro Brazil

3. School of Chemistry Federal University of Rio de Janeiro, (UERJ) Rio de Janeiro Brazil

4. School of Sustainable, Chemical, Biological, and Materials Engineering University of Oklahoma Norman Oklahoma USA

Abstract

AbstractIn this article, we extend a previously developed globally optimal enumeration methodology for the synthesis of heat exchanger networks (HENs) to include the basic design of heat exchangers (HEXs). The method addresses together all trade‐offs between network structure, energy usage, and the basic design of the HEXs. Without loss of generality, we focus on shell‐and‐tube HEXs. Unlike previous approaches, such as Pinch Analysis, Metaheuristic methods, or Mathematical Programming, our procedure guarantees global optimality. The procedure is not iterative and does not present any convergence challenges. We enumerate HEN structures using a mixed‐integer linear programming method and we use Set Trimming followed by sorting for the HEX design. In addition, because some network structures are incompatible with single shell exchangers, we use multiple shell exchangers in series. The comparison of the results of the proposed approach with solutions obtained using two alternative methods extracted from the literature indicates that considerable cost reductions may be obtained.

Publisher

Wiley

Reference62 articles.

1. A Critical Review and Annotated Bibliography for Heat Exchanger Network Synthesis in the 20th Century

2. Heat exchanger network synthesis considering detailed thermal-hydraulic performance: Methods and perspectives

3. Interfacing heat exchanger network synthesis and detailed heat exchanger design;Polley GT;Chem Eng Res Des,1991

4. An advanced Grid Diagram for heat exchanger network retrofit with detailed plate heat exchanger design

5. Pressure drop considerations in the retrofit of heat exchanger networks;Polley GT;Chem Eng Res Des,1990

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