HERRERA REVILLA, ISMAEL

HERRERA REVILLA, ISMAEL

SIN INFORMACIÓN · Nivel E

Modelación Matemática y Computacional Matemáticas Aplicadas Geofísica Ingeniería Sísmica Hidrología Subterránea (estudio científico del Agua Subterránea) Geotermia

Desde 1970 es Investigador Emérito en Universidad Nacional Autónoma de México, Instituto de Geofísica

Perfil académico

Nombre ISMAEL HERRERA REVILLA
Área FÍSICO-MATEMÁTICAS Y CIENCIAS DE LA TIERRA
Campo SIN INFORMACIÓN
Disciplina SIN INFORMACIÓN
Especialidad SIN INFORMACIÓN
CVU 921
Institución
Dependencia COORDINACION DE LA INVESTIGACION CIENTIFICA
Entidad CIUDAD DE MEXICO
Nivel E
Vigencia Inicio: 02/01/2003
Fin: 31/12/2099
Categoría: EMERITO

Publicaciones ORCID

2016
A systematic formulation of multiphysics systems and its applications to boundary layers and shock profiles International Journal for Multiscale Computational Engineering
An innovative tool for effectively applying highly parallelized hardware to problems of elasticity
Evidences that software based on non-overlapping discretization is most efficient for applying highly parallelized supercomputers to solving partial differential equations Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
2014
Nonoverlapping discretization methods for partial differential equations Numerical Methods for Partial Differential Equations
2013
Parallel algorithms for computational models of geophysical systems Geofisica Internacional
The derived-vector space framework and four general purposes massively parallel DDM algorithms Engineering Analysis with Boundary Elements
2012
Mathematical Modeling in Science and Engineering: An Axiomatic Approach Mathematical Modeling in Science and Engineering: An Axiomatic Approach
2011
A brief overview of non-overlapping domain decomposition methods
Multipliers-free dual-primal domain decomposition methods for nonsymmetric matrices and their numerical testing Numerical Methods for Partial Differential Equations
Unified formulation of enhanced oil-recovery methods