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Baldy, S., A generation-dispersion model of ambient and transient bubbles in
the close vicinity of breaking waves, J. Geophysical Research,
C10, 18,277-18,293, 1993.
-
-
Chanson, H., Air-water flow measurements with intrusive phase-detection probes.
can we improve their interpretation?, Journal of Hydraulic
Engineering, 128(3), 252-255, 2002.
-
-
Chanson, H., Comments on fiber optic reflectometer for velocity and fraction
ratio measurements in multiphase flows, Review of Scientific
Instruments, 75(1), 284-285, 2004.
-
-
Chanson, H., S. Aoki, and M. Maruyama, Unsteady air bubble entrainment and
detrainment at plunging breaker: Dominant time scales and similarity of
water level variation, Coastal Engineering, 46, 139-157,
2002.
-
-
Cox, D., and S. Shin, Laboratory measurements of void fraction and turbulence
in the bore region of surf zone waves, Journal of Engineering
Mechanics, ASCE, 129(10), 1197-1205, 2003.
-
-
Cox, D., N. Kobayashi, and A. Okayasu, Vertical variations of fluid velocities
and shear stress in surf zones, in Proc. of the 24th Int. Conf. on
Coastal Eng., pp. 98-112, ASCE, 1994.
-
-
Deane, G. B., Sound generation and air entrainment by breaking wave in the surf
zone, J. Acoustic Soc. America, 102, 2671-2689, 1997.
-
-
Deane, G. B., and M. D. Stokes, Air entrainment processes and bubble size
distributions in the surf zone, J. Phys. Oceanogr., 29,
1393-1403, 1999.
-
-
Deane, G. B., and M. D. Stokes, Scale dependence of bubble creation mechanisms
in breaking waves, Nature, 418, 839-844, 2002.
-
-
Donelan, M., W. Drennan, E. Saltzman, and R. Wanninkhof, Gas Transfer
at Water Surfaces, 383 pp., AGU, Washington DC, 2002.
-
-
Elgar, S., B. Raubenheimer, and R. Guza, Current meter performance in the
surfzone, J. Atmospheric and Ocean Technology, 18,
1735-1746, 2001.
-
-
Feddersen, F., and J. H. Trowbridge, The effect of wave breaking on surf-zone
turbulence and alongshore currents: A modeling study, J. Phys.
Oceanogr., 35, 2187-2203, 2005.
-
-
Garrett, C., M. Li, and D. Farmer, The connection betweeen bubble size spectra
and energy dissipation rates in the upper ocean, J. Phys. Oceanogr.,
30, 2163-2171, 2000.
-
-
Goring, D. G., and V. I. Nikora, Despiking acoustic Doppler velocimeter data,
Journal of Hydraulic Engineering, 128(1), 117-126, 2002.
-
-
Hibiki, T., S. Hogsett, and M. Ishii, Local measurement of interfacial area,
interfacial velocity and liquid turbulence in two-phase flow, Nuclear
Engineering and Design, 184, 287-304, 1998.
-
-
Hinze, J., Fundamentals of the hydrodynamic mechanism of splitting in
dispersion processees, Amer. Inst. Chem. Eng. Jour., 1,
289-295, 1955.
-
-
Kolmogorov, A., On the breakage of drops in a turbulent flow, Dokl.
Akad. Navk. SSSR, 66, 825-828, 1949.
-
-
Leifer, I., and G. de Leeuw, Bubble measurements in breaking-wave generated
bubble plumes during the LUMINY wind-wave experiment, in Gas
Transfer at Water Surfaces, edited by M. Donelan, W. Drennan, E. Saltzman,
and R. Wanninkhof, pp. 303-310, AGU, Washington DC, 2002.
-
-
Loewen, M., M. O'Dor, and M. Skafel, Bubbles entrained by mechanically
generated breaking waves, J. Geophysical Research, 101,
20,759-20,769, 1996.
-
-
Martínez-Bazán, C., J. Montanés, and J. Lasheras, On the breakup of
air bubble injected into a fully developed turbulent flow. Part I:
Breakup frequency, J. Fluid Mech., 401, 157-182, 1999.
-
-
Mori, N., Air bubble distribution induced by wind wave breaking, in
Proc. Annual Conference of Japanese Society for Multiphase Flow,
pp. 193-194, Japanese Society for Multiphase Flow, 2002.
-
-
Mori, N., Experimental study of air bubble distributions induced by wind wave
breaking, in Proc. Asia Pasicifc Coast, pp. CD-ROM, JSCE,
Makuhari, 2003.
-
-
Mori, N., T. Suzuki, and S. Kakuno, Noise of acoustic Doppler velocimeter in
bubbly flow, Journal of Engineering Mechanics, p. in press, 2007.
-
-
Neal, L. G., and S. G. Bankoff, Local parameters in cocurrent mercury-nitrogen
flow, Am. Inst. Chem. Journal, 11, 624-635, 1965.
-
-
Peregrine, D., Water wave impact on walls, Annual Review of Fluid
Mechanics, 35, 23-43, 2003.
-
-
Svendsen, I., Analysis of surf zone turbulence, J. Geophys. Res.,
92(C5), 5115-5124, 1987.
-
-
Thorpe, S., On the clouds of bubbles formed by breaking wind waves in deep
water, and their role in air-sea gas transfer, Phil. Trans. R. Soc.
London, A304, 155-210, 1982.
-
-
Ting, F., and J. Kirby, Observation of udertow and turbulence in a laboratory
surf zone, Coastal Engineering, 24, 51-80, 1994.
-
-
Ting, F., and J. Kirby, Dynamics of surf-zone turbulence in a spilling breaker,
Coastal Engineering, 27, 131-160, 1996.
-
-
Vagle, S., and D. Farmer, A comparison of four methods of bubble measurement,
IEEE Oceanic Engineering, 23(3), 211-222, 1998.
-
-
Voulgaris, G., and J. H. Trowbridge, Evaluation of the acoustic doppler
velocimeter (ADV) for turbulence measurements, Journal of Atoms.
Ocean. Tech., 15(1), 272-289, 1998.
-
-
Wahl, T. L., Discussion of ``Despiking acoustic Doppler velocimeter data",
Journal of Hydraulic Engineering, 129(6), 484-488, 2003.
-
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