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  5. Application of Ultrasound for Bubble Measurement in Water and Mercury
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Application of Ultrasound for Bubble Measurement in Water and Mercury

Date Issued
December 1, 2010
Author(s)
Nakamura, Hiraku  
Advisor(s)
Arthur E. Ruggles
Additional Advisor(s)
G. Ivan Maldonado
Jason P. Hayward
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/44733
Abstract

Spallation Neutron Source at Oak Ridge National Laboratory is a neutron source operating with a liquid mercury target. Pulsed energy deposition in the target from the proton beam causes pressure waves that limit operation due to cavitation damage on the target container. Damage mitigation is proposed through the introduction of a 0.5 per cent gas volume fraction of small diameter bubbles to create compressibility in mercury. Desired bubble diameter is 30 microns, and two ultrasonic methods are studied for detection and characterization of such bubbles. These methods are tested first in water, and then in mercury. Ultrasound Doppler velocity profiler directly measures bubble rise velocity, which is then used to determine bubble diameter. Ultrasonic imaging allows direct observation of the bubbles both in water and in mercury. However, challenges were encountered in medical ultrasound image optimization and interpretation for this engineering application. This research explores techniques for implementing ultrasound in opaque fluids for bubble rise velocity and diameter characterization

Disciplines
Nuclear Engineering
Degree
Master of Science
Major
Nuclear Engineering
Embargo Date
December 1, 2011
File(s)
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0-homogenization.avi

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43.5 MB

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MSthesis_fin.docx

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6.67 MB

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