DocumentCode
2599635
Title
Analysis of hydrogen and oxygen hybrid cycle
Author
Hong, Xu ; Rulin, Jing ; Weidou, Ni ; Xiaodan, Guo
Author_Institution
Key Lab. of Condition Monitoring & Control for Power Plant Equip. Minist. of Educ., North China Electr. Power Univ., Beijing, China
fYear
2009
fDate
6-7 April 2009
Firstpage
1
Lastpage
5
Abstract
Based on the analysis of the typical combined cycles the hydrogen and oxygen hybrid cycle was carried out. From the result of the calculation some conclusions can be drawn that the efficiency of the Hydrogen and Oxygen cycle increases with the increases of the temperature and the maximum pressure of the cycle. The efficiency reached 62% when the temperature is at 1700degC and the pressure is at 30 MPa. There is a good ratio in the middle pressure gas turbine and a fine ratio distribution between the middle pressure gas turbine and high pressure gas turbine. When the temperature is 1500degC, the maximum pressure is at 30 MPa and the ratio is 8.0 the efficiency can achieve 60.5%, at the same time the fine ratio distribution is at the point of 1.43. The fine ratio distribution decreases with the total ratio of the gas turbine in the sub-critical area while it decreases at first and increases latterly in the supercritical domain there is a transition point at total ratio value of 30. The hydrogen and oxygen hybrid cycle system can obtain a higher efficiency by using optimization method on the recuperation and reheat systems.
Keywords
gas turbines; hydrogen economy; thermal engineering; gas turbine; hybrid cycle; hydrogen energy; optimization method; renewable energy; temperature 1500 degC; thermal engineering; Chemicals; Combustion; Condition monitoring; Fossil fuels; Heat recovery; Hydraulic turbines; Hydrogen; Laboratories; Power generation; Temperature; Hybrid Cycle; Hydrogen energy; Renewable energy; Thermal engineering; Turbine; gas turbine;
fLanguage
English
Publisher
ieee
Conference_Titel
Sustainable Power Generation and Supply, 2009. SUPERGEN '09. International Conference on
Conference_Location
Nanjing
Print_ISBN
978-1-4244-4934-7
Type
conf
DOI
10.1109/SUPERGEN.2009.5348033
Filename
5348033
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