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References
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This page lists key references for the numerical methods and software
frameworks used in Cocoa.
ADCIRC and GWCE
---------------
.. [Luettich1992] Luettich, R.A., Westerink, J.J., and Scheffner, N.W. (1992).
ADCIRC: An Advanced Three-Dimensional Circulation Model for Shelves,
Coasts, and Estuaries. Technical Report DRP-92-6, U.S. Army Engineer
Waterways Experiment Station, Vicksburg, MS.
.. [Kolar1994] Kolar, R.L., Gray, W.G., Westerink, J.J., and Luettich, R.A.
(1994). Shallow water modeling in spherical coordinates: equation
formulation, numerical implementation, and application. Journal of
Hydraulic Research, 32(1), 3-24.
.. [Dawson2006] Dawson, C., Westerink, J.J., Feyen, J.C., and Pothina, D.
(2006). Continuous, discontinuous and coupled discontinuous-continuous
Galerkin finite element methods for the shallow water equations.
International Journal for Numerical Methods in Fluids, 52(1), 63-88.
.. [Luettich1999] Luettich, R.A. and Westerink, J.J. (1999). Elemental
Wetting and Drying in the ADCIRC Hydrodynamic Model: Upgrades and
Documentation for ADCIRC Version 34.XX. Contractors Report, U.S. Army
Engineer Waterways Experiment Station, Vicksburg, MS.
.. [Luettich2004] Luettich, R.A. and Westerink, J.J. (2004). Formulation and
Numerical Implementation of the 2D/3D ADCIRC Finite Element Model
Version 44.XX. Technical report, University of North Carolina at Chapel
Hill and University of Notre Dame.
.. [Dietrich2004] Dietrich, J.C., Kolar, R.L., and Luettich, R.A. (2004).
Assessment of ADCIRC's wetting and drying algorithm. In Proceedings of the
XV International Conference on Computational Methods in Water Resources,
Developments in Water Science 55, Elsevier, 1767-1778.
Finite Element Methods
----------------------
.. [Hughes2000] Hughes, T.J.R. (2000). The Finite Element Method: Linear
Static and Dynamic Finite Element Analysis. Dover Publications.
.. [Zienkiewicz2013] Zienkiewicz, O.C., Taylor, R.L., and Zhu, J.Z. (2013).
The Finite Element Method: Its Basis and Fundamentals (7th ed.).
Butterworth-Heinemann.
.. [Flanagan1981] Flanagan, D.P. and Belytschko, T. (1981). A uniform strain
hexahedron and quadrilateral with orthogonal hourglass control.
International Journal for Numerical Methods in Engineering, 17(5),
679-706.
.. [Bochev2012] Bochev, P., Edwards, H.C., Kirby, R.C., Peterson, K., and
Ridzal, D. (2012). Solving PDEs with Intrepid. Scientific Programming,
20(2), 151-180.
Kokkos
------
.. [Edwards2014] Edwards, H.C., Trott, C.R., and Sunderland, D. (2014).
Kokkos: Enabling manycore performance portability through polymorphic
memory access patterns. Journal of Parallel and Distributed Computing,
74(12), 3202-3216.
.. [Trott2022] Trott, C.R., Lebrun-Grandi\ |eacute|, D., Arndt, D., et al. (2022).
Kokkos 3: Programming Model Extensions for the Exascale Era.
IEEE Transactions on Parallel and Distributed Systems, 33(4), 805-817.
Trilinos
--------
.. [Heroux2005] Heroux, M.A., Bartlett, R.A., Howle, V.E., et al. (2005).
An overview of the Trilinos project. ACM Transactions on Mathematical
Software, 31(3), 397-423.
.. [Bavier2012] Bavier, E., Hoemmen, M., Rajamanickam, S., and Thornquist, H.
(2012). Amesos2 and Belos: Direct and iterative solvers for large sparse
linear systems. Scientific Programming, 20(3), 241-255.
Wind Stress and Atmospheric Forcing
------------------------------------
.. [Garratt1977] Garratt, J.R. (1977). Review of drag coefficients over
oceans and continents. *Monthly Weather Review*, 105, 915-929.
Sea Ice Drag
------------
.. [Lupkes2012] Lupkes, C., Gryanik, V.M., Hartmann, J., and Andreas, E.L.
(2012). A parametrization, based on sea ice morphology, of the neutral
atmospheric drag coefficients for weather prediction and climate models.
*Journal of Geophysical Research: Atmospheres*, 117, D13112.
doi:10.1029/2012JD017630.
.. [Joyce2019] Joyce, B.R., Pringle, W.J., Wirasaet, D., Westerink, J.J.,
Van der Westhuysen, A.J., Grumbine, R., and Feyen, J. (2019). High
resolution modeling of western Alaska tides and storm surge under varying
sea ice conditions. *Ocean Modelling*, 141, 101421.
doi:10.1016/j.ocemod.2019.101421.
Shallow Water Equations
-----------------------
.. [Vreugdenhil1994] Vreugdenhil, C.B. (1994). Numerical Methods for
Shallow-Water Flow. Springer.
.. [Toro2001] Toro, E.F. (2001). Shock-Capturing Methods for Free-Surface
Shallow Flows. Wiley.
.. [Smagorinsky1963] Smagorinsky, J. (1963). General circulation experiments
with the primitive equations. I. The basic experiment. Monthly Weather
Review, 91(3), 99-164.
.. [Dean1991] Dean, R.G. and Dalrymple, R.A. (1991). Water Wave Mechanics for
Engineers and Scientists. World Scientific, Singapore.
.. [Chow1959] Chow, V.T. (1959). Open-Channel Hydraulics. McGraw-Hill, New
York.
