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- W2317229227 abstract "The ability to make time-resolved, direct wall shear stress measurements in harsh environments is an important measurement capability for improving understanding of complex fluid flow phenomena. This work presents the design, packaging, and characterization of a third-generation silicon-on-Pyrex moire optical wall shear stress sensor designed for use in environments up to 450◦C. Optical transduction of the floating element microelectromechanical systems (MEMS) sensor is accomplished by interrogation of the geometric moire fringe via a four-channel fiber optic array. Device performance is improved over previous generations by patterning discrete sections of the moire fringe and the use of a silicon nitride anti-reflective coating. Calibration of the sensor system yields a dynamic shear stress sensitivity of 12.6 mrad/Pa at 1.128 kHz, sensor resonance of 4.1 kHz, pressure rejection ratio of 87 dB, minimum detectable shear stress of 0.53 mPa at 1.128 kHz for a 1 Hz bin, and an experimentally verified dynamic range of 79 dB." @default.
- W2317229227 created "2016-06-24" @default.
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- W2317229227 date "2015-01-03" @default.
- W2317229227 modified "2023-09-23" @default.
- W2317229227 title "Characterization of an Optical Moiré Wall Shear Stress Sensor for Harsh Environments" @default.
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- W2317229227 doi "https://doi.org/10.2514/6.2015-1917" @default.
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