Theses/Dissertations
Author Heckman, Andrew James, 1987- author.

Title Ultrasonic communications system for health monitoring of hydrokinetic turbine blades / by Andrew James Heckman.

Published c2012
LOCATION CALL # STATUS
 MST DEPOSITORY  THESIS T 10042/10057  MICROFILM    NOT CHECKED OUT
 MST Thesis  THESIS T 10051    NOT CHECKED OUT
Description viii, 61 leaves : illustrations (some color) ; 29 cm
Summary "A health monitoring approach is investigated for hydrokinetic turbine blade applications. In-service monitoring is critical due to the difficult environment for blade inspection and the cost of inspection downtime. Composite blade designs provide a medium for embedding sensors into the blades for in-situ health monitoring. The major challenge with in-situ health monitoring is transmission of sensor signals from the remote rotating reference frame of the blade to the system monitoring station. In the presented work, a novel system for relaying in-situ blade health measurements in hydrokinetic systems is described and demonstrated. An ultrasonic communication system is used to transmit health data underwater from the rotating frame of the blade to a fixed relay station. Data are then broadcast via radio waves to a remote monitoring station. Results indicate that the assembled system can transmit simulated sensor data with an accuracy of ±5% at a maximum sampling rate of 500 samples/sec. A power investigation of the transmitter within the blade shows that continuous max-sampling operation is only possible for short durations (̃days), and is limited due to the capacity of the battery power source. However, intermittent sampling, with long periods between samples, allows for the system to last for very long durations (̃years). Finally, because the data transmission can operate at a high sampling rate for short durations or at a lower sampling rate/higher duty cycle for long durations, it is well-suited for short-term prototype and environmental testing, as well as long-term commercially-deployed hydrokinetic machines"--Abstract, leaf iii.
Notes Vita.
M.S. Missouri University of Science and Technology 2012.
Includes bibliographical references (leaves 59-60).
Subjects Structural health monitoring.
Turbines -- Blades.
Ultrasonic waves.
Other Titles MST thesis. Mechanical Engineering (M.S., 2012)
Additional Keywords Hydrokinetics.
OCLC/WorldCat Number 828928576
Author Heckman, Andrew James, 1987- author.
Title Ultrasonic communications system for health monitoring of hydrokinetic turbine blades / by Andrew James Heckman.
Subjects Structural health monitoring.
Turbines -- Blades.
Ultrasonic waves.
Additional Keywords Hydrokinetics.
Other Titles MST thesis. Mechanical Engineering (M.S., 2012)