Advancing Industrial Process Electrification and Heat Pump Integration with New Exergy Pinch Analysis Targeting Techniques

Author:

Walmsley Timothy Gordon1ORCID,Lincoln Benjamin James1ORCID,Padullés Roger2ORCID,Cleland Donald John3

Affiliation:

1. Ahuora—Centre for Smart Energy Systems, School of Engineering, University of Waikato, Hamilton 3240, New Zealand

2. Department of Civil and Mechanical Engineering, Technical University of Denmark, Nils Koppels Allé, 2800 Kgs. Lyngby, Denmark

3. School of Food Technology and Natural Sciences, Massey University, Palmerston North 4474, New Zealand

Abstract

The process integration and electrification concept has significant potential to support the industrial transition to low- and net-zero-carbon process heating. This increasingly essential concept requires an expanded set of process analysis tools to fully comprehend the interplay of heat recovery and process electrification (e.g., heat pumping). In this paper, new Exergy Pinch Analysis tools and methods are proposed that can set lower bound work targets by acutely balancing process heat recovery and heat pumping. As part of the analysis, net energy and exergy load curves enable visualization of energy and exergy surpluses and deficits. As extensions to the grand composite curve in conventional Pinch Analysis, these curves enable examination of different pocket-cutting strategies, revealing their distinct impacts on heat, exergy, and work targets. Demonstrated via case studies on a spray dryer and an evaporator, the exergy analysis targets net shaft-work correctly. In the evaporator case study, the analysis points to the heat recovery pockets playing an essential role in reducing the work target by 25.7%. The findings offer substantial potential for improved industrial energy management, providing a robust framework for engineers to enhance industrial process and energy sustainability.

Funder

New Zealand Ministry of Business, Innovation and Employment

Publisher

MDPI AG

Reference23 articles.

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3. Total Site Targets for Fuel, Co-Generation, Emissions, and Cooling;Dhole;Comput. Chem. Eng.,1993

4. Total Site Analysis (TSA) and Exergy Analysis for Shaft Work and Associated Steam and Electricity Savings in Low Temperature Processes in Industrial Clusters;Hackl;Chem. Eng. Trans,2012

5. Kotas, T.J. (2012). The Exergy Method of Thermal Plant Analysis, Paragon Publishing.

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