Top Publications (View all)
- J.W.S. McCullough,
R.A. Richardson,
A. Patronis,
R. Halver,
R. Marshall,
M. Ruefenacht,
B.J.N. Wylie,
T. Odaker,
M. Wiedemann,
B. Lloyd,
E. Neufeld,
G. Sutmann,
A. Skjellum,
D. Kranzlmüller,
P.V. Coveney,
Towards blood flow in the virtual human: Efficient self-coupling of HemeLB: Virtual Human Blood Flow with HemeLB
, Interface Focus, 2021, [DOI]
- J.W.S. McCullough,
C.R. Leonardi,
B.D. Jones,
S.M. Aminossadati,
J.R. Williams,
Lattice Boltzmann methods for the simulation of heat transfer in particle suspensions
, International Journal of Heat and Fluid Flow, 2016, [DOI]
- J.W.S. McCullough,
S.M. Aminossadati,
C.R. Leonardi,
Transport of particles suspended within a temperature-dependent viscosity fluid using coupled LBM–DEM
, International Journal of Heat and Mass Transfer, 2020, [DOI]
- C.R. Leonardi,
J.W.S. McCullough,
B.D. Jones,
J.R. Williams,
Electromagnetic excitation of particle suspensions in hydraulic fractures using a coupled lattice Boltzmann-discrete element model
, Computational Particle Mechanics, 2016, [DOI]
- I. Zacharoudiou,
J.W.S. McCullough,
P.V. Coveney,
Development and performance of a HemeLB GPU code for human-scale blood flow simulation
, Computer Physics Communications, 2023, [DOI]
Recent Publications (View all)
- J.W.S. McCullough,
P.V. Coveney,
Uncertainty quantification of the lattice Boltzmann method focussing on studies of human-scale vascular blood flow
, Scientific Reports, 2024, [DOI]
- S.C.Y. Lo,
J.W.S. McCullough,
X. Xue,
P.V. Coveney,
Uncertainty quantification of the impact of peripheral arterial disease on abdominal aortic aneurysms in blood flow simulations
, Journal of the Royal Society Interface, 2024, [DOI]
- X. Xue,
J.W.S. McCullough,
S.C.Y. Lo,
I. Zacharoudiou,
B. Joó,
P.V. Coveney,
The Lattice Boltzmann Based Large Eddy Simulations for the Stenosis of the Aorta
, Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), 2024, [DOI]
- J.W.S. McCullough,
P.V. Coveney,
High resolution simulation of basilar artery infarct and flow within the circle of Willis
, Scientific Reports, 2023, [DOI]
- I. Zacharoudiou,
J.W.S. McCullough,
P.V. Coveney,
Development and performance of a HemeLB GPU code for human-scale blood flow simulation
, Computer Physics Communications, 2023, [DOI]