[1] Alen Alexanderian, Justin Winokur, Ihab Sraj, Mohamed Iskandarani, Ashwanth Srinivasan, William C. Thacker, and Omar M. Knio. Global sensitivity analysis in an ocean general circulation model: a sparse spectral projection approach. Computational Geosciences, 2012. [ DOI | Abstract ]
[2] William C. Thacker, Ashwanth Srinivasan, Mohamed Iskandarani, Omar M. Knio, and Mathieu Le Henaff. Propagating boundary uncertainties using polynomial expansions. Ocean Modelling, 43-44:52-63, 2012. [ DOI | http | Abstract ]
[3] Alen Alexanderian, Olivier Le Maître, Habib Najm, Mohamed Iskandarani, and Omar Knio. Multiscale stochastic preconditioners in non-intrusive spectral projection. Journal of Scientific Computing, 50(2):306-340, 2011. [ DOI | http | Abstract ]
[4] Munehiko Yamaguchi, David S. Nolan, Mohamed Iskandarani, Sharanya J. Majumdar, Melinda S. Peng, and Carolyn A. Reynolds. Singular vectors for tropical cyclone-like vortices in a nondivergent barotropic framework. Journal of the Atmospheric Sciences, 68(10):2273-2291, OCT 2011. [ DOI | Abstract ]
[5] Yumin Moon, David S. Nolan, and Mohamed Iskandarani. On the use of two-dimensional incompressible flow to study secondary eyewall formation in tropical cyclones source: Volume: 67 issue: 12 pages: Published: 2010. Journal of the Atmospheric Sciences, 67:3765-3773, 2010. [ DOI | Abstract ]
[6] Ashwanth Srinivasan, Judith Helgers, Claire B. Paris, Matthieu LeHenaff, Heesook Kang, Villy Kourafalou, Mohamed Iskandarani, William C. Thacker, Joel P. Zysman, Nicolas F. Tsinoremas, and Omar M. Knio. Many task computing for modeling the fate of oil discharged from the deep water horizon well blowout. In Many-Task Computing on Grids and Supercomputers (MTAGS), 2010 IEEE Workshop on, pages 1-7, November, 2010. IEEE. [ DOI | http | Abstract ]
[7] Silvia Matt, Mohamed Iskandarani, and Kevin D. Leaman. The impact of temporal variability in forcing on a 2d gravity current from a high-order nonhydrostatic spectral element model. In Conference Proceedings of The International Conference MSS-09 "Mode Conversion, Coherent Structures and Turbulence", pages 249-254, Moscow, URSS, November 2009. unrefereed.
[8] Ashwanth Srinivasan, Zulema Garraffo, and Mohamed Iskandarani. Abyssal circulation in the indian ocean from a 1/12 degrees resolution global hindcast. Deep-Sea Research Part I-Oceanographic Research Papers, 56(11):1907-1926, 2009. [ DOI | http | Abstract ]
[9] Mehmet Ilicak, Tamay Özgökmen, Hartmut Peters, H elmut Z. Baumert, and Mohamed Iskandarani. Very large eddy simulation of the read sea overflow. Ocean Modelling, 20(2):183-206, 2008. [ DOI | Abstract ]
[10] Mehmet Ilicak, Tamay Özgökmen, Hartmut Peters, H elmut Z. Baumert, and Mohamed Iskandarani. Performance of two-equation turbulence closures in three-dimensional simulations of the red sea overflow. Ocean Modelling, 24(3-4):122-139, 2008. [ DOI | Abstract ]
[11] Mohamed Iskandarani. Simulating hydrostatic and non-hydrostatic oceanic flows. International Journal for Numerical Methods in Fluids, 58(10):1135- 1146, 2008. [ DOI | Abstract ]
[12] Marcello G. Magaldi, Tamay M. Özgökmen, Annalisa Griffa, Eric P. Chassignet, Mohamed Iskandarani, and Hartmut Peters. Turbulent flow regimes behind a coastal cape in a stratified and rotating environment. Ocean Modelling, 25(1-2):65-82, 2008. [ DOI | Abstract ]
[13] C. C. Douglas, J. C. Harris, M. Iskandarani, C. R. Johnson, R. J. Lodder, S. G. Parker, M. J. Cole, R. Ewing, Y. Efendiev, R. Lazarov, and G. Qin. Dynamic contaminant identification in water. In Computational Science - ICCS 2006: 6th International Conference, Reading, UK, May 28-31, 2006 Proceedings, Part III, pages 393-400, May 2006. Lecture Notes in Computer Science 3993.
