Location via proxy:   [ UP ]  
[Report a bug]   [Manage cookies]                
Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

Underwater blast wave pressure sensor based on polymer film fiber Fabry–Perot cavity

Not Accessible

Your library or personal account may give you access

Abstract

This paper describes the theoretical and experimental aspects of an optical underwater shock wave sensor based on a polymer film optical fiber Fabry–Perot cavity manufactured by vacuum deposition technology. The transduction mechanism of the sensor involves a normally incident acoustic stress wave that changes the thickness of the polymer film, thereby giving rise to a phase shift. This transient interferometric phase is interrogated by a three-phase-step algorithm. Theoretically, the sensor-acoustic-field interaction principle is analyzed, and the phase modulation sensitivity based on the theory of waves in the layered media is calculated. Experimentally, a static calibration test and a dynamic calibration test are conducted using a piston-type pressure calibration machine and a focusing-type electromagnetic shock wave. Results indicate that the repeatability, hysteresis, nonlinearity, and the overall measurement accuracy of the sensor within the full pressure range of 55 MPa are 1.82%, 0.86%, 1.81%, and 4.49%, respectively. The dynamic response time is less than 0.767 μs. Finally, three aspects that need further study for practical use are pointed out.

© 2014 Optical Society of America

Full Article  |  PDF Article
More Like This
Ultrafast Fabry–Perot fiber-optic pressure sensors for multimedia blast event measurements

Xiaotian Zou, Nan Wu, Ye Tian, Yang Zhang, John Fitek, Michael Maffeo, Christopher Niezrecki, Julie Chen, and Xingwei Wang
Appl. Opt. 52(6) 1248-1254 (2013)

Laser-machined fibers as Fabry-Perot pressure sensors

Stuart Watson, Matthew J. Gander, William N. MacPherson, James S. Barton, Julian D. C. Jones, Thomas Klotzbuecher, Torsten Braune, Johannes Ott, and Felix Schmitz
Appl. Opt. 45(22) 5590-5596 (2006)

Cited By

You do not have subscription access to this journal. Cited by links are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Figures (8)

You do not have subscription access to this journal. Figure files are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Equations (15)

You do not have subscription access to this journal. Equations are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Select as filters


Select Topics Cancel