Extending the erosion-corrosion service life of the tube system of heat-recovery boilers used as part of combined-cycle plants

Author:

Tomarov G. V.,Mikhailov A. V.,Velichko E. V.,Budanov V. A.

Publisher

Pleiades Publishing Ltd

Subject

Energy Engineering and Power Technology,Nuclear Energy and Engineering

Reference10 articles.

1. S. E. Therkildsen, “Some Experience and Data from 18 Danish CHP Plants,” in Proceedings of the 14th International Conference on the Properties of Water and Steam, Kyoto, September, 2004 (Japan Inc., Kyoto, 2004), pp. 467–474.

2. M. Richard, “Flynn Combined Cycle Station,” in Replacement of Low Pressure Evaporator, Low Pressure Drum and High Pressure Steam Drum Internals Program. New York, 29 October, 2002 (Frank Lill & Son, Inc. Award, New York, 2002), pp. 13–15 ( http: www.nypa-gov/Trustees/2002 %2002minutes/02oct.pdf ).

3. C. Frederic, P. S. Jackson, et al., HRSN Inspection Planning Guide (Tetra Engineering Group, 2003).

4. W. Huijbregts, “The Influence of Chemical Composition of Carbon Steel on Erosion Corrosion in Wet Steam,” in Proceedings of Specialist’s Meeting on Corrosion Erosion of Steels in High Temperature Water and Wet Steam, Les Renardieres, 11–12 May, 1982, pp. 1–12.

5. G. V. Tomarov, Yu. V. Petrov, A. A. Shipkov, et al., “Making the Tube System’s Fitting Parts of the Low-Pressure Evaporators Used in the Heat-Recovery Boiler of Combined-Cycle Units More Resistant to Erosion-Corrosion Wear during Operation,” Teploenergetika, No. 2, 56–61 (2008) [Therm. Eng., No. 2 (2008)].

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