[14] J. C. Levin, D. B. Haidvogel, B. Chua, A. F. Bennett, and M. Iskandarani. Euler-lagrange equations for the spectral element shallow water system. Ocean Modelling, 12(3-4):348-377, 2006. [ DOI | Abstract ]
[15] J. C. Levin, M. Iskandarani, and D. B. Haidvogel. To continue or discontinue: Comparisons of continuous and discontinuous galerkin formulations in a spectral element ocean model. Ocean Modelling, 15:56-70, 2006. [ DOI | Abstract ]
[16] M. Iskandarani, J. C. Levin, B.-J. Choi, and D. B. Haidvogel. Comparison of advection schemes for high order h-p finite element and finite volume methods. Ocean Modelling, 10(1-2):233-252, 2005. [ DOI | Abstract ]
[17] B.-J. Choi, M. Iskandarani, J. C. Levin, and D. B. Haidvogel. A spectral finite volume method for the shallow water equations. Monthly Weather Review, 132(7):1777-1791, 2004. [ DOI | Abstract ]
[18] Ashwanth Srinivasan, Z. Top, P. Schlosser, R. Hohmann, Mohamed Iskandarani, J. E. Lupton, W. J. Jenkins, and Don B. Olson. Mantle 3he distribution and deep circulation in the indian ocean. Journal of Geophysical Research-Oceans, 109 (C06012):doi:10.1029/2003JC002028, 2004. [ DOI | Abstract ]
[19] C. C. Douglas, G. Haase, and M. Iskandarani. An additive schwarz preconditioner for the spectral element ocean model formulation of the shallow water equations. Electronic Transactions on Numerical Analysis, 15:18-28, 2003. [ http ]
[20] M. Iskandarani, D. B. Haidvogel, and J. Levin. A three-dimensional spectral element model for the solution of the hydrostatic primitive equations. Journal of Computational Physics, 186(2):397-425, 2003. [ DOI | Abstract ]
[21] M. Iskandarani, D. B. Haidvogel, J. Levin, E. N. Curchitser, and C. A. Edwards. Multiscale geophysical modeling using the spectral element method. Computing in Science and Engineering, 5(4):2-8, 2002. [ DOI | Abstract ]
[22] A. Molcard, N. Pinardi, M. Iskandarani, and D. B. Haidvogel. Wind driven circulation of the mediterranean sea simulated with a spectral element ocean model. Dynamics of Atmosphere and Oceans, 35:97-130, 2002. [ DOI | Abstract ]
[23] E. N. Curchitser, D. B. Haidvogel, and M. Iskandarani. On the transient adjustment of a mid-latitude abyssal ocean basin with realistic geometry and bathymetry. JPO, 31(3):725-745, 2001. [ DOI ]
[24] C. C. Douglas, G. Haase, and M. Iskandarani. High performance multi-layer ocean modeling. In Proceedings of the First MIT Conference on Computational Fluid and Solid Mechanics, Amsterdam, 2001. Elsevier.
[25] Craig C. Douglas, Mohamed Iskandarani, and Gundolf Haase. An acceleration procedure for the spectral element ocean model formulation of the shallow water equations. In Zhangxin Chen and Richard Ewing, editors, Contemporary Mathematics: Fluid Flow and Transport in Porous Media: Mathematical and Numerical Treatment. Proceedings of the 2001, Joint AMS-IMS-SIAM Summer Research Conference., Mount Holyoke, MA, 2001. AMS.
[27] O. Le Maître, J. Levin, M. Iskandarani, and O. M. Knio. A multiscale pressure splitting of the shallow-water equations. i. formulation and 1d tests. Journal of Computational Physics, 166:116-151, 2001. [ DOI ]
[28] Craig C. Douglas, Jonathan Hu, Mohamed Iskandarani, Markus Kowarschik, Ulrich Rüde, and Christian Weiss. Maximizing cache memory usage for multigrid algorithms for applications of fluid flow in porous media. In Z Chen, RE Ewing, and ZC Shi, editors, NUMERICAL TREATMENT OF MULTIPHASE FLOWS IN POROUS MEDIA, volume 552 of LECTURE NOTES IN PHYSICS, pages 124-137, HEIDELBERGER PLATZ 3, D-14197 BERLIN, GERMANY, 2000. Natl Nat Sci Fdn China; Beijing Inst Appl Phys & Computat Math; Chinese State Key Basic Res Project; USA Off Res Far E; USN Off Res Int Field Off Asia; USAF Asian Off Aerosp Res & Dev, SPRINGER-VERLAG BERLIN. International Workshop on Fluid Flow and Transport in Porous Media, BEIJING, PEOPLES R CHINA, AUG 02-06, 1999. [ Abstract ]
[29] J. Levin, M. Iskandarani, and D. B. Haidvogel. A nonconforming spectral element ocean model. International Journal for Numerical Methods in Fluids, 34(6):495-525, 2000. [ DOI ]
[30] Jonathan Hu Craig C. Douglas and Mohamed Iskandarani. Preprocessing costs of cache based multigrid. In P. Neittaanmaki, editor, In ENUMATH99: Proceedings of the Third European Conference on Numerical Methods for Advanced Applications, pages 362-370, Singapore, 1999. World Scientific.
[31] E. N. Curchitser, D. B. Haidvogel, and M. Iskandarani. On the transient adjustment of a mid-latitude abyssal ocean basin with realistic geometry: The constant depth limit. Dynamics of Atmosphere and Oceans, 29(2-4):147, 1999. [ DOI | Abstract ]
[32] E. N. Curchitser, M. Iskandarani, and D. B. Haidvogel. A spectral element solution of the shallow water equations on multiprocessor computers. Journal of Atmospheric and Oceanographic Technology, 15(2):510-521, 1998. [ DOI | Abstract ]
[33] D. B. Haidvogel, Enrique Curchitser, M. Iskandarani, R. Hughes, and M. Taylor. Global modeling of the ocean and atmosphere using the spectral element method. Atmosphere-Ocean, 35:505-531, 1997.
[34] J. Levin, M. Iskandarani, and D. B. Haidvogel. A spectral filtering procedure for eddy-resolving simulations with a spectral element ocean model. Journal of Computational Physics, 137(1):130-154, 1997. [ DOI ]
[35] M. Taylor, J. Tribbia, and M. Iskandarani. The spectral element method for the shallow water equations on the sphere. Journal of Computational Physics, 130(1):92-108, 1997. [ DOI ]
[36] C. Wunsch, D. B. Haidvogel, M. Iskandarani, and R. Hughes. Dynamics of the long-period tides. Progress in Oceanography, 40(1/4):80-108, 1997. [ DOI ]
[37] M. Iskandarani, D. B. Haidvogel, and J. P. Boyd. A staggered spectral element model with application to the oceanic shallow water equations. International Journal for Numerical Methods in Fluids, 20:393-414, 1995. [ DOI ]
[38] Mohamed Iskandarani and Philip L-F Liu. Mass-transport in wave tank. Journal of Waterway Port Coastal and Ocean Engineering-ASCE, 119(1):88-104, JAN-FEB 1993. [ DOI | Abstract ]
[39] Mohamed Iskandarani and Philip L-F Liu. Mass-transport in 3-dimensional water-waves. Journal of Fluid Mechanics, 231:417-437, OCT 1991. [ DOI | Abstract ]
[40] Mohamed Iskandarani and Philip L-F. Liu. Mass-transport in 2-dimensional water-waves. Journal of Fluid Mechanics, 231:395-415, OCT 1991. [ DOI | Abstract ]
[41] Philip L-F. Liu and Mohamed Iskandarani. Scattering of short-wave groups by submerged horizontal plate. Journal of Waterway Port Coastal and Ocean Engineering-ASCE, 117(3):235-246, MAY-JUN 1991. [ DOI | Abstract ]
[42] Philip L-F. Liu and Mohamed Iskandarani. Hydrodynamic wave forces on submerged horizontal plates. In Proceedings of the 23rd Congress of the International Association for Hydraulic Research. The International Association for Hydro-Environment Engineering and Research, 1989.
[43] Mohamed Iskandarani and Philip L-F. Liu. Multiple-scattering of surface water-waves and wave-forces on cylinder arrays. Applied Ocean Research, 10(4):170-180, OCT 1988. [ DOI ]

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