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Upgrading and Life Extension Technologies for Geothermal Steam Turbines

Akira Sakuma, Toru Takahashi, Osamu Watanabe and Masataka Fukuda

Key words
Power generation, Geothermal steam turbine
Conference
World Geothermal Congress
Year
2000
Session
Power Generation
Language
English
Paper number
R0704

Full text

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Abstract

In some aging geothermal steam turbines, the increased steam consumption is found out due to time deterioration of the turbine parts, mainly caused by erosion, corrosion damages or deposits of impurities on the steam paths. Furthermore, the heavy damage due to stress corrosion cracking or corrosive fatigue damage, etc. are observed on rotors, blades and other parts and components. On the other hand, in other units, the turbine output capacity decreases according to aging decrease of geothermal well pressure, that is, inlet steam pressure of turbine. Under these circumstances, it is required that upgrading and life extension for reliability and performance on geothermal steam turbines, particularly the existing ones. And as the effective utilization of geothermal energy is important from the point of view of decreasing carbon dioxide on environment problem, these technologies can, needless to say, be applied to new geothermal projects a well as the existing ones. This paper describes development and application of advanced steam path design such as nozzle and blade for improving reliability and performance, and of advanced rotor design and material including overlay coating technology for improving reliability and extending life. And also it describes uprating of the existing units in opposition to aged decreasing in the inlet steam pressure.

Copyright 2000, International Geothermal Association. Readers who download papers from this site should honour the copyright of the original authors, and may not copy or distribute the work further without the permission of the original publisher.

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