By Tadashi Tanuma
Advances in Steam generators for contemporary strength Plants offers an authoritative evaluation of steam turbine layout optimization, research and dimension, the improvement of steam turbine blades, and different serious elements, together with turbine retrofitting and steam generators for renewable strength plants.
As a truly huge share of the world’s electrical energy is presently generated in structures pushed by means of steam generators, (and will probably stay the case sooner or later) with steam generators working in fossil-fuel, cogeneration, mixed cycle, built-in gasification mixed cycle, geothermal, sun thermal, and nuclear crops internationally, this e-book presents a complete evaluate of the study and paintings that has been accomplished during the last decades.
- Presents an in-depth evaluate on steam turbine layout optimization, research, and measurement
- Written via a number of specialists within the area
- Provides an outline of turbine retrofitting and complex purposes in strength generation
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Additional resources for Advances in steam turbines for modern power plants
25 shows a system diagram of this type of combined cycle. HRSG is composed of three drums, that is, HP, IP, and LP drums, and of finned tube super heater, reheater, evaporator, and economizer sections. By application of this system, the GT exhaust gas temperature is reduced within HRSG, where exhaust gas energy is utilized to raise inlet temperature of the steam turbine. As a whole, this system brings thermal efficiency improvement. Fig. 26 shows a single-shaft type configuration, where the gas turbine, steam turbine, and generator are in line.
5 indicates examples of turbine types and the last-stage blade selection while considering the exhaust loss.
In this type of combined cycle, thermal efficiency of combined cycle is calculated by the following formula. Heat and energy flow is depicted in Fig. 23 for combined cycle plant and USC steam power plant. 23 Heat and energy flow of a combined cycle plant and a steam power plant. (A) 1500 C combined cycle plant and (B) USC steam power plant. 15) where ηt is the thermal efficiency of the combined cycle, ηc is the thermal efficiency of gas turbine cycle, and ηs is the thermal efficiency of steam turbine cycle.
Advances in steam turbines for modern power plants by Tadashi Tanuma