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Dual-Laser Probe for Measuring Blade-Tip Clearance Tested

A dual-probe, integrated fiber-optic laser system for measuring blade tip clearance in rotating turbomachinery was developed cooperatively with Integrated Fiber Optic Systems, Inc., and tested at the NASA Lewis Research Center. Because the probes are nearly flush with the casing inner lining, there is minimal flow disturbance. The two probes are closely spaced in a circumferential plane and are slanted at an angle relative to each other so that the time it takes the blade tip to traverse the space between the two beams varies with the tip radius, making it possible to determine the tip clearance at rotor operating conditions. The tip clearance can be obtained for all the blades in a rotor with a single system, provided there are no synchronous vibrations present at a particular operating condition.

The two probes for the laser system were installed in two holders. For one, the included angle between the probes was 20°, and for the other, it was 40°. The two configurations were calibrated in a vacuum spin-rig facility that can reproduce realistic blade-tip speeds. A specially designed, nondeflecting rotor was used to calibrate the probes. This rotor consisted of a tapered titanium bar with three teeth on each end, the thickness of which was representative of a typical blade-tip thickness. The bar and measuring teeth were in a horizontal plane in the spin rig, and the axis of rotation was vertical. To set the clearances, we used a remotely controlled optical stage that could be traversed vertically.

The 40° probe system also was used to measure the tip clearance during an engine fan prototype test in a wind tunnel. Using the spin-rig calibrations, we estimated the accuracy of the tip-clearance measurement in the test to be 0.005 in. This program is ongoing.

Bibliography

Dhadwal, H.S.; and Kurkov, A.P.: Dual-Laser Probe Measurements of Blade-Tip Clearance. ASME Paper 98-GT-183, 1998.

Lewis contact: Dr. Anatole P. Kurkov, (216) 433-5695, Anatole.P.Kurkov@grc.nasa.gov
Author: Dr. Harbans S. Dhadwal and Dr. Anatole P. Kurkov
Headquarters program office: OAT
Programs/Projects: AST


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