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Gino I. Montecinos
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2020 – today
- 2024
- [i7]Gino I. Montecinos, Rodrigo Lecaros, Juan Carlos López Ríos, Enrique Zuazua:
Optimal control approach for moving bottom detection in one-dimensional shallow waters by surface measurements. CoRR abs/2401.17239 (2024) - 2023
- [j12]Gino I. Montecinos, Eleuterio F. Toro:
ENO-ET: a reconstruction scheme based on extended ENO stencil and truncated highest-order term. Appl. Math. Comput. 442: 127742 (2023) - 2021
- [j11]Gino I. Montecinos:
A universal centred high-order method based on implicit Taylor series expansion with fast second order evolution of spatial derivatives. J. Comput. Phys. 443: 110535 (2021) - 2020
- [i6]Gino I. Montecinos:
An iterative scaling function procedure for solving scalar non-linear hyperbolic balance laws. CoRR abs/2007.09290 (2020) - [i5]Gino I. Montecinos:
A universal centred high-order method based on implicit Taylor series expansion with fast second order evolution of spatial derivatives. CoRR abs/2010.10659 (2020) - [i4]Sergio Gaete, Alejandro Jofré, Rodrigo Lecaros, Gino I. Montecinos, Jaime H. Ortega, Javier Ramírez-Ganga, Jorge San Martín:
A fast algorithm of the shear-compression damage model for the simulation of block caving. CoRR abs/2012.14776 (2020)
2010 – 2019
- 2019
- [i3]Gino I. Montecinos, Dinshaw S. Balsara:
A simplified Cauchy-Kowalewskaya procedure for the implicit solution of generalized Riemann problems of hyperbolic balance laws. CoRR abs/1907.08872 (2019) - 2018
- [j10]Dinshaw S. Balsara, Sudip Garain, Allen Taflove, Gino I. Montecinos:
Computational electrodynamics in material media with constraint-preservation, multidimensional Riemann solvers and sub-cell resolution - Part II, higher order FVTD schemes. J. Comput. Phys. 354: 613-645 (2018) - [j9]Dinshaw S. Balsara, Jiequan Li, Gino I. Montecinos:
An efficient, second order accurate, universal generalized Riemann problem solver based on the HLLI Riemann solver. J. Comput. Phys. 375: 1238-1269 (2018) - 2017
- [j8]Dinshaw S. Balsara, Allen Taflove, Sudip Garain, Gino I. Montecinos:
Computational electrodynamics in material media with constraint-preservation, multidimensional Riemann solvers and sub-cell resolution - Part I, second-order FVTD schemes. J. Comput. Phys. 349: 604-635 (2017) - 2016
- [j7]Dinshaw S. Balsara, Gino I. Montecinos, Eleuterio F. Toro:
Exploring various flux vector splittings for the magnetohydrodynamic system. J. Comput. Phys. 311: 1-21 (2016) - [j6]Christian Contarino, Eleuterio F. Toro, Gino I. Montecinos, Raul Borsche, Jochen Kall:
Junction-Generalized Riemann Problem for stiff hyperbolic balance laws in networks: An implicit solver and ADER schemes. J. Comput. Phys. 315: 409-433 (2016) - [i2]Gino I. Montecinos:
A strategy to implement Dirichlet boundary conditions in the context of ADER finite volume schemes. One-dimensional conservation laws. CoRR abs/1606.03032 (2016) - 2015
- [j5]Eleuterio F. Toro, Gino I. Montecinos:
Implicit, semi-analytical solution of the generalized Riemann problem for stiff hyperbolic balance laws. J. Comput. Phys. 303: 146-172 (2015) - [i1]Gino I. Montecinos:
Analytic solutions for the Burgers equation with source terms. CoRR abs/1503.09079 (2015) - 2014
- [j4]Gino I. Montecinos, Lucas O. Müller, Eleuterio F. Toro:
Hyperbolic reformulation of a 1D viscoelastic blood flow model and ADER finite volume schemes. J. Comput. Phys. 266: 101-123 (2014) - [j3]Gino I. Montecinos, Eleuterio F. Toro:
Reformulations for general advection-diffusion-reaction equations and locally implicit ADER schemes. J. Comput. Phys. 275: 415-442 (2014) - [j2]Eleuterio F. Toro, Gino I. Montecinos:
Advection-Diffusion-Reaction Equations: Hyperbolization and High-Order ADER Discretizations. SIAM J. Sci. Comput. 36(5) (2014) - 2012
- [j1]Gino I. Montecinos, Cristóbal E. Castro, Michael Dumbser, Eleuterio F. Toro:
Comparison of solvers for the generalized Riemann problem for hyperbolic systems with source terms. J. Comput. Phys. 231(19): 6472-6494 (2012)
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