Year |
Citation |
Score |
2019 |
Bai Z, Zhu L. Simulation of blood flow past a distal arteriovenous-graft anastomosis at low Reynolds numbers Physics of Fluids. 31: 91902. DOI: 10.1063/1.5099635 |
0.399 |
|
2019 |
Bai Z, Zhu L. 3D simulation of a viscous flow past a compliant model of arteriovenous-graft annastomosis Computers & Fluids. 181: 403-415. DOI: 10.1016/J.Compfluid.2019.02.006 |
0.405 |
|
2017 |
Zhu L, Yu X, Liu N, Cheng Y, Lu X. A deformable plate interacting with a non-Newtonian fluid in three dimensions Physics of Fluids. 29: 83101. DOI: 10.1063/1.4996040 |
0.427 |
|
2016 |
Tian FB, Sui Y, Zhu L, Shu C, Sung HJ. Computational Methods and Models in Circulatory and Reproductive Systems. Computational and Mathematical Methods in Medicine. 2016: 9028409. PMID 28003853 DOI: 10.1155/2016/9028409 |
0.38 |
|
2016 |
Zhang C, Cheng Y, Zhu L, Wu J. Accuracy improvement of the immersed boundary–lattice Boltzmann coupling scheme by iterative force correction Computers & Fluids. 124: 246-260. DOI: 10.1016/J.Compfluid.2015.03.024 |
0.464 |
|
2015 |
Tang C, Zhu L, Akingba G, Lu XY. Viscous flow past a collapsible channel as a model for self-excited oscillation of blood vessels. Journal of Biomechanics. 48: 1922-9. PMID 25911249 DOI: 10.1016/J.Jbiomech.2015.04.011 |
0.374 |
|
2014 |
Cheng Y, Zhu L, Zhang C. Numerical Study of Stability and Accuracy of the Immersed Boundary Method Coupled to the Lattice Boltzmann BGK Model Communications in Computational Physics. 16: 136-168. DOI: 10.4208/Cicp.260313.291113A |
0.42 |
|
2014 |
Hua R, Zhu L, Lu X. Numerical Investigation of the Dynamics of a Flexible Filament in the Wake of Cylinder Advances in Applied Mathematics and Mechanics. 6: 478-493. DOI: 10.4208/Aamm.2013.M408 |
0.412 |
|
2014 |
Hua R, Zhu L, Lu X. Dynamics of fluid flow over a circular flexible plate Journal of Fluid Mechanics. 759: 56-72. DOI: 10.1017/Jfm.2014.571 |
0.449 |
|
2014 |
Yu H(, Chen R, Wang H, Yuan Z, Zhao Y, An Y, Xu Y, Zhu L. GPU accelerated lattice Boltzmann simulation for rotational turbulence Computers & Mathematics With Applications. 67: 445-451. DOI: 10.1016/J.Camwa.2013.09.017 |
0.32 |
|
2013 |
Tian FB, Zhu L, Fok PW, Lu XY. Simulation of a pulsatile non-Newtonian flow past a stenosed 2D artery with atherosclerosis. Computers in Biology and Medicine. 43: 1098-113. PMID 23930803 DOI: 10.1016/J.Compbiomed.2013.05.023 |
0.414 |
|
2013 |
Hua R, Zhu L, Lu X. Locomotion of a flapping flexible plate Physics of Fluids. 25: 121901. DOI: 10.1063/1.4832857 |
0.38 |
|
2012 |
Miller LA, Santhanakrishnan A, Jones S, Hamlet C, Mertens K, Zhu L. Reconfiguration and the reduction of vortex-induced vibrations in broad leaves. The Journal of Experimental Biology. 215: 2716-27. PMID 22786650 DOI: 10.1242/Jeb.064501 |
0.415 |
|
2011 |
Tian FB, Luo H, Zhu L, Liao JC, Lu XY. An efficient immersed boundary-lattice Boltzmann method for the hydrodynamic interaction of elastic filaments. Journal of Computational Physics. 230: 7266-7283. PMID 23564971 DOI: 10.1016/J.Jcp.2011.05.028 |
0.462 |
|
2011 |
Wang S, Zhu L, Zhang X, He G. Flow Past Two Freely Rotatable Triangular Cylinders in Tandem Arrangement Journal of Fluids Engineering. 133. DOI: 10.1115/1.4004637 |
0.305 |
|
2011 |
Zhu L, He G, Wang S, Miller L, Zhang X, You Q, Fang S. An immersed boundary method based on the lattice Boltzmann approach in three dimensions, with application Computers & Mathematics With Applications. 61: 3506-3518. DOI: 10.1016/J.Camwa.2010.03.022 |
0.416 |
|
2010 |
Tian FB, Luo H, Zhu L, Lu XY. Interaction between a flexible filament and a downstream rigid body. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 82: 026301. PMID 20866899 DOI: 10.1103/Physreve.82.026301 |
0.361 |
|
2010 |
Hao J, Zhu L. A lattice Boltzmann based implicit immersed boundary method for fluid-structure interaction Computers & Mathematics With Applications. 59: 185-193. DOI: 10.1016/J.Camwa.2009.06.055 |
0.396 |
|
2009 |
Chen HY, Hermiller J, Sinha AK, Sturek M, Zhu L, Kassab GS. Effects of stent sizing on endothelial and vessel wall stress: potential mechanisms for in-stent restenosis. Journal of Applied Physiology (Bethesda, Md. : 1985). 106: 1686-91. PMID 19299567 DOI: 10.1152/Japplphysiol.91519.2008 |
0.317 |
|
2009 |
Zhu L. Interaction of two tandem deformable bodies in a viscous incompressible flow Journal of Fluid Mechanics. 635: 455-475. DOI: 10.1017/S0022112009007903 |
0.454 |
|
2008 |
Zhu L. Scaling laws for drag of a compliant body in an incompressible viscous flow Journal of Fluid Mechanics. 607: 387-400. DOI: 10.1017/S0022112008002103 |
0.408 |
|
2008 |
Zhu L, Chin RC. Simulation of elastic filaments interacting with a viscous pulsatile flow Computer Methods in Applied Mechanics and Engineering. 197: 2265-2274. DOI: 10.1016/J.CMA.2007.11.031 |
0.32 |
|
2007 |
Zhu L. Viscous flow past a flexible fibre tethered at its centre point: Vortex shedding Journal of Fluid Mechanics. 587: 217-234. DOI: 10.1017/S002211200700732X |
0.437 |
|
2007 |
Zhu L, Peskin CS. Drag of a flexible fiber in a 2D moving viscous fluid Computers and Fluids. 36: 398-406. DOI: 10.1016/J.Compfluid.2006.02.002 |
0.549 |
|
2005 |
Zhu L, Tretheway D, Petzold L, Meinhart C. Simulation of fluid slip at 3D hydrophobic microchannel walls by the lattice Boltzmann method Journal of Computational Physics. 202: 181-195. DOI: 10.1016/J.Jcp.2004.07.004 |
0.392 |
|
2003 |
Zhu L, Peskin CS. Interaction of two flapping filaments in a flowing soap film Physics of Fluids. 15: 1954-1960. DOI: 10.1063/1.1582476 |
0.575 |
|
2002 |
Zhu L, Peskin CS. Simulation of a flapping flexible filament in a flowing soap film by the immersed boundary method Journal of Computational Physics. 179: 452-468. DOI: 10.1006/Jcph.2002.7066 |
0.596 |
|
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