27 August 2009 Research on the nonintrusive measurement of the turbine blade vibration
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Proceedings Volume 7375, ICEM 2008: International Conference on Experimental Mechanics 2008; 73750P (2009) https://doi.org/10.1117/12.839031
Event: International Conference on Experimental Mechanics 2008 and Seventh Asian Conference on Experimental Mechanics, 2008, Nanjing, China
Abstract
It's one of the important ways to monitor the change of dynamic characteristic of turbine blades for ensuring safety operation of turbine unit. Traditional measurement systems for monitoring blade vibration generally use strain gauges attached to the surface of turbine blades, each strain gauge gives out an analogue signal related to blade deformation, it's maximal defect is only a few blades could be monitored which are attached by strain gauge. But the noncontact vibration measurement will be discussed would solve this problem. This paper deals with noncontact vibration measurement on the rotor blades of turbine through experiments. In this paper, the noncontact vibration measurement - Tip Timing Measurement will be presented, and will be improved. The statistics and DFT will be used in the improved measurement. The main advantage of the improved measurement is that only two sensors over the top of blades and one synchronous sensor of the rotor are used to get the exact vibration characteristics of the each blade in a row. In our experiment, we adopt NI Company's DAQ equipment: SCXI1001 and PCI 6221, three optical sensors, base on the graphics program soft LabVIEW to develop the turbine blade monitor system. At the different rotational speed of the rotor (1000r/m and 1200r/m) we do several experiments on the bench of the Turbine characteristic. Its results indicated that the vibration of turbine blade could be real-time monitored and accurately measured by the improved Tip Timing Measurement.
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Shi hai Zhang, Shi hai Zhang, Lu-ping Li, Lu-ping Li, Hong-de Rao, Hong-de Rao, "Research on the nonintrusive measurement of the turbine blade vibration", Proc. SPIE 7375, ICEM 2008: International Conference on Experimental Mechanics 2008, 73750P (27 August 2009); doi: 10.1117/12.839031; https://doi.org/10.1117/12.839031
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