.. [Langbein1966] Langbein, W.B. and Leopold, L.B. (1966). River Meanders:
Theory of Minimum Variance. U.S. Geological Survey Professional Paper
422-H.
Wetting and Drying
------------------
.. [Medeiros2012] Medeiros, S.C. and Hagen, S.C. (2012). Review of wetting
and drying algorithms for numerical tidal flow models. International
Journal for Numerical Methods in Fluids, 71(4), 473-487.
.. [Carrier1958] Carrier, G.F. and Greenspan, H.P. (1958). Water waves of
finite amplitude on a sloping beach. Journal of Fluid Mechanics, 4(1),
97-109.
.. [Balzano1998] Balzano, A. (1998). Evaluation of methods for numerical
simulation of wetting and drying in shallow water flow models. Coastal
Engineering, 34(1-2), 83-107.
Parametric Tropical Cyclone Vortex
----------------------------------
.. [Gao2013] Gao, J. (2013). On the Surface Wind Stress for Storm Surge
Modelling. Ph.D. dissertation, University of North Carolina at Chapel
Hill. (Generalized Asymmetric Holland Model, GAHM.)
.. [Luettich2026] Luettich, R.A. (2026). GAHM2026: Updated Generalized
Asymmetric Holland Model formulation. (Reference MATLAB implementation for
the environmental-wind, boundary-layer, and consistency-scan conventions.)
.. [LinChavez2012] Lin, N., and Chavez, D. (2012). On hurricane parametric wind
and applications in storm surge modeling. Journal of Geophysical Research:
Atmospheres, 117, D09120. (Referenced as "Lin & Chavez" in the GAHM2026
formulation; supplies the constant-background environmental-wind option.)
.. [Holland1980] Holland, G.J. (1980). An Analytic Model of the Wind and
Pressure Profiles in Hurricanes. Monthly Weather Review, 108(8),
1212-1218.
.. [Holland2010] Holland, G.J., Belanger, J.I., and Fritz, A. (2010). A
Revised Model for Radial Profiles of Hurricane Winds. Monthly Weather
Review, 138(12), 4393-4401.
Tropical Cyclone Wind-Pressure Relationships
--------------------------------------------
.. [AtkinsonHolliday1977] Atkinson, G.D., and Holliday, C.R. (1977). Tropical
Cyclone Minimum Sea Level Pressure / Maximum Sustained Wind Relationship for
the Western North Pacific. Monthly Weather Review, 105(4), 421-427.
.. [Dvorak1984] Dvorak, V.F. (1984). Tropical Cyclone Intensity Analysis Using
Satellite Data. NOAA Technical Report NESDIS 11, 47 pp.
.. [KnaffZehr2007] Knaff, J.A., and Zehr, R.M. (2007). Reexamination of Tropical
Cyclone Wind-Pressure Relationships. Weather and Forecasting, 22(1), 71-88.
.. [CourtneyKnaff2009] Courtney, J., and Knaff, J.A. (2009). Adapting the Knaff
and Zehr Wind-Pressure Relationship for Operational Use in Tropical Cyclone
Warning Centres. Australian Meteorological and Oceanographic Journal, 58(3),
167-179.
Baroclinic Coupling
--------------------
.. [Pringle2019] Pringle, W.J., Gonzalez-Lopez, J., Joyce, B.R., Westerink,
J.J., and van der Westhuysen, A.J. (2019). Baroclinic Coupling Improves
Depth-Integrated Modeling of Coastal Sea Level Variations Around Puerto
Rico and the U.S. Virgin Islands. Journal of Geophysical Research:
Oceans, 124(3), 2196-2217. https://doi.org/10.1029/2018JC014682
.. [Pringle2021] Pringle, W.J., Wirasaet, D., Roberts, K.J., and
Westerink, J.J. (2021). Global Storm Tide Modeling with ADCIRC v55:
Unstructured Mesh Design and Performance. Geoscientific Model
Development, 14, 1125-1145. https://doi.org/10.5194/gmd-14-1125-2021
.. [Blakely2022] Blakely, C.P., Ling, G., Pringle, W.J., Contreras, M.T.,
Wirasaet, D., Westerink, J.J., et al. (2022). Dissipation and
Bathymetric Sensitivities in an Unstructured Mesh Global Tidal Model.
Journal of Geophysical Research: Oceans, 127(5), e2021JC018178.
https://doi.org/10.1029/2021JC018178
.. [Nycander2005] Nycander, J. (2005). Generation of internal waves in the
deep ocean by tides. Journal of Geophysical Research, 110, C10028.
https://doi.org/10.1029/2004JC002487
.. [Lyard2004] Lyard, F., Lefevre, F., Letellier, T., and Francis, O. (2004).
Modelling the global ocean tides: modern insights from FES2004. Ocean
Dynamics, 56, 394-415. https://doi.org/10.1007/s10236-006-0086-x
.. [ZaronEgbert2006] Zaron, E.D., and Egbert, G.D. (2006). Estimating
open-ocean barotropic tidal dissipation: The Hawaiian Ridge. Journal of
Physical Oceanography, 36(6), 1019-1035. https://doi.org/10.1175/JPO2878.1
.. [DeBoyerMontegut2004] de Boyer Montegut, C., Madec, G., Fischer, A.S.,
Lazar, A., and Iudicone, D. (2004). Mixed layer depth over the global
ocean: An examination of profile data and a profile-based climatology.
Journal of Geophysical Research, 109, C12003.
https://doi.org/10.1029/2004JC002378
Software Documentation
----------------------
- `Kokkos Documentation `_
- `Trilinos Documentation `_
- `ADCIRC Documentation `_