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Analytical Modelling of Fuel Cells / by Andrei A. Kulikovsky.

By: Material type: TextTextLanguage: English Publication details: Amsterdam : Elsevier, 2010.Description: xv, 295 p. : illISBN:
  • 9780444535603
Subject(s): DDC classification:
  • 621.312429 KUL/A
Summary: In fuel cell research, the gap between fundamental electrochemical processes and the engineering of fuel cell systems is bridged by the physical modelling of fuel cells. This relatively new discipline aims to understand the basic transport and kinetic phenomena in a real cell and stack environment, paving the way for improved design and performance. The author brings his unique approach to the analytical modeling of fuel cells to this essential reference for energy technologists. Covers recent advances and analytical solutions to a range of problems faced by energy technologists, from catalyst layer performance to thermal stability Provides detailed graphs, charts and other tools (glossary, index) to maximize R&D output while minimizing costs and time spent on dead-end research Presents Kulikovsky’s signature approach (and the data to support it)―which uses "simplified" models based on idealized systems, basic geometries, and minimal assumptions―enabling qualitative understanding of the causes and effects of phenomena
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Holdings
Item type Current library Home library Call number Status Date due Barcode Item holds
Technical Reference Book Technical Reference Book Central Library, IIT Bhubaneswar Central Library, IIT Bhubaneswar 621.312429 KUL/A (Browse shelf(Opens below)) Available 6776
Total holds: 0

Includes Index.

In fuel cell research, the gap between fundamental electrochemical processes and the engineering of fuel cell systems is bridged by the physical modelling of fuel cells. This relatively new discipline aims to understand the basic transport and kinetic phenomena in a real cell and stack environment, paving the way for improved design and performance. The author brings his unique approach to the analytical modeling of fuel cells to this essential reference for energy technologists.
Covers recent advances and analytical solutions to a range of problems faced by energy technologists, from catalyst layer performance to thermal stability
Provides detailed graphs, charts and other tools (glossary, index) to maximize R&D output while minimizing costs and time spent on dead-end research
Presents Kulikovsky’s signature approach (and the data to support it)―which uses "simplified" models based on idealized systems, basic geometries, and minimal assumptions―enabling qualitative understanding of the causes and effects of phenomena

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