Turbine Alignment (I) : Case Study in th Electronic Power Plant Application

발전설비의 터빈 축정력 (I) : 발전소 적용 사례

  • 황철호 (한국표준과학연구원 음향진동연구실) ;
  • 김정태 (한국표준과학연구원 음향진동연구실(현 홍익대학교 기계공학과)) ;
  • 전오성 (한국표준과학연구원 음향진동연구실) ;
  • 이병준 (한국전력공사) ;
  • 이현 (한국전력공사)
  • Published : 1994.03.01

Abstract

When a shaft is misaligned, a high level of vibration is experienced. As a consequence, the system performance could be low with high level of noise generated. Even, a catastrophic damage of the rotating machinery may happen in the worst situation. The vibration caused by the shaft misalignment is not cured unless a correct alignment of the shaft is investigated. In this paper, a step by step approach for the turbine alignment has been demonstrated. It includes measurement tips of the coupling rim and face, calculation procedure of the bearing level, and the relevant values of the addition and subtration for shims in order to align the shaft level correctly. Then, as an application of the shaft alignment, the turbine system at the Pyung Tek focile electric power plant has been examined. Since the real system consists of high pressure, low pressure turbines and the generator, detailed alignment prolcedures of the multi stage shaft system has been demonstrated.

Keywords

References

  1. Proc. of the Ninth Turbomachinery Symposium Benchmark Gauges for Hot Alignment of Turbomachinery Essinger,J.N.
  2. Proc. of the Turbomachinery System Optical Alignment of Turbomachinery Campbell,A.J.
  3. Proc. of the Ninth Turbomahery Symposium Alignment Using Water Stands and Eddy Current Proximity Probes Jackson,C.
  4. Sound and Vibration v.27 no.5 Shaft Alignment An Overview Xu,M.
  5. 한국전력공사 진동세미나 교제 Alignment 상태가 진동에 미치는 영향과 대책 이병준
  6. 한전연구보고서 제81-1 터빈 얼라인먼트 테이블: 개발과 응용 최열
  7. 한국소음진동공학회지 v.4 no.1 발전설비의 터빈 축정렬 (Ⅱ): 자동화를 위한 전산프로그램 개발 황철호;김정태;전오성;이현;이병준