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22篇 您的检索式:作者名="A.B. Yu"
    题名 作者 年代 出处 被引量
1Linking discrete particle simulation to continuum process modelling for granular matter: Theory and application显示文摘Two approaches are widely used to describe particle systems: the continuum approach at macroscopic scale and the discrete approach at particle scale. Each has its own advantages and disadvantages in the modelling of particle systems. It is of paramount signiflcance to develop a theory to overcome the disadvantages of the two approaches. Averaging method to link the discrete to continuum approach is a potential technique to develop such a theory. This paper introduces an averaging method, including the theory and its application to the particleflow in a hopper and the particle-fluid flow in an ironmaking blast furnace.H.P. Zhu Z.Y. Zhou Q.F. Hou A.B. Yu 2011Particuology2011,9,4:2
2Multiscale modeling and simulation of polymer nanocomposites显示文摘Q.H. Zeng A.B. Yu G.Q. Lu 2007Progress in Polymer Science2007,,2:2
3An analysis of the chaotic motion of particles of different sizes in a gas fluidized bed显示文摘The dynamic behavior of individual particles during the mixing/segregation process of particle mixtures in a gas fluidized bed is analyzed. The analysis is based on the results generated from discrete particle simulation, with the focus on the trajectory of and forces acting on individual particles. Typical particles are selected representing three kinds of particle motion: a flotsam particle which is initially at the bottom part of the bed and finally fluidized at the top part of the bed; a jetsam particle which is initially at the top part of the bed and finally stays in the bottom de-fluidized layer of the bed; and a jetsam particle which is intermittently joining the top fluidized and bottom de-fluidized layers. The results show that the motion of a particle is chaotic at macroscopic or global scale, but can be well explained at a microscopic scale in terms of its interaction forces and contact conditions with other particles, particle-fluid interaction force, and local flow structure. They also highlight the need for establishing a suitable method to link the information generated and modeled at different time and length scales.Y.Q. Feng A.B. Yu 2008Particuology2008,6,6:2
4Numerical study of the gas–liquid–solid flow in hydrocyclones with different configuration of vortex finder显示文摘B. Wang A.B. Yu 2007Chemical Engineering Journal2007,,1:2
5Numerical modelling of the gas flow through perforated plates显示文摘B.Y. Guo Q.F. Hou A.B. Yu L.F. Li J. Guo 2012Chemical Engineering Research and Design2012,,:1
6Three-dimensional modelling of in-furnace coal/coke combustion in a blast furnace显示文摘Y.S. Shen B.Y. Guo A.B. Yu P.R. Austin P. Zulli 2010Fuel2010,,2:1
7Discrete particle simulation of particulate systems: Theoretical developments显示文摘H.P. Zhu Z.Y. Zhou R.Y. Yang A.B. Yu 2007Chemical Engineering Science2007,,13:1
8Three-dimensional modelling of in-furnace coal/coke combustion in a blast furnace显示文摘Y.S. Shen B.Y. Guo A.B. Yu P.R. Austin P. Zulli 2010Fuel2010,,2:1
9Effect of the size of media on grinding performance in stirred mills显示文摘C.T. Jayasundara R.Y. Yang A.B. Yu 2011Minerals Engineering2011,,:1
10CFD–DEM modelling of particle flow in IsaMills – Comparison between simulations and PEPT measurements显示文摘C.T. Jayasundara R.Y. Yang B.Y. Guo A.B. Yu I. Govender A. Mainza A. van der Westhuizen J. Rubenstein 2010Minerals Engineering2010,,3:1
11Multiscale modeling and simulation of polymer nanocomposites显示文摘Q.H. Zeng A.B. Yu G.Q. Lu 2007Progress in Polymer Science2007,,2:1
12Numerical simulation of complex particle–fluid flows显示文摘K.W. Chu A.B. Yu 2007Powder Technology2007,,3:1
13Numerical simulation of the gas–solid flow in a bed with lateral gas blasting显示文摘B.H. Xu A.B. Yu S.J. Chew P. Zulli 2000Powder Technology2000,,1:1
14Numerical simulation of the gas-solid flow in a fluidized bed by combining discrete particle method with computational fluid dynamics显示文摘B.H. Xu A.B. Yu 1997Chemical Engineering Science1997,,16:1
15CFD–DEM study of the effect of particle density distribution on the multiphase flow and performance of dense medium cyclone显示文摘K.W. Chu B. Wang A.B. Yu A. Vince G.D. Barnett P.J. Barnett 2009Minerals Engineering2009,,11:1
16Numerical studies of the effects of medium properties in dense medium cyclone operations显示文摘B. Wang K.W. Chu A.B. Yu A. Vince 2009Minerals Engineering2009,,11:1
17Numerical study of particle–fluid flow in hydrocyclones with different body dimensions显示文摘B. Wang A.B. Yu 2006Minerals Engineering2006,,10:1
18Numerical analysis of hydrocyclones with different vortex finder configurations显示文摘M. Ghodrat S.B. Kuang A.B. Yu Andrew Vince G.D. Barnett P.J. Barnett 2014Minerals Engineering2014,,:1
19Numerical study of the effects of particle size and polydispersity on the agglomerate dispersion in a cyclonic flow显示文摘Z.B. Tong R.Y. Yang K.W. Chu A.B. Yu S. Adi H.K. Chan 2009Chemical Engineering Journal2009,,2:1
20CFD-DEM modelling of multiphase flow in dense medium cyclones显示文摘K.W. Chu B. Wang A.B. Yu A. Vince 2009Powder Technology2009,,3:1
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