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Optimization of Start-Up of a Fully Fired Combined-Cycle Plant with GT13E2 Gas Turbine
The principles of starting up the steam power unit of the Hrazdan-5 fully fired combined-cycle power unit (Hrazdan, Armenia) are considered. This plant has neither a bypass stack for gas discharge from the gas turbine nor an external steam source for the steam-turbine gland and prestarting deaeration. Emphasis is placed on the differences between the start-up procedure followed at the plant and the procedure provided by the RD 34.25.512 Standard Instructions on Startup from Various Thermal States and Shutdown of 300-MW Boiler-Turbine Sets with K-300-240 LMZ Turbine.
Optimization of Start-Up of a Fully Fired Combined-Cycle Plant with GT13E2 Gas Turbine
The principles of starting up the steam power unit of the Hrazdan-5 fully fired combined-cycle power unit (Hrazdan, Armenia) are considered. This plant has neither a bypass stack for gas discharge from the gas turbine nor an external steam source for the steam-turbine gland and prestarting deaeration. Emphasis is placed on the differences between the start-up procedure followed at the plant and the procedure provided by the RD 34.25.512 Standard Instructions on Startup from Various Thermal States and Shutdown of 300-MW Boiler-Turbine Sets with K-300-240 LMZ Turbine.
Optimization of Start-Up of a Fully Fired Combined-Cycle Plant with GT13E2 Gas Turbine
Anisimov, A. G. (author) / Klub, M. V. (author) / Sargsyan, K. B. (author) / Eritsyan, S. Kh. (author) / Petrosyan, G. S. (author) / Avtandilyan, A. V. (author) / Gevorgyan, A. R. (author)
2016
Article (Journal)
Electronic Resource
English
BKL:
56.30
Wasserbau
/
56.30$jWasserbau
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