Project supported by the National Natural Science Foundation of China (Grant Nos. 51506051,51606221);supported by the Open Research Fund Program of Key Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University (Grant Nos. szjj2019-002,szjj2019-004,szjj-2017-100-1-002).
In the present paper, the interior non-uniformity of oscillating gas bubbles in liquids under an acoustic field is theoretically investigated, as well as the temperature non-uniformity in the surrounding liquid. The p...
Fishes interact with the fluid environment using various surfaces.These multiple control surfaces work in combination to produce the thrust and the balance torques in a steady swimming,to maneuver and to position them...
the US National Science Foundation(Grant No.CBET-1706938);the Extreme Science and Engineering Discovery Environment(XSEDE)(Grant Nos.OCE170015,ENG 180008);XSEDE is supported by National Science Foundation(Grant No.ACI-1548562).
Oscillating-water-column (OWC) devices provide a practical and convenient way to convert wave energy to electricity.Wave loads on bottom-sitting WECs are important design parameters for their foundation safety.This st...
This paper shows the results of the smooth particle hydrodynamics(SPH) modelling of the hydraulic jump at an abrupt drop,where the transition from supercritical to subcritical flow is characterised by several flow p...
supported by the Ministry of Education of the Czech Republic(Research Grant No.MSM 245100304)
A wall motion of a bubble freely oscillating in a liquid is studied from the point of view of energy conversions at different instants. It is shown that the time of the bubble oscillation can be divided into two disti...
Project supported by the Science Fund for Creative Research Groups of the National Natural Science Foundation of China(Grant No.51621092);the National Natural Science Foundation of China(Grant No.51579171);Tianjin Pro-gram of Applied Foundation and Advanced-Technology Re-search(Grant No.12JCQNJC04100);TH-1A supercompu-ter
The lattice Boltzmann method is used to simulate the oscillating-grid turbulence directly with the aim to reproduce the experimental results obtained in laboratory. The numerical results compare relatively well with t...
Project supported by the National Natural Science Foundation of China(Grant Nos.51209184,51479175 and 51679212);the Natural Science Foundation of Zhejiang Province(Grant No.LR16E090002)
The flow past an in-line forced oscillating square cylinder at Reynolds number of 200 is studied using an in-house code, named constrained interpolation profile method developed in Zhejiang University (CIP-ZJU). The...
Universiti Kebangsaan Malaysia for the financial support during the author’s postgraduate studies
A quasi-isotropic, quasi-homogeneous turbulence generated by an oscillating-grid, spatially decays according to power law of u ∝ Z-nM , where u is the root mean square (rms) horizontal velocity, Z is the vertical d...
supported by the National Natural Science Foundation of China(Grant No.51506051);the Open Research Fund Program of State Key Laboratory of Water Resources and Hydropower Engineering Science,Wuhan University(Grant No.2014SDG01)
The study of nanobubbles (with sizes of the order of tens to hundreds of nanometers) is currently a hot spot of cavitation and bubble dynamics. In the literature, classical formulas are widely employed for the predi...
In order to identify the influence of shape comers on the instantaneous forces in the case of oscillating bodies, the simula- ted flow field is compared for two kinds of cross sections: diamond prism and circular cyl...