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Faculty of Mathematics

 

Senior Teaching Associate in DAMTP, currently lecturing Part III Perturbation Methods, and IA Mathematics for NST. Also Faculty Outreach Officer.

Publications

The Unified Transform: A Spectral Collocation Method for Acoustic Scattering
LJ Ayton, M Colbrook, A Fokas
– 25th AIAA/CEAS Aeroacoustics Conference
(2019)
Correction to ‘The unified transform for mixed boundary condition problems in unbounded domains’
MJ Colbrook, LJ Ayton, AS Fokas
– Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences
(2019)
475,
20190201
Modelling of Intrinsic Thermoacoustic Instability of Premixed Flame in Combustors with Changes in Cross Section
Y Chen, LJ Ayton, D Zhao
– Combustion Science and Technology
(2019)
192,
832
An analytical and experimental investigation of aerofoil–turbulence interaction noise for plates with spanwise-varying leading edges
LJ Ayton, P Chaitanya
– Journal of Fluid Mechanics
(2019)
865,
137
The unified transform for mixed boundary condition problems in unbounded domains
MJ Colbrook, LJ Ayton, AS Fokas
– Proceedings. Mathematical, physical, and engineering sciences
(2019)
475,
20180605
Leading- And trailing-edge noise reduction using serrations of new geometry
B Lyu, L Ayton, P Chaitanya
– Proceedings of the International Congress on Acoustics
(2019)
2019-September,
5359
Analytic solutions for acoustic scattering by blade rows with complex boundaries: Porosity, compliance and impedance
PJ Baddoo, LJ Ayton
– Proceedings of the International Congress on Acoustics
(2019)
2019-September,
612
Potential flow through a cascade of aerofoils: direct and inverse problems.
PJ Baddoo, LJ Ayton
– Proceedings. Mathematical, physical, and engineering sciences
(2018)
474,
20180065
Analytic Solution for Aerodynamic Noise Generated by Plates with Spanwise-Varying Trailing Edges
LJ Ayton
– Journal of Fluid Mechanics
(2018)
849,
448
An analytic solution for the noise generated by gust-aerofoil interaction for plates with serrated leading edges
LJ Ayton, JW Kim
– Journal of Fluid Mechanics
(2018)
853,
515
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Room

G2.04

Telephone

01223 760452