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Chris Pringle
Chris Pringle
Associate Professor in Fluid Dynamics, Coventry University
Verified email at coventry.ac.uk - Homepage
Title
Cited by
Cited by
Year
Using nonlinear transient growth to construct the minimal seed for shear flow turbulence
CCT Pringle, RR Kerswell
Physical review letters 105 (15), 154502, 2010
1772010
Asymmetric, helical, and mirror-symmetric traveling waves in pipe flow
CCT Pringle, RR Kerswell
Physical review letters 99 (7), 074502, 2007
1462007
Minimal seeds for shear flow turbulence: using nonlinear transient growth to touch the edge of chaos
CCT Pringle, AP Willis, RR Kerswell
Journal of Fluid Mechanics 702, 415-443, 2012
1182012
An optimization approach for analysing nonlinear stability with transition to turbulence in fluids as an exemplar
RR Kerswell, CCT Pringle, AP Willis
Reports on Progress in Physics 77 (8), 085901, 2014
1092014
Relative periodic orbits in transitional pipe flow
Y Duguet, CCT Pringle, RR Kerswell
Physics of fluids 20 (11), 114102, 2008
952008
Highly symmetric travelling waves in pipe flow
CCT Pringle, Y Duguet, RR Kerswell
Philosophical Transactions of the Royal Society A: Mathematical, Physical …, 2009
842009
Fully localised nonlinear energy growth optimals in pipe flow
CCT Pringle, AP Willis, RR Kerswell
Physics of Fluids 27 (6), 064102, 2015
222015
Simple advecting structures and the edge of chaos in subcritical tokamak plasmas
BF McMillan, CCT Pringle, B Teaca
Journal of Plasma Physics 84 (6), 2018
202018
The existence and behaviour of large diameter Taylor bubbles
CCT Pringle, S Ambrose, BJ Azzopardi, AC Rust
International Journal of Multiphase Flow 72, 318-323, 2015
192015
A nonlinear approach to transition in subcritical plasmas with sheared flow
CCT Pringle, BF McMillan, B Teaca
Physics of Plasmas 24 (12), 122307, 2017
172017
Simultaneous Eulerian–Lagrangian velocity measurements of particulate pipe flow in transitional regime
S Singh, A Pothérat, CCT Pringle, IRJ Bates, M Holdsworth
Review of Scientific Instruments 91 (9), 095110, 2020
42020
An instability mechanism for particulate pipe flow
A Rouquier, A Pothérat, CCT Pringle
Journal of Fluid Mechanics 870, 247-265, 2019
32019
Linear transient growth of particulate pipe flows
A Rouquier, A Potherat, CCT Pringle
arXiv preprint arXiv:1903.10389, 2019
22019
An overview of dynamical methods for studying transitions between states in sheared plasma flows
B Teaca, CCT Pringle, OJ Smith, BF McMillan
Philosophical Transactions of the Royal Society A 381 (2242), 20210238, 2023
12023
Numerical study of the transition to turbulence in particulate pipe flows
A Rouquier, C Pringle, A Potherat
Coventry University, 2019
12019
On the role of numerical diffusivity in MHD simulations of global accretion disc dynamos
CJ Nixon, CCT Pringle, JE Pringle
Journal of Plasma Physics 90 (1), 905900101, 2024
2024
QUASI-STATIC MAGNETO-HYDRODYNAMIC CONVECTION IN A CYLINDER
A Rouquier, A Potherat, CCT Pringle
Theoretical and Applied Mechanics, 2021
2021
EXPERIMENTAL STUDY OF TRANSITION TO TURBULENCE IN PARTICULATE PIPE FLOW
S Singh, A Pothérat, C Pringle
BOOK OF ABSTRACTS, 92, 2020
2020
Nonlinear optimal perturbations in pipe flow of shear thinning fluids
D Olvera Cabrera, C Pringle
Bulletin of the American Physical Society 63, 2018
2018
The stability of stratified, gravity driven exchange flow
C Pringle
Bulletin of the American Physical Society 63, 2018
2018
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