activity
20072016
most citedAn efficient way to perform the assembly of finite element matrices in Matlab and Octave

17 citations · 17 across the 4 of their papers we have counts for

collaborators

8 papers

math.NA2016

Space-time domain decomposition for advection-diffusion problems in mixed formulations

Thi-Thao-Phuong Hoang, Caroline Japhet, Michel Kern +1

This paper is concerned with the numerical solution of porous-media flow and transport problems , i. e. heterogeneous, advection-diffusion problems. Its aim is to investigate numer…

math.NA2015

Space-time Domain Decomposition and Mixed Formulation for solving reduced fracture models

Thi-Thao-Phuong Hoang, Caroline Japhet, Michel Kern +1

In this paper we are interested in the "fast path" fracture and we aim to use global-in-time, nonoverlapping domain decomposition methods to model flow and transport problems in a…

math.NA2014

Robin Schwarz algorithm for the NICEM Method: the Pq finite element case

Caroline Japhet, Yvon Maday, Frédéric Nataf

In Gander et al. [2004] we proposed a new non-conforming domain decomposition paradigm, the New Interface Cement Equilibrated Mortar (NICEM) method, based on Schwarz type methods t…

cs.MS2014

An efficient way to assemble finite element matrices in vector languages

François Cuvelier, Caroline Japhet, Gilles Scarella

Efficient Matlab codes in 2D and 3D have been proposed recently to assemble finite element matrices. In this paper we present simple, compact and efficient vectorized algorithms, w…

math.NA2013★ 17 cited

An efficient way to perform the assembly of finite element matrices in Matlab and Octave

François Cuvelier, Caroline Japhet, Gilles Scarella

We describe different optimization techniques to perform the assembly of finite element matrices in Matlab and Octave, from the standard approach to recent vectorized ones, without…

math.NA2013

Space-Time Domain Decomposition Methods for Diffusion Problems in Mixed Formulations

Thi Thao Phuong Hoang, Jérôme Jaffré, Caroline Japhet +2

This paper is concerned with global-in-time, nonoverlapping domain decomposition methods for the mixed formulation of the diffusion problem. Two approaches are considered: one uses…