Performance of a square, cross-corrugated, polymer film, compact, heat-exchanger with potential application in fuel cells
This paper describes an experimental investigation of the performance characteristics of a novel, cross-corrugated, polymer film, compact, heat-exchanger (PFCHE) made from poly ether ether ketone (PEEK). The aim is to develop Jh and f correlations over a range of Reynolds numbers under laminar condi...
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Published in | Journal of power sources Vol. 140; no. 2; pp. 304 - 310 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Lausanne
Elsevier B.V
02.02.2005
Elsevier Sequoia |
Subjects | |
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Abstract | This paper describes an experimental investigation of the performance characteristics of a novel, cross-corrugated, polymer film, compact, heat-exchanger (PFCHE) made from poly ether ether ketone (PEEK). The aim is to develop
Jh and
f correlations over a range of Reynolds numbers under laminar conditions to be used in alternative heat-exchanger designs for potential applications in the fuel-cell industry. The incentive for adopting these designs is the huge weight, energy and cost savings involved. Design correlations for square units are key tools in obtaining alternative designs for applications that are presently monopolized by metallic heat-exchangers. The design correlations are establised and then used to perform case studies in selected applications in the fuel-cell industry to suit the fluids and the configuration. |
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AbstractList | This paper describes an experimental investigation of the performance characteristics of a novel, cross-corrugated, polymer film, compact, heat-exchanger (PFCHE) made from poly ether ether ketone (PEEK). The aim is to develop Jh and f correlations over a range of Reynolds numbers under laminar conditions to be used in alternative heat-exchanger designs for potential applications in the fuel-cell industry. The incentive for adopting these designs is the huge weight, energy and cost savings involved. Design correlations for square units are key tools in obtaining alternative designs for applications that are presently monopolized by metallic heat-exchangers. The design correlations are establised and then used to perform case studies in selected applications in the fuel-cell industry to suit the fluids and the configuration. This paper describes an experimental investigation of the performance characteristics of a novel, cross-corrugated, polymer film, compact, heat-exchanger (PFCHE) made from poly ether ether ketone (PEEK). The aim is to develop Jh and f correlations over a range of Reynolds numbers under laminar conditions to be used in alternative heat-exchanger designs for potential applications in the fuel-cell industry. The incentive for adopting these designs is the huge weight, energy and cost savings involved. Design correlations for square units are key tools in obtaining alternative designs for applications that are presently monopolized by metallic heat-exchangers. The design correlations are establised and then used to perform case studies in selected applications in the fuel-cell industry to suit the fluids and the configuration. The performance characteristics of a cross-corrugated, polymer film, compact, heat-exchanger manufactured of poly ether ether ketone were documented. Colburn factor and friction factor correlations were developed over a range of Reynolds numbers under laminar conditions for use in alternative heat exchanger designs for potential fuel cell applications. Case studies based on the correlations indicate that, in general, the novel heat exchanger designs weigh less than 25% of conventional metallic units. Pressure drop savings surpass 75 and 40% for stainless steel and aluminum units, respectively. |
Author | Zaheed, L. Jachuck, R.J.J. |
Author_xml | – sequence: 1 givenname: L. surname: Zaheed fullname: Zaheed, L. email: zaheed@pd.jaring.my organization: School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, Seri Ampangan, 14300 Nibong Tebal, Seberang Perai Selatan, Pulau Pinang, Malaysia – sequence: 2 givenname: R.J.J. surname: Jachuck fullname: Jachuck, R.J.J. email: rjachuck@clarkson.edu organization: Process Intensification and Clean Technology (PICT) Group, Department of Chemical Engineering, P.O. Box: 5705, Clarkson University, Potsdam, NY, Zip-13699, USA |
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Keywords | Process intensification Polymer compact heat-exchanger Poly ether ether ketone Fuel cells Heat-transfer Costs Secondary cell Experimental study Case study Heat exchanger Performance Fuel cell Heat transfer |
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References | M.H. Melendo, Effect of Prandtl Number on the Heat Transfer Characteristics of PFCHE, MEng Dissertation, Department of Chemical and Process Engineering, University of Newcastle Upon Tyne, UK, 1992. R.J.J. Jachuck, C. Ramshaw, Process Intensification: the Acquisition of Design Data for Compact Polymer Heat Exchangers, Department of Chemical and Process Engineering, University of Newcastle Upon Tyne, UK, 1992. Kays, London (bib3) 1984 L. Zaheed, Cross-Corrugated Polymer Film Compact Heat Exchanger, PhD Thesis, School of Chemical Engineering and Advanced Materials, University of Newcastle Upon Tyne, UK, 2003. |
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Snippet | This paper describes an experimental investigation of the performance characteristics of a novel, cross-corrugated, polymer film, compact, heat-exchanger... The performance characteristics of a cross-corrugated, polymer film, compact, heat-exchanger manufactured of poly ether ether ketone were documented. Colburn... |
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SubjectTerms | Applied sciences Devices using thermal energy Direct energy conversion and energy accumulation Electrical engineering. Electrical power engineering Electrical power engineering Electrochemical conversion: primary and secondary batteries, fuel cells Energy Energy. Thermal use of fuels Equipments for energy generation and conversion: thermal, electrical, mechanical energy, etc Exact sciences and technology Fuel cells Heat exchangers (included heat transformers, condensers, cooling towers) Heat-transfer Poly ether ether ketone Polymer compact heat-exchanger Process intensification |
Title | Performance of a square, cross-corrugated, polymer film, compact, heat-exchanger with potential application in fuel cells |
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