A Second Order Time Integration Method for the Approximation of a Parabolic 2D Monge-Ampère Equation
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-55874-1_21
Reference12 articles.
1. S. C. Brenner and M. Neilan. Finite element approximations of the three dimensional Monge-Ampère equation. ESAIM: M2AN, 46(5):979–1001, 2012.
2. C. J. Budd, M. J. P. Cullen, and E. J. Walsh. Monge-Ampère based moving mesh methods for numerical weather prediction, with applications to the Eady problem. J. Comput. Phys., 236:247–270, 2013.
3. C.J. Budd and J. F. Williams. Moving mesh generation using the parabolic Monge-Ampère equation. SIAM J. Sci. Comput., 31:3438–3465, 2009.
4. A. Caboussat, R. Glowinski, and D. Gourzoulidis. A least-squares/relaxation method for the numerical solution of the three-dimensional elliptic Monge-Ampère equation. J. Sci. Comp., 77:53–78, 2018.
5. A. Caboussat, R. Glowinski, D. Gourzoulidis, and M. Picasso. Numerical approximation of orthogonal maps. SIAM J. Sci. Comput., 41:B1341–B1367, 2019.
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