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references.txt
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Andreas, E.L.; Mahrt, L.; Vickers, D. A New Drag Relation for Aerodynamically Rough Flow over the Ocean. J. Atmos. Sci. 2012, 69, 2520–2537.
Bretschneider, C.L. A Non-Dimensional Stationary Hurricane Wave Model. In Proceedings of the Offshore Technology Conference; Offshore Technology Conference, Houston, TX, USA, 1–3 May 1972.
Garratt, J.R., 1977, Review of Drag Coefficients over Oceans and Continents. Mon. Weather Rev 105, 915–929.
Holland, G. J., 1980: An Analytic Model of the Wind and Pressure Profiles in Hurricanes. Mon. Wea. Rev., 108, 1212–1218, https://doi.org/10.1175/1520-0493(1980)108<1212:AAMOTW>2.0.CO;2
Mouton, F., Nordbeck, O., 2005, Cyclone Database Manager, https://www.preventionweb.net/files/1535_articlePREVIEWTropCyclones.pdf
Peng, S.; Li, Y. A parabolic model of drag coefficient for storm surge simulation in the South China Sea. Sci. Rep. 2015, 5.
Powell, M.; Soukup, G., Cocke, S., Gulati, S., Morisseau-Leroy, N., Hamid, S., Dorst, N., Axe, L. State of Florida hurricane loss projection model: Atmospheric science component. J. Wind Eng. Ind. Aerodyn. 2005, 93, 651–674.
Vickery P.J., P. F. Skerlj, A. C. Steckley, and L. A. Twisdale, 2000: Hurricane wind field model for use in hurricane simulations. J.Struct. Eng., 126, 1203–1221.
Vickery, P. J., and D. Wadhera, 2008: Statistical Models of Holland Pressure Profile Parameter and Radius to Maximum Winds of Hurricanes from Flight-Level Pressure and H*Wind Data. J. Appl. Meteor. Climatol., 47, 2497–2517, https://doi.org/10.1175/2008JAMC1837.1.