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Faculty of Mathematics

 

Lu Zhu is a Research Associate at DAMTP, University of Cambridge. His current focus of research is the numerical modeling of stratified shear flows in an inclined duct.  

Publications

Long-wave instabilities of sloping stratified exchange flows
L Zhu, A Atoufi, A Lefauve, RR Kerswell, PF Linden
– Journal of Fluid Mechanics
(2024)
983,
a12
New insights into experimental stratified flows obtained through physics-informed neural networks
L Zhu, X Jiang, A Lefauve, RR Kerswell, PF Linden
– Journal of Fluid Mechanics
(2024)
981,
r1
Geometry of stratified turbulent mixing: local alignment of the density gradient with rotation, shear and viscous dissipation
X Jiang, A Atoufi, L Zhu, A Lefauve, J Taylor, S Dalziel, P Linden
– Journal of Fluid Mechanics
(2023)
977,
r5
Stratified inclined duct: two-layer hydraulics and instabilities
A Atoufi, L Zhu, A Lefauve, JR Taylor, RR Kerswell, SB Dalziel, GA Lawrence, PF Linden
– Journal of Fluid Mechanics
(2023)
977,
a25
Bagged stepwise cluster analysis for probabilistic river flow prediction
Q Zhang, F Zhang, T Erfani, L Zhu
– Journal of Hydrology
(2023)
625,
129995
Stratified inclined duct: direct numerical simulations
L Zhu, A Atoufi, A Lefauve, JR Taylor, RR Kerswell, SB Dalziel, GA Lawrence, PF Linden
– Journal of Fluid Mechanics
(2023)
969,
a20
A novel linear hybrid model predictive control design: application to a fed batch crystallization process
A McKay, D Ghosh, L Zhu, L Xi, P Mhaskar
– Digital Chemical Engineering
(2022)
3,
100033
Real-time prediction of river chloride concentration using ensemble learning.
Q Zhang, Z Li, L Zhu, F Zhang, E Sekerinski, J-C Han, Y Zhou
– Environ Pollut
(2021)
291,
118116
Nonasymptotic elastoinertial turbulence for asymptotic drag reduction
L Zhu, L Xi
– Physical Review Fluids
(2021)
6,
014601
Inertia-driven and elastoinertial viscoelastic turbulent channel flow simulated with a hybrid pseudo-spectral/finite-difference numerical scheme
L Zhu, L Xi
– Journal of Non-Newtonian Fluid Mechanics
(2020)
286,
104410
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Room

H1.04