DocumentCode
3261840
Title
A novel approach for obtaining bubble dissolution measurements at sea: results
Author
Costa, Russell ; Roy, Ronald A. ; Commander, Kerry W.
Author_Institution
Newport Div., Naval Underwater Syst. Center, Newport, RI, USA
Volume
3
fYear
1999
fDate
1999
Firstpage
1223
Abstract
A hybrid system for measuring the dissolution of gas bubbles in an oceanic environment was developed utilizing the Coastal Systems Station´s Light Scattering Bubble Counter (LSBC). The LSBC independently measures flow velocity and bubble size, and is capable of distinguishing bubbles from particulate matter. In the hybrid system, the dynamic range of the LSBC measurements is 50 microns to about 300 microns in radius. The system is filled at depth in the sea, purged of all gas, and then closed from the outside environment. A steady now is established and clean air is forced through a porous ceramic disk to create the initial bubble population. This bubbly mixture is recirculated through the system at a constant flow rate of 22 liters per minute (LPM), or 33 LPM, corresponding to velocities of 30 cm/s and 45 cm/s through the LSBC aperture, respectively. The bubble radii are measured continuously using the LSBC, resulting in time-dependent bubble-size distributions. A numerical technique has been developed to estimate the dissolution rate from the bubble distribution time series
Keywords
bubbles; dissolving; oceanographic equipment; oceanographic techniques; optical sensors; Coastal Systems Station; LSBC; Light Scattering Bubble Counter; bubble; bubble size; diameter; dissolution; dissolution rate; equipment; flow velocity; gas bubble; hybrid system; instrument; measurement technique; ocean; optical sensor; radius; Apertures; Ceramics; Counting circuits; Dynamic range; Fluid flow measurement; Light scattering; Particle measurements; Sea measurements; Size measurement; Velocity measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
OCEANS '99 MTS/IEEE. Riding the Crest into the 21st Century
Conference_Location
Seattle, WA
Print_ISBN
0-7803-5628-4
Type
conf
DOI
10.1109/OCEANS.1999.800165
Filename
800165
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