DocumentCode :
831964
Title :
Power generation efficiency improvement through auxiliary system modifications
Author :
Huang, Zhengyu ; Edwards, Robert M.
Author_Institution :
Thermoflow Inc., Sudbury, MA, USA
Volume :
18
Issue :
4
fYear :
2003
Firstpage :
525
Lastpage :
529
Abstract :
Thermal performance analyses have been performed for some proposed modifications in the Three Mile Island Nuclear Power Plant auxiliary systems, including: 1) auxiliary-condenser circulating-water (ACCW) flow reduction; 2) ACCW discharge diversion to the main condenser; and 3) feedwater heater drain recycling. Analysis shows that the secondary-system thermal efficiency can be improved by reducing circulating-water (CW) flow to the auxiliary condensers at high CW temperatures. This improvement decreases as CW temperature decreases. No benefit can be obtained from ACCW flow reduction at low CW temperatures. It is also shown that electricity output can be increased by diverting ACCW discharge to the main condenser instead of directly to cooling towers as in the current practice. This increase, though also varying with CW temperature, is consistently positive within the considered CW temperature range. For feedwater heater drain recycling, thermal efficiency improvement is significant for the two lowest-pressure stages.
Keywords :
condensers (steam plant); fission reactor cooling; nuclear power stations; thermal analysis; Three Mile Island Nuclear Power Plant auxiliary systems; auxiliary system modifications; auxiliary-condenser circulating-water discharge diversion; auxiliary-condenser circulating-water flow reduction; circulating-water flow reduction; electricity output; feedwater heater drain recycling; main condenser; power generation economics; power generation efficiency improvement; secondary-system thermal efficiency; thermal performance analyses; Cooling; Design optimization; MATLAB; Nuclear power generation; Performance analysis; Poles and towers; Power generation; Power generation economics; Recycling; Temperature distribution;
fLanguage :
English
Journal_Title :
Energy Conversion, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8969
Type :
jour
DOI :
10.1109/TEC.2003.816607
Filename :
1247778
Link To Document :
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