DocumentCode :
2110185
Title :
Notice of Retraction
A Methodology of Thermodynamic Performance Calculating for Turbo-Compressor Set in Different Indraft and Exhaust Pipe
Author :
Long-bo Liu ; Jia-shan Jin ; Rui Wang
Author_Institution :
Coll. of Naval Archit. & Power, Naval Univ. of Eng., Wuhan, China
fYear :
2010
fDate :
28-31 March 2010
Firstpage :
1
Lastpage :
4
Abstract :
Notice of Retraction

After careful and considered review of the content of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE´s Publication Principles.

We hereby retract the content of this paper. Reasonable effort should be made to remove all past references to this paper.

The presenting author of this paper has the option to appeal this decision by contacting TPII@ieee.org.

Recommending a simple method to calculate thermodynamic performance in multi-working state of marine turbo-compressor set configured in different indraft and exhaust pipe. By establishing the relationships of set´s performance, such as compressing ratio, expanding ratio and efficiency of each item with the set´s rotate speed depending on the multi-working state performances of the set working in design indraft and exhaust pipe, using a set of pressure balance function of the set to iteratively calculate pressure balance point of the set working in idiographic pipe as the set´s rotate speed is independent variable, the method has avoided some low efficiency calculating steps such as reading performance chart frequently. By a real calculation using the method, which the indraft and exhaust pipe are not very differ to design pipe, the feasibility of the method and the veracity of calculating result has been proved.
Keywords :
compressors; exhaust systems; pipes; steam plants; thermodynamics; compressing ratio; exhaust pipe; expanding ratio; indraft pipe; marine turbo-compressor set; pressure balance function; steam power plant; thermodynamic performance calculation; Boilers; Equations; Flue gases; Fluid flow; Pipelines; Power generation; Temperature; Thermal resistance; Thermodynamics; Turbines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power and Energy Engineering Conference (APPEEC), 2010 Asia-Pacific
Conference_Location :
Chengdu
Print_ISBN :
978-1-4244-4812-8
Type :
conf
DOI :
10.1109/APPEEC.2010.5449110
Filename :
5449110
Link To Document :
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