Follow
Michael MacDonald
Michael MacDonald
Senior Lecturer, Department of Mechanical and Mechatronics Engineering, University of Auckland
Verified email at auckland.ac.nz - Homepage
Title
Cited by
Cited by
Year
A systematic investigation of roughness height and wavelength in turbulent pipe flow in the transitionally rough regime
L Chan, M MacDonald, D Chung, N Hutchins, A Ooi
Journal of Fluid Mechanics 771, 743-777, 2015
1912015
A fast direct numerical simulation method for characterising hydraulic roughness
D Chung, L Chan, M MacDonald, N Hutchins, A Ooi
Journal of Fluid Mechanics 773, 418-431, 2015
1092015
Turbulent flow over transitionally rough surfaces with varying roughness densities
M MacDonald, L Chan, D Chung, N Hutchins, A Ooi
Journal of Fluid Mechanics 804, 130-161, 2016
992016
Secondary motion in turbulent pipe flow with three-dimensional roughness
L Chan, M MacDonald, D Chung, N Hutchins, A Ooi
Journal of Fluid Mechanics 854, 5-33, 2018
792018
The minimal-span channel for rough-wall turbulent flows
M MacDonald, D Chung, N Hutchins, L Chan, A Ooi, R Garcia-Mayoral
Journal of Fluid Mechanics 816, 5-42, 2017
672017
Roughness effects in turbulent forced convection
M MacDonald, N Hutchins, D Chung
Journal of Fluid Mechanics 861, 138-162, 2019
652019
Direct numerical simulation of high aspect ratio spanwise-aligned bars
M MacDonald, A Ooi, R García-Mayoral, N Hutchins, D Chung
Journal of Fluid Mechanics 843, 126-155, 2018
452018
Manipulation of near-wall turbulence by surface slip and permeability
G Gómez-de-Segura, CT Fairhall, M MacDonald, D Chung, ...
Journal of Physics: Conference Series (3rd Madrid Summer School on …, 2018
242018
Direct numerical simulations of turbulent flow over various riblet shapes in minimal-span channels
S Endrikat, D Modesti, M MacDonald, R García-Mayoral, N Hutchins, ...
Flow, Turbulence and Combustion 107 (1), 1-29, 2021
222021
Heat transfer in rough-wall turbulent thermal convection in the ultimate regime
M MacDonald, N Hutchins, D Lohse, D Chung
Physical Review Fluids 4, 071501(R), 2019
202019
The minimal channel: a fast and direct method for characterising roughness
M MacDonald, D Chung, N Hutchins, L Chan, A Ooi, R García-Mayoral
Journal of Physics: Conference Series (2nd Multiflow Summer School on …, 2016
112016
Hydrodynamic persistence within very dilute two-dimensional suspensions of squirmers
RJ Clarke, MD Finn, M MacDonald
Proc. R. Soc. A - Math. Phy. 470 (2167), 20130508, 2014
82014
Direct Numerical Simulation of the Moist Stably Stratified Surface Layer: Turbulence and Fog Formation
M MacDonald, MJ Kurowski, J Teixeira
Boundary-Layer Meteorology 175, 343-368, 2020
62020
Scaling of Experimental Buoyancy Vortex Structures with Respect to Power Generation
NA Hawkes, RGJ Flay, JE Cater, M Macdonald
Journal of Physics: Conference Series (The Science of Making Torque from …, 2020
52020
Numerical Simulations of Laboratory–Scale Buoyancy Vortices
T Bischof, M MacDonald, JE Cater, RGJ Flay
22nd Australasian Fluid Mechanics Conference. Brisbane, Australia, 2020
42020
Direct numerical simulation of momentum and scalar turbulent internal boundary layers
M MacDonald
23rd Australasian Fluid Mechanics Conference (AFMC2022). Sydney, Australia, 302, 2022
22022
A review of atmospheric vortex engines for power generation
KW Leong, M MacDonald, JE Cater, RGJ Flay
Journal of Wind Engineering and Industrial Aerodynamics 230, 105200, 2022
22022
Numerical Simulation of a Rough-Wall Pipe from the Transitionally Rough Regime to the Fully Rough Regime
L Chan, M MacDonald, D Chung, N Hutchins, A Ooi
19th Australasian Fluid Mechanics Conference. Melbourne, Australia, 2014
22014
A comprehensive DNS database to investigate measures of roughness and LES wall models
M MacDonald, D Chung, N Hutchins, L Chan, A Ooi, GI Park, B Pierce
Proceedings of the Summer Program 2014, 445--455, 2014
22014
Large Eddy Simulation of Artificially Generated Atmospheric Vortices for Power Generation
T Bischof, M MacDonald, JE Cater, RGJ Flay
23rd Australasian Fluid Mechanics Conference (AFMC2022). Sydney, Australia, 178, 2022
12022
The system can't perform the operation now. Try again later.
Articles 1–20