TianFBWangYLiuH, et al.
The lattice Boltzmann method and its applications in complex flows and fluid–structure interactions. Proc IMechE, Part C: J Mechanical Engineering Science2018;
232: 403–404.
2.
YoungJTianFB.Bio–inspired flapping foils and their applications. Proc IMechE, Part C: J Mechanical Engineering Science2018;
232: 2493–2493.
3.
PrapamonthonPYinBYangG, et al.
Recent progress in flexibility effects on wing aerodynamics and acoustics. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 208–244.
4.
HaiderNShahzadAQadriMNM, et al.
Recent progress in flapping wings for micro aerial vehicle applications. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 245–264.
5.
WiddupNAWangLTianFB.Numerical study of the sound generated by two tandem arranged wings in forward flight. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 265–279.
6.
ZhuZHCaoMSXinZQ, et al.
Analysis of fluid and solid interaction of the flexible bionic wing in ground effect. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 280–295.
7.
LiC.Effects of wing pitch kinematics on both aerodynamic and olfactory functions in an upwind surge. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 296–307.
8.
SongJ.Fly low: the ground effect of a barn owl (tyto Alba) in gliding flight. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 308–318.
9.
XuanHHuJYuY, et al.
Aerodynamic effects of bio-inspired corrugated wings on gliding and hovering performances. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 319–329.
10.
AnwarMBShahzadAQadriMNM.Investigating the effects of leading-edge tubercles on the aerodynamic performance of insect-like flapping wing. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 330–341.
11.
WangL.Locomotion of a self-propulsive pitching plate in a quiescent viscous fluid. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 342–350.
12.
YanLChangXTianR, et al.
A numerical simulation method for bionic fish self-propelled swimming under control based on deep reinforcement learning. Proc IMechE, Part C: J Mechanical Engineering Science2020;
234: 3397–3415.
13.
SongJZhongYDuR, et al.
Tail shapes lead to different propulsive mechanisms in the body/caudal fin undulation of fish. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 351–364.
14.
LiYZhouGWuJ.Use of synthetic jet to a fully-active flapping foil for power extraction enhancement. Proc IMechE, Part C: J Mechanical Engineering Science 2021; 235: 365–380.
15.
MaJTZuWHTangXY, et al.
An IB-LBM design of a microfluidics-based cell capture system. Proc IMechE, Part C: J Mechanical Engineering Science 2021; 235: 381–390.
16.
WuPZhangLGaoQ, et al.
Effect of turbulent inlet conditions on the prediction of flow field and hemolysis in the FDA ideal medical device. Proc IMechE, Part C: J Mechanical Engineering Science 2021; 235: 391–401.
17.
JiJWangJWangL, et al.
Dynamic-coupling analyses of cells localization by the negative dielectrophoresis. Proc IMechE, Part C: J Mechanical Engineering Science 2021; 235: 402–411.
18.
WangYPTangYLHeY.Numerical analysis of the influence of rbcs on oxygen transport within a tissue with an embedded capillary network. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 412–427.
19.
HuangQSunJXuC.Effects of waveform shape of pulsatile blood flow on hemodynamics in an artery bifurcation model. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 391–401.
20.
BashaHTSivarajR.Numerical simulation of blood nanofluid flow over three different geometries by means of gyrotactic microorganisms: applications to the flow in a circulatory system. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 441–460.
21.
YanWZhangSLiuY, et al.
Numerical simulations and experimental measurements on flow features in a patient-specific upper airway model with obstructive sleep apnea. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 441–460.
22.
QiLGuanSZhouDD, et al.
The influence of muscle fiber type on slow component of oxygen uptake kinetics. Proc IMechE, Part C: J Mechanical Engineering Science2021;
235: 461–470.
23.
HuangWXTianFB.Recent trends and progress in the immersed boundary method. Proc IMechE, Part C: J Mechanical Engineering Science2019;
233: 7617–7636.