DocumentCode :
1757992
Title :
Nonuniform Arrangement of Emitter-Receiver Pairs Arrangement and Compact Ultrasonic Tomography Setup
Author :
Goswami, Mausumi ; Munshi, Prabhat ; Khanna, Ashish ; Saxena, Ankur
Author_Institution :
Nucl. Eng. & Technol. Program, Indian Inst. of Technol. Kanpur, Kanpur, India
Volume :
15
Issue :
2
fYear :
2015
fDate :
Feb. 2015
Firstpage :
1198
Lastpage :
1207
Abstract :
Arrangements of emitter-receiver pairs with two possibilities: nonuniform and uniform locations, are studied. Ultrasonic computerized tomographic (UCT) setups are developed with these configurations for parallel and fan beam scanning modes. Optimization is used to determine the best nonuniform arrangement. The CT reconstructions with nonuniform emitter-receiver pair arrangements from the data acquired via computer generated pixel images and real world specimens show promising results compared with their uniform arrangement. A flow channel, e.g., a metal pipe with small ratio of pipe diameter to emitter/receiver aperture, imposes restriction on the number of emitter-receiver pairs. A practical application, for void-fraction estimation for water-air flow, is investigated with the best design. Reconstructed flow profiles and estimated air fractions match with 3-D numerical simulation obtained using FLUENT 14. Cost of a focused acoustic emitter/receiver pair and its noise response depends on its focal length. The optimized nonuniform design can be best suited for emitter/receiver pairs of small focal lengths and can aid in developing low budget and compact UCT scanners.
Keywords :
acoustic receivers; acoustic tomography; channel flow; computerised tomography; data acquisition; fractionation; image reconstruction; numerical analysis; optimisation; pipe flow; ultrasonic imaging; 3D numerical simulation; CT reconstruction; FLUENT 14 simulation; air fraction estimation; compact UCT scanner; compact ultrasonic computerized tomography setup; computer generated pixel imaging; data acquisition; fan beam scanning mode; flow channel; flow profile reconstruction; focused acoustic emitter-receiver pair; metal pipe; nonuniform emitter-receiver pair arrangement; optimization; parallel beam scanning mode; void-fraction estimation; water-air flow; Acoustics; Computed tomography; Image reconstruction; Optimization; Receivers; Sensors; Computerized tomography; Sensor arrays; computerized tomography; design for experiments; design optimization; sensor arrays;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2014.2361201
Filename :
6914594
Link To Document :
بازگشت