UCL Discovery
UCL home » Library Services » Electronic resources » UCL Discovery

Browse by UCL people

Group by: Type | Date
Number of items: 10.

Article

Lo, Sharp CY; McCullough, Jon WS; Xue, Xiao; Coveney, Peter V; (2024) Uncertainty quantification of the impact of peripheral arterial disease on abdominal aortic aneurysms in blood flow simulations. Journal of the Royal Society Interface , 21 (213) , Article 20230656. 10.1098/rsif.2023.0656. Green open access
file

McCullough, Jon WS; Coveney, Peter V; (2024) Uncertainty quantification of the lattice Boltzmann method focussing on studies of human-scale vascular blood flow. Scientific Reports , 14 (1) , Article 11317. 10.1038/s41598-024-61708-w. Green open access
file

McCullough, JWS; Coveney, PV; (2023) High resolution simulation of basilar artery infarct and flow within the circle of Willis. Scientific Reports , 13 , Article 21665. 10.1038/s41598-023-48776-0. Green open access
file

McCullough, JWS; Coveney, PV; (2021) An efficient, localised approach for the simulation of elastic blood vessels using the lattice Boltzmann method. Scientific Reports , 11 , Article 24260. 10.1038/s41598-021-03584-2. Green open access
file

McCullough, JWS; Coveney, PV; (2021) High fidelity blood flow in a patient-specific arteriovenous fistula. Scientific Reports , 11 , Article 22301. 10.1038/s41598-021-01435-8. Green open access
file

McCullough, JWS; Łaniewski-Wołłk, Ł; Aminossadati, SM; Leonardi, CR; (2021) A 3D LBM-DEM study of sheared particle suspensions under the influence of temperature-dependent viscosity. Powder Technology , 390 pp. 143-158. 10.1016/j.powtec.2021.05.011. Green open access
file

McCullough, JWS; Aminossadati, SM; Leonardi, CR; (2020) Transport of particles suspended within a temperature-dependent viscosity fluid using coupled LBM–DEM. International Journal of Heat and Mass Transfer , 149 , Article 119159. 10.1016/j.ijheatmasstransfer.2019.119159. Green open access
file

McCullough, JWS; Richardson, RA; Patronis, A; Halver, R; Marshall, R; Ruefenacht, M; Wylie, BJM; ... Coveney, PV; + view all (2021) Towards Blood Flow in the Virtual Human: Efficient Self-Coupling of HemeLB. Interface focus , 11 (1) , Article 20190119. 10.1098/rsfs.2019.0119. Green open access
file

Zacharoudiou, I; McCullough, JWS; Coveney, PV; (2023) Development and performance of a HemeLB GPU code for human-scale blood flow simulation. Computer Physics Communications , 282 , Article 108548. 10.1016/j.cpc.2022.108548. Green open access
file

Proceedings paper

Xue, Xiao; McCullough, Jon WS; Lo, Sharp Chim Yui; Zacharoudiou, Ioannis; Joó, Bálint; Coveney, Peter V; (2024) The Lattice Boltzmann Based Large Eddy Simulations for the Stenosis of the Aorta. In: Franco, Leonardo and Mulatier, Clélia de and Paszynski, Maciej and Krzhizhanovskaya, Valeria V and Dongarra, Jack J and Sloot, Peter MA, (eds.) Lecture Notes in Computer Science. (pp. pp. 408-420). Springer Verlag: Cham, Switzerland. Green open access
file

This list was generated on Sat Dec 27 23:31:13 2025 GMT.