supported by the National Key Technologies Research and Development(R&D)Program by the Ministry of Science and Technology of China(No.2017YFB0406100);the National Natural Science Foundation of China(No.51676123)。
The isothermal single-component multi-phase lattice Boltzmann method(LBM)combined with the particle motion model is used to simulate the detailed process of liquid film rupture induced by a single spherical particle.T...
Project supported by the National Basic Research Program of China(No.2014CB744100);the National Natural Science Foundation of China(Nos.61403245 and 91648119);the Shanghai Municipal Science and Technology Commision(No.14500500400)
We present a new aerodynamic design method based on the lattice Boltzmann method (LBM) and the adjoint approach. The flow field and the adjoint equation are numerically simulated by the GILBM (generalized form of i...
Project supported by the Science Challenge Program(No.TZ2016001);the National Natural Science Foundation of China(Nos.11472277,11572331,11232011,and 11772337);the Strategic Priority Research Program,Chinese Academy of Sciences(CAS)(No.XDB22040104);the Key Research Program of Frontier Sciences,CAS(No.QYZDJ-SSW-SYS002);the National Basic Research Program of China(973 Program)(No.2013CB834100)
The lattice Boltzmann method (LBM) is coupled with the multiple-relaxation- time (MRT) collision model and the three-dimensional 19-discrete-velocity (D3Q19) model to resolve intermittent behaviors on small scal...
supported by the National Natural Science Foundation of China(Grant No.11372068);the National Key Basic Research and Development Program of China(Grant No.2014CB744104)
We integrate the lattice Boltzmann method(LBM) and immersed boundary method(IBM) to capture the coupling between a rigid boundary surface and the hydrodynamic response of an enclosed particle laden fluid. We focus on ...
Project supported by the National Basic Research Program of China(Grant No.2011CB707601);the National Natural Science Foundation of China(Grant Nos.51306037 and 51375089);the National Science Foundation for Post-doctoral Scientists of China(Grant No.2012M511647)
The inertial secondary flow is particularly important tbr hydrodynamic lbcusing and particle manipulation m biomed- ical research. In this paper, the development of the inertial secondary flow structure in a curved mi...
Supported by the National Basic Research Program of China(2012CB224806);the National Natural Science Foundation of China(20990224,21276256);the National Natural Science Fund for Distinguished Young Scholars(21025627);the National High Technology Research and Development Program of China(2012AA03A606)
The transport of liquid plugs in microchannels is very important for many applications such as in medical treatments in airways and in extraction of oil from porous rocks.A plug of wetting and non-wetting liquids driv...
supported by the National Natural Science Foundation of China(Grant No.51106158);the National Basic Research Program of China(Grant No.2011CB710705)
Exothermic reactor is the main part in a chemical heat pump. It involves complex multi-component exothermal chemical reaction in catalyst-filled porous media. The lattice Boltzmann method (LBM) is developed to simulat...
the National Natural Science Foundation of China (40875008);the National Basic Research Program of China (2010CB951804)
Cold fronts occur in northern East Asia during winter and spring.After cold frontal passage,airflow is downward and accompa-nying strong winds fluctuate significantly;this is termed wind gusts.Analysis of observation ...
supported by the National Natural Science Foundation of China(Nos. 50874123 and 51174236);National Basic Research Program of China(No. 2011CB606306)
This work presents a numerical study on the dynamic high velocity compaction of the metal powder. The analysis of the process is based on a mesoscopic approach using multi-speed lattice Boltzmann method. The boundary ...
Supported by the Science Foundations of LCP and CAEP under Grant Nos. 2009A0102005 and 2009B0101012;National Natural Science Foundation of China under Grant Nos. 11075021, 11074300, and 11074303;National Basic Research Program (973 Program) under Grant No. 2007CB815105;Fundamental Research Funds for the Central University under Grant No. 2010YS03;Technology Support Program of LangFang under Grant Nos. 2010011029/30/31;Science Foundation of NCIAE under Grant No. 2008-ky-13
We further develop the lattice Boltzmann (LB) model [Physica A 382 (2007) 502] for compressible flows from two aspects. Firstly, we modify the Bhatnagar Gross Krook (BGK) collision term in the LB equation, which...