Metocean Extreme and Operating Conditions References 73
Part A | 3
3.21
A.V. Babanin: Breaking and Dissipation of Ocean
Surface Waves (Cambridge Univ. Press, Cambridge
2011)
3.22
J.W. Van de Graaf, P.S. Tromans, M. Efthymiou: The
reliability of offshore structures and its dependence on design code and environment, Offshore
Technol. Conf. (1994)
3.23
N. Booij, R.C. Ris, L.H. Holthuijzen: A thirdgeneration wave model for coastal regions 1. Model
description and validation, J. Geophy. Res. 104(C4),
7649–7666 (1999)
3.24
M.S. Longuet-Higgins, E.D. Cokelet: The deformation of steep surface waves on water, I. A numerical
method of computation, Proc. R. Soc. A 350, 1–26
(1976)
3.25
M. Christou, C. Swan, O.T. Gudmestad: The description of breaking waves and the underlying water
particle kinematics, Proc. Offshore Mech. Arctic Eng.
(2007)
3.26
J.F. Price, T.B. Sanford, G.Z. Forristall: Forced stage
response to a moving hurricane, J. Phys. Oceangr.
24, 233–260 (1994)
3.27
L.H. Kantha, C.A. Clayson: An improved mixed layer
model for geophysical applications, J. Geophys.
Res. 99, 25235–25266 (1994)
3.28
L.H., Kantha, C.A. Clayson: Small Scale Processes in
Geophysical Fluid Flows (Academic Press, San Diego
2000)
3.29
M. Tomczak, J.S. Godfrey: Regional Oceanography:
An Introduction (Pergamon, Oxford 1994)
3.30
M.M. Hall, N.P. Fofonoff: Downstream development
of the Gulf Stream from 68
ı to 55
ı W, J. Phys.
Oceanogr. 23, 225–249 (1993)
3.31
G.Z. Forristall, R.R. Leben, C.A. Hall: A statistical
hindcast and forecast model for the Loop Current,
Offshore Technology Conference (2010)
3.32
P. Van Gastel, G.N. Ivey, M. Meuleners, J. Antenucci, O. Fringer: Seasonal variability of the
large-amplitude internal wave field on the Australian North West Shelf, J. Cont. Shelf Res. 29,
1373–1383 (2009)
3.33
J.M. Klymak, S. Legg, M.H. Alford, M. Buijsman,
R. Pinkel, J.D. Nash: The direct breaking of internal
waves at steep topography, Oceanography 25(2),
150–159 (2012)
3.34
T.M. Mitchell, R.G. Lueck, M.J. Vogel, R.E. Raye,
G.Z. Forristall: Turbulence measurements in a Gulf
of Mexico warm-core ring, Proc. OMAE 26th Int.
Conf. Offshore Mech. Arct. Eng. (2007)
3.35
M.R. Dhanak, K. Holappa: An autonomous ocean
turbulence measurement platform, J. Atmos.
Ocean. Technol. 16, 1506–1518 (1999)
3.36
B.R. Thomas, E.C. Kent, V.R. Swail: Methods to homogenize wind speeds from ships and buoys, Int.
J. Climatol. 25, 979–995 (2005)
3.37
N. Hogben, F.E. Lumb: Ocean Wave Statistics (Ministry of Technology, London 1967)
3.38
N. Hogben, N. Dacunha, G. Oliver: Global Wave
Statistics (Unwin Brothers, London 1986)
3.39
NOAA National Weather Service National Hurricane Center: http://www.nhc.noaa.gov/pastall.
shtml#hurdat
3.40
B.R. Jarvinen, C.J. Neumann, M.A.S. Davis: A Tropical Cyclone Data Tape for the North Atlantic Basin,
1886–1983: Contents, Limitations, and Uses (National Hurricane Center, Miami 1988)
3.41
US Navy Joint Typhoon Warning Center (JTWC):
http://www.usno.navy.mil/NOOC/nmfc-ph/RSS/
jtwc/best_tracks/
3.42
G.J. Holland: An analytic model of the wind and
pressure profiles in hurricanes, Mon. Weather Rev.
108(8), 1212–1218 (1980)
3.43
E.F. Thompson, V.J. Cardone: Practical modeling of
hurricane surface wind fields, ASCE J. Waterw. Port
Coast Ocean Eng. 122(4), 195–205 (1996)
3.44
T.R. Karl, G.A. Meehl, C.D. Miller, S.J. Hassol,
A.M. Waple, W.L. Murray (Eds.): Weather and Climate Extremes in a Changing Climate. Regions
of Focus: North America, Hawaii, Caribbean, and
U.S. Pacific Islands. A Report by the U.S. Climate
Change Science Program and the Subcommittee on
Global Change Research (Department of Commerce
NOAA’s National Climatic Data Center, Washington
D.C. 2008)
3.45
A.B. Hagen, C.W. Landsea: On the classification of
extreme Atlantic hurricanes utilizing mid-Twentieth-Century monitoring capabilities, J. Clim. 25,
4461–4475 (2012)
3.46
K. Emanuel: Increasing destructiveness of tropical
cyclones over the past 30 years, Nature 436, 686–
688 (2005)
3.47
P.Y. Le Traon: Satellites and operational oceanography. In: Operational Oceanography in the 21st Century, ed. by A. Schiller, G.B. Brassington (Springer,
Berlin 2011)
3.48
NOAA/NESDIS/Star: Laboratory for Satellite Altimetry,
http://www.star.nesdis.noaa.gov/sod/lsa/index.
php
3.49
Jet Propulsion Lab: EarthData, http://podaac-tools.
jpl.nasa.gov/
3.50
CNES AVISO: http://www.aviso.oceanobs.com
3.51
F. Lee-Lueng, A. Cazenave: Satellite Altimetry
and Earth Sciences (Academic Press, San Diego
2001)
3.52
C.K. Shum, P. Woodworth, O. Andersen, G. Egbert,
O. Francis, C. King, S. Klosko, C. Le Provost, X. Li,
J. Molines, M. Parke, R. Ray, M. Schlax, D. Stammer,
C. Tierney, P. Vincent, C. Wunsch: Accuracy assessment of recent ocean tide models, J. Geophys. Res.
102(C11), 25173–25194 (1997)
3.53
Delft University of Technology: http://rads.tudelft.
nl/rads/data/authentication.cgi
3.54
University of Southampton National Ocean Center:
http://www.noc.soton.ac.uk/ooc/SURFACE/
SATELLITE_WAVES/waves.php
3.55
Infremer: GLOBWAV, http://globwave.ifremer.fr/
3.56
Fugro OCEANOR Integrated Environmental Monitoring Systems: Ocean Wave Climate, http://www.
oceanor.com/Services/wwa_info/
3.57
BMT Argoss Services and Solutions: http://www.
bmtargoss.com
3.58
P.D. Cotton, D.J.T. Carter: Cross calibration of TOPEX,
ERS-1, and Geosat wave heights, J. Geophys. Res.
99(C12), 25025–25033 (1994)
Précédent

- 103/1343

Suivant