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- W2894517284 abstract "The research presented considers the design, development and building of a structure-basedcondition monitoring system. A series of physical experiments were designed and conducted in awind tunnel. This was able to initially prove the feasibility of the proposed system. Using asimulation of the continuous turbine rotation the self-initiated Phase-Angle curve was defined. Thealgorithms so produced were validated and tested using both the simulated waveforms andexperimental data sets. This demonstrated that the proposed monitoring system was able to dealwith the ever-changing flow conditions and turbine operation status. The work showed that the use of the wind tunnel was feasible for developing the structure-basedmonitoring system. It has been shown that innovative ideas can be tested and validated in the windtunnel. The relatively small size of the test rig and the utility of 3-D printing technology made thewhole experiment based investigation very cost-effective. The progressive experiments wereconducted to compare widely used monitoring techniques to the proposed monitoring system. Some other physical phenomenon or extended thoughts such as blade tip deflection caused bythe tower were considered and may be of interest to other researchers. The final discussion of thework presented was to introduce the potential problems and difficulties in applying the proposedsystem in the marine environment. This considered the sensor design, system installation,application methods and algorithm optimisation. This could further serve the useful informationfor the relevant researchers and the experiment or deployment of the proposed system on full-sizeturbine." @default.
- W2894517284 created "2018-10-05" @default.
- W2894517284 creator A5065729239 @default.
- W2894517284 date "2018-01-01" @default.
- W2894517284 modified "2023-09-27" @default.
- W2894517284 title "The development of structure-based tidal stream turbine condition monitoring systems" @default.
- W2894517284 hasPublicationYear "2018" @default.
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