nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Adaptive resolution for multiphase smoothed particle hydrodynamics
|
Yang, Xiufeng |
|
2019 |
239 |
C |
p. 112-125 |
artikel |
2 |
A generalised and low-dissipative multi-directional characteristics-based scheme with inclusion of the local Riemann problem investigating incompressible flows without free-surfaces
|
Teschner, Tom-Robin |
|
2019 |
239 |
C |
p. 283-310 |
artikel |
3 |
A GPU-enabled implicit Finite Volume solver for the ideal two-fluid plasma model on unstructured grids
|
Alonso Asensio, Isaac |
|
2019 |
239 |
C |
p. 16-32 |
artikel |
4 |
A Lagrangian Inertial Centroidal Voronoi Particle method for dynamic load balancing in particle-based simulations
|
Ji, Zhe |
|
2019 |
239 |
C |
p. 53-63 |
artikel |
5 |
A library for wall-modelled large-eddy simulation based on OpenFOAM technology
|
Mukha, T. |
|
2019 |
239 |
C |
p. 204-224 |
artikel |
6 |
Bayesim: A tool for adaptive grid model fitting with Bayesian inference
|
Kurchin, Rachel |
|
2019 |
239 |
C |
p. 161-165 |
artikel |
7 |
BiconeDrag—A data processing application for the oscillating conical bob interfacial shear rheometer
|
Sánchez-Puga, Pablo |
|
2019 |
239 |
C |
p. 184-196 |
artikel |
8 |
Comment on ‘Symbolic computation of equivalence transformations and parameter reduction for nonlinear physical models’
|
Meleshko, Sergey V. |
|
2019 |
239 |
C |
p. 14-15 |
artikel |
9 |
ComPat framework for multiscale simulations applied to fusion plasmas
|
Luk, O.O. |
|
2019 |
239 |
C |
p. 126-133 |
artikel |
10 |
Configuration space method to calculate rearrangement matrix elements
|
Utamuratov, R. |
|
2019 |
239 |
C |
p. 64-71 |
artikel |
11 |
Editorial Board
|
|
|
2019 |
239 |
C |
p. ii |
artikel |
12 |
FermiSurfer: Fermi-surface viewer providing multiple representation schemes
|
Kawamura, Mitsuaki |
|
2019 |
239 |
C |
p. 197-203 |
artikel |
13 |
FracVAL: An improved tunable algorithm of cluster–cluster aggregation for generation of fractal structures formed by polydisperse primary particles
|
Morán, J. |
|
2019 |
239 |
C |
p. 225-237 |
artikel |
14 |
gen.parRep: A first implementation of the Generalized Parallel Replica dynamics for the long time simulation of metastable biochemical systems
|
Hédin, Florent |
|
2019 |
239 |
C |
p. 311-324 |
artikel |
15 |
GUIMesh: A tool to import STEP geometries into Geant4 via GDML
|
Pinto, M. |
|
2019 |
239 |
C |
p. 150-156 |
artikel |
16 |
High order time integrators for the simulation of charged particle motion in magnetic quadrupoles
|
Simona, Abele |
|
2019 |
239 |
C |
p. 33-52 |
artikel |
17 |
Implementation of quark confinement and retarded interactions algorithms for Chaos Many-Body Engine
|
Grossu, I.V. |
|
2019 |
239 |
C |
p. 157-160 |
artikel |
18 |
Multiscale simulation of ink seepage into paper: A mesoscopic variational model
|
Bakhta, Athmane |
|
2019 |
239 |
C |
p. 1-13 |
artikel |
19 |
On overset interpolation strategies and conservation on unstructured grids in OpenFOAM
|
Chandar, Dominic D.J. |
|
2019 |
239 |
C |
p. 72-83 |
artikel |
20 |
Parallel loop cluster quantum Monte Carlo simulation of quantum magnets based on global union-find graph algorithm
|
Todo, Synge |
|
2019 |
239 |
C |
p. 84-93 |
artikel |
21 |
PAR 2 : Parallel Random Walk Particle Tracking Method for solute transport in porous media
|
Rizzo, Calogero B. |
|
2019 |
239 |
C |
p. 265-271 |
artikel |
22 |
PULSEDYN—A dynamical simulation tool for studying strongly nonlinear chains
|
Kashyap, Rahul |
|
2019 |
239 |
C |
p. 134-149 |
artikel |
23 |
reskit: A toolkit to determine the poles of an S-matrix
|
Bingham, Peter S. |
|
2019 |
239 |
C |
p. 272-282 |
artikel |
24 |
SuperIso Relic v4: A program for calculating dark matter and flavour physics observables in supersymmetry
|
Arbey, A. |
|
2019 |
239 |
C |
p. 238-264 |
artikel |
25 |
The energy conservative splitting FDTD scheme and its energy identities for metamaterial electromagnetic Lorentz system
|
Li, Wanshan |
|
2019 |
239 |
C |
p. 94-111 |
artikel |
26 |
TRIQS/SOM: Implementation of the stochastic optimization method for analytic continuation
|
Krivenko, Igor |
|
2019 |
239 |
C |
p. 166-183 |
artikel |