Environmental Engineering Reference
In-Depth Information
by use of optical backscatterance sensors. In, J. Bogen,
T. Fergus & D. E. Walling (eds), 28-36. International
Association of Hydrological Sciences Publication 283.
Schott, F. & Johns, W. (1987) Half-year-long measure-
ments with a buoy-mounted acoustic Doppler current
profi ler in the Somali Current. Journal of Geophysical
Research , 92 (C5), 5169-76.
Schulkin, M. & Marsh, H. W. (1962) Sound absorption in
sea water. Journal of the Acoustical Society of America ,
34 (6), 864-65.
Sedimentation Committee of the Water Resources Council.
(1976) Proceedings of the Third Federal Inter-Agency
Sedimentation Conference: March 22-25 1976, Denver,
Colorado, 7 chapters, variously paged, http://pubs.usgs.
gov/misc_reports/FISC_1947-2006/pdf/1st-7thFISCs-
CD/3rdFISC/3FiscTOC.PDF.
Sequoia Scientifi c, Inc. (2008) http://www.sequoiasci.com/
default.aspx?SectionName=home.
Serra, T. , Colomer, J., Cristina, X. P., Vila, X., Arellato, J.
B. & Casamitjana, X. (2001) Evaluation of laser in situ
scattering instrument for measuring concentration of
phytoplankton, purple sulfur bacteria, and suspended
inorganic sediments in lakes. Journal of Environmental
Engineering , November, 1023-30.
Serra, T. , Granata, T. , Colomer, J., Stips, A., Mohlenberg,
F. & Casamitjana, X. (2003) The role of advection and
turbulent mixing in the vertical distribution of phyto-
plankton. Estuarine, Coastal and Shelf Science , 56 ,
53-62.
Sheng, J. & Hay, A. E. (1988) An examination of the
spherical scatter approximation in aqueous suspensions
of sand. Journal of the Acoustical Society of America
83 (2), 598-610.
Skinner, J. V. (1989) History of the Federal Interagency
Sedimentation Project. In Proceedings of the International
Symposium, Sediment Transport Modeling, American
Society of Civil Engineers, New Orleans, August 14-18
1989, S. S. Y. Wang (ed), 266-71.
Smith, R. A., Alexander, R. B. & Wolman, M. G. (1987)
Water-quality trends in the nation's rivers: Science , 235 ,
1607-15.
Subcommittee on Sedimentation. (2008) http://acwi.gov/
sos/, accessed September 30, 2008.
Sutherland, T. F. , Lane, P. M., Amos, C. L. & Downing,
J. (2000) The calibration of optical backscatter sensors
for suspended sediment of varying darkness levels:
Marine Geology 162 , 587-97.
Swithenbank, J., Beer, J. M., Taylor, D. S., Abbot, D. &
McCreath, C. C. (1977) A laser diagnostic technique for
the measurement of droplet and particle size distribution.
In Experimental Diagnostics in Gas Phase Combustion
Systems: Progress in Astronautics and Aeronautics , vol.
53 , B. J. Zinn (ed.), 421-47.
Tessier, C., Le Hir, P. , Lurton, X. & Castaing, P. (2008)
Estimation of suspended sediment concentration from
backscatter intensity of Acoustic Doppler Current
Profi ler. Comptes Rendus - Geoscience , 340 (1), 57.
Thevenot, M. M., Prickett, T. L. & Kraus, N. C. (1992).
Tylers Beach, Virginia, dredged material plume monitor-
ing project 27 September to 4 October 1991: Dredging
Research Program Technical Report DRP-92-7, US Army
Corps of Engineers, Washington, D.C, 204pp.
Thevenot, M. M. & Kraus, N. C. (1993) Comparison of
acoustical and optical measurements of suspended mate-
rial in the Chesapeake Estuary. Journal of Marine
Environmental Engineering , 1 , 65-79.
Thorne, P. D. & Buckingham, M. J. (2004) Measurements
of scattering by suspensions of irregularly shaped sand
particles and comparison with a single parameter modi-
fi ed sphere model, Journal of the Acoustical Society of
America 116 (5), 2876-89.
Thorne, P. D. & Campbell, S. C. (1992) Backscattering by
a suspension of spheres. Journal of the Acoustical Society
of America 92 (2), 978-86.
Thorne, P. D. & Hanes, D. M. (2002) A review of acoustic
measurements of small-scale sediment processes.
Continental Shelf Research 22 , 603-32.
Thorne, P. D.
(1997) Acoustic measure-
ment of suspended sediments in turbulent currents and
comparison with in-situ samples. Journal of the Acoustical
Society of America 101 (5), 2603-14.
Thorne, P. D., Hardcastle, P. J. & Hogg, A. (1996)
Observations of near-bed suspended sediment turbulence
structures using multifrequency acoustic backscatter. In
Coherent Flow Structures in Open Channels , P. J.
Ashworth, S. J. Bennet, J. L. Best & S. J. McLelland (eds).
John Wiley & Sons Ltd.
Thorne, P. D., Hardcastle, P. J. & Souslby, R. L. (1993).
Analysis of acoustic measurements of suspended
sediment. Journal of Geophysics Research 98 (C1)
899-910.
Thorne, P. D., Vincent, C. E., Harcastle P. J., Rehman, S.
& Pearson, N. (1991) Measuring suspended sediment
concentrations using acoustic backscatter devices. Marine
Geology , 98 , 7-16.
Thorne, P. D., Waters, K. R. & Brudner, T. J. (1995)
Acoustic measurements of scattering by objects of irregu-
lar shape. Journal of the Acoustical Society of America
97 (1), 242-51.
Thorne, P. D. & Meral, R. (2008) Formulations for the
scattering properties of suspended sandy sediments for
use in the application of acoustics to sediment transport.
Continental Shelf Research , 28 (2), 309-17.
Tollner, E. W., Rasmussen, T. C., Upchurch, B. & Sikes, J.
(2005) Simulated moving bed form effects on real-time
in-stream sediment concentration measurement with
denitometry. ASCE Journal of Hydraulic Engineering ,
132 (12), 1141-44.
Topping, D. J., Melis, T. S., Rubin, D. M. & Wright, S. A.
(2004) High-resolution monitoring of suspended-sedi-
ment concentration and grain size in the Colorado River
in Grand Canyon using a laser acoustic system. In
Proceedings of the 9th International Symposium on River
Sedimentation, Yichang, China, 2507-14.
& Hardcastle, P. J.
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