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Title Engineering Development of a Coal Fired High Performance Power Generating System
Creator Seery, D. J.; Sangiovanni, J. J.
Publisher Digitized by J. Willard Marriott Library, University of Utah
Date 1998
Spatial Coverage presented at Maui, Hawaii
Abstract United Technologies Research Center is heading up a team of seven research organizations to develop concepts and evaluate designs for a 300 MWe indirect fired combined cycle plant utilizing a 65% coal, 35% natural gas, fuel mix. The optimized design employs both radiative and convective air heaters to transfer the energy from coal combustion to the gas turbine working fluid. Because of present day materials limits, it is necessary to use a natural gas topping cycle to reach the appropriate turbine temperatures required for high efficiency. Our design for the high temperature advanced furnace (HTTAF) requires separating the air heater into a low temperature, dry ash convective section and a higher temperature, slagging ash radiant section. The major technical challenge of the program is in the development of the radiant air heater. Our approach is based on use of alloy materials protected b thick refractory coatings. The evolution of the design considerations will be presented. In addition to UTRC, the team includes Bechtel Corporation, ABB Combustion Engineering, Kraft Work Systems, Inc., PSI Technology, University of Dakota EERC, University of Utah/Reaction Engineering International and Fluor Daniel.
Type Text
Format application/pdf
Language eng
Rights This material may be protected by copyright. Permission required for use in any form. For further information please contact the American Flame Research Committee.
Conversion Specifications Original scanned with Canon EOS-1Ds Mark II, 16.7 megapixel digital camera and saved as 400 ppi uncompressed TIFF, 16 bit depth.
Scanning Technician Cliodhna Davis
ARK ark:/87278/s69026dx
Setname uu_afrc
ID 12131
Reference URL https://collections.lib.utah.edu/ark:/87278/s69026dx

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Title Page 3
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Setname uu_afrc
ID 12123
Reference URL https://collections.lib.utah.edu/ark:/87278/s69026dx/12123