Phenomenon Examination on High Vibration of NG Boiler in 320MW Thermal Power Plant

320MW 화력발전소 가스 보일러 고 진동 현상 규명

  • 김연환 (한전 전력연구원 수화력발전연구소) ;
  • 배용채 (한전 전력연구원 수화력발전연구소) ;
  • 이현 (한전 전력연구원 수화력발전연구소) ;
  • 김희수 (한전 전력연구원 수화력발전연구소) ;
  • 이두영 (한전 전력연구원 수화력발전연구소)
  • Published : 2006.05.01

Abstract

Large-amplitude, combustion-induced oscillations are observed in most systems involving continuous flow, such as aeroengine afterburners, gas boilers and rocket motors. Strong furnace vibration is typically characterized by the presence of well developed standing waves in the furnace, generating high pressure pulsation and causing structural vibration of the furnace walls. 320MW NG boilers have been experienced high vibration frequently since reconstruction works. Excessive furnace vibration was encountered when a burner air rate is suddenly reduced during load zone changed from 270MW to 300MW. An investigation showed that the primary cause of the vibration was induced by combustion low air flow rate. This paper describes phenomenon examination on strong furnace vibration due to the change of boiler operating conditions.

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