DOI QR코드

DOI QR Code

Analysis of Dynamic Behavior of a Heat Recovery Steam Generator and Steam Turbine System

열회수 증기발생기와 증기터빈 시스템의 동적 거동 해석

  • 박형준 (서울대학교 대학원 기계공학부) ;
  • 김동섭 (서울대학교 공과대학 기계항공공학부) ;
  • 노승탁 (서울대학교 공과대학 기계항공공학부)
  • Published : 2000.07.01

Abstract

The dynamic behavior of a single-pressure heat recovery steam generator and turbine system for the combined cycle power plant is simulated on the basis of one-dimensional unsteady governing equations. A water level control and a turbine power control are also included in the calculation routine. Transient response of the system to the variation of gas turbine exit condition is simulated and effect of the turbine power control on the system response is examined. In addition, the effect of the treatment of inertia terms(fluid inertia and thermal inertia of heat exchanger metal) on the simulated transient response is investigated.

Keywords

References

  1. 김영일, 김동섭, 김재환, 노승탁, 고상근, 1999, '열적 제한요소를 고려한 열회수 증기 발생기의 시동 특성 해석,' 대한기계학회 논문집 B, 제 23 권, 제 11호, pp. 1410-1417
  2. Kim, T. S., Lee, D. K. and Ro, S. T., 2000, 'Dynamic Behavior Analysis of a Heat Recovery Steam Generator during Start-up,' Int. J. of Energy Research, Vol. 24, pp. 137-149 https://doi.org/10.1002/(SICI)1099-114X(200002)24:2<137::AID-ER568>3.0.CO;2-0
  3. Kim, T. S., Lee, D. K. and Ro, S. T., 2000, 'Analysis of Thermal Stress Evolution in the Steam Drum during Start-up of a Heat Recovery Steam Generator,' Applied Thermal Engineering, Vol. 20, pp. 977-992 https://doi.org/10.1016/S1359-4311(99)00081-2
  4. 박근한, 김동섭, 노승탁, 2000, '증기발전 시스템의 과도상태 특성,' 대한기계학회 논문집 B(게재예정)
  5. 김상준, 노승탁, 1997, '다압 열회수 증기발생기의 설계 점 및 탈설계점 해석,' 대한기계학회 춘계학술대회 논문집 B, pp. 7-12
  6. Shin, J. Y., Kim, S. J. and Ro, S. T., 1998, 'Design and off-design performance analysis of heat recovery steam generators,' Proceedings of the 11 th International Symposium on Transport Phenomena, Hsinchu, Taiwan, Nov. 29-Dec. 3, pp. 156-161
  7. 김동섭, 노승탁, 1996, '단축가스터빈의 설계점 및 부분부하 성능해석 프로그램 개발,' 대한기계학회 논문집 B, 제 20 권, 제 8 호, pp. 996-1008
  8. PROPATH Group, 1997, PROPATH : A Program Package for Thermophysical Properties, Version 10.2, Kyushu University, Japan
  9. Collier, J. H. and Thome, J. R., 1994, Convective Boiling and Condensation, 3rd ed., Oxford University press
  10. ESCOA Corp., Fin Tube Manual, 1979, U.S.A
  11. Chen, J. C., 1966, 'Correlation for Boiling Heat Transfer to Saturated Fluids in Convective Flow,' Ind. Eng. Chem. Proc. Des. Dev., 5 https://doi.org/10.1021/i260019a023
  12. Haywood, R.W., 1991, Analysis of Engineering Cycles, 4th ed., Pergamon Press, U.K
  13. Horlock, J. H., 1966, Axial Flow Turbines, Butterworth
  14. Spencer, R. C., Cotton, K. C., and Canon, C. N., 1963, 'A Method for Predicting the Performance of Steam Turbine-Generators ... 16,500 kW and Larger,' Journal of Engineering for Power, Vol. 85, pp. 249-301
  15. Kim, J. H., Song, T. W., Kim, T. S. and Ro, S. T, 2000, 'Model Development and Simulation of Transient Behavior of Heavy Duty Gas Turbines,' ASME paper 2000-GT-548
  16. 김재환, 전용준, 김동섭, 노승탁, 1999, '소형 재생가스터빈의 동적 작동특성 해석,' 대한기계학회 논문집 B, 제 23 권, 제 6 호, pp. 769-777