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Journal of Fluid Mechanics, ISSN 0022-1120, 06/2017, Volume 820
The flow around different prolate (needle-like) and oblate (disc-like) spheroids is studied using a multi-relaxation-Time lattice Boltzmann method. We compute... 
particle/fluid flow | Condensed Matter Physics | Mechanics of Materials | Mechanical Engineering | multiphase and particle-laden flows
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 10/2016, Volume 152, pp. 783 - 794
The hydrodynamics of a dense solid–gas fluidized bed is studied, using a two fluid model (TFM) based on our newly developed kinetic theory of granular flow... 
Rough particles | Discrete particle model | Fluidized granular bed | PIV-DIA | Multiphase flow | Two-fluid model | ENGINEERING, CHEMICAL | DENSE | GAS-FLUIDIZED BEDS | TRACKING | DISCRETE PARTICLE | SIMULATION | Fluid dynamics | Analysis | Models
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 11/2018, Volume 189, pp. 84 - 101
A novel granular discrete element method (DEM) is introduced to simulate mixtures of particles of any convex shape. To quickly identify pairs of particles in... 
Non-spherical particle | Packing | Solid volume fraction | Chemistry(all) | Chemical Engineering(all) | Industrial and Manufacturing Engineering | Discrete element method | Orientational ordering | Contact detection
Journal Article
Journal of chemical physics, ISSN 0021-9606, 2009, Volume 130, Issue 14
An efficient simulation method is presented for Brownian fiber suspensions, which includes both uncrossability of the fibers and hydrodynamic interactions... 
METIS-256772 | IR-73732
Journal Article
Physical Review E, ISSN 1539-3755, 01/2017, Volume 95, Issue 1
We present results from a new variant of a diffusion hopping model, the convective diffusive lattice model, to describe the behavior of a particulate flux... 
Journal Article
Journal Article
Physical Review E (Statistical, Nonlinear, and Soft Matter Physics), ISSN 1539-3755, 2017, Volume 95, Issue 1
We present results from a new variant of a diffusion hopping model, the convective diffusive lattice model, to describe the behavior of a particulate flux... 
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 10/2016, Volume 152, pp. 767 - 782
We derive a kinetic theory of granular flow (KTGF) for frictional spheres in dense systems, including rotation, sliding and sticking collisions. We use the... 
Rough particles | Fluidized granular bed | Kinetic theory | Rotation | Two-fluid model | ROUGH SPHERES | ENGINEERING, CHEMICAL | SPHERICAL-PARTICLES | TRANSPORT | INELASTIC SPHERES | GAS-FLUIDIZED BEDS | CFD SIMULATION | DENSE GAS | Analysis | Force and energy
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 10/2016, Volume 152, pp. 783 - 794
The hydrodynamics of a dense solid-gas fluidized bed is studied, using a two fluid model (TFM) based on our newly developed kinetic theory of granular flow... 
rough particles | rotation | two-fluid model | kinetic theory | Fluidized bed | discrete particle model
Journal Article
Journal of chemical physics, ISSN 0021-9606, 2014, Volume 141, Issue 24
We present a Galilean invariant, momentum conserving first order Brownian dynamics scheme for coarse-grained simulations of highly frictional soft matter... 
METIS-310655 | IR-96032
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 04/2019, Volume 198, pp. 184 - 197
Particle based approaches are one of the recent modeling techniques to overcome the computational limitation in multiscale modeling of complex processes, for... 
Stochastic rotation dynamics | Nonlinear reactions | Chemistry(all) | Chemical Engineering(all) | Industrial and Manufacturing Engineering | Unsteady state modelling | Heterogenous catalysis | Multiscale modelling | Multicomponent diffusion
Journal Article
Particuology, ISSN 1674-2001, 08/2019
Journal Article
Powder Technology, ISSN 0032-5910, 07/2017, Volume 316, pp. 256 - 264
The effect of normal restitution coefficient and friction coefficient on the hydrodynamics of a dense bubbling solid-gas fluidized bed is investigated using a... 
Rough particles | Discrete particle model | Fluidization | Rotation | Two-fluid model | Chemical Engineering(all) | GRANULAR FLOW | MODEL | GAS-PARTICLE FLOW | ENGINEERING, CHEMICAL | SPHERICAL-PARTICLES | INELASTIC SPHERES | KINETIC-THEORY | DENSE GAS | Fluid dynamics | Analysis | Investigations
Journal Article
AIChE Journal, ISSN 0001-1541, 05/2018, Volume 64, Issue 5, pp. 1573 - 1590
Fluidization is widely used in industries and has been extensively studied, both experimentally and theoretically, in the past. However, most of these studies... 
Journal Article
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 02/2018, Volume 176, pp. 454 - 475
A stochastic Direct Simulation Monte Carlo (DSMC) method has been extended for handling bubble-bubble and bubble-wall collisions. Bubbly flows are generally... 
Computational performance | Experimental validation | Bubbly flow | Chemistry(all) | Chemical Engineering(all) | Industrial and Manufacturing Engineering | Discrete Bubble Model | Direct Simulation Monte Carlo
Journal Article
Soft Matter, ISSN 1744-683X, 12/2017, Volume 13, Issue 48, pp. 9138 - 9146
Abstract We investigate creeping viscoelastic fluid flow through two-dimensional porous media consisting of random arrangements of monodisperse and bidisperse... 
Journal Article
Journal Article
Powder Technology, ISSN 0032-5910, 04/2018, Volume 329, pp. 332 - 344
In this experimental study the segregation behavior for fluidized mixtures of spherical and cylindrical particles is investigated. In industry, fluidization of... 
Granular dynamics | Mixing | Segregation | Chemical Engineering(all) | Fluidization | Particle shape | Fluidized beds
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 07/2017, Volume 166, pp. 28 - 41
A numerical methodology is presented for simulating 3D multiphase flows through complex geometries on a non-body conformal Cartesian computational grid. A... 
Enhanced Oil Recovery (EOR) | Volume of Fluid (VOF) | Water flooding | Contact line dynamics | Chemistry(all) | Chemical Engineering(all) | Industrial and Manufacturing Engineering | Static and dynamic contact angle | Applied Mathematics | Immersed Boundary Method (IBM)
Journal Article
Computers & Fluids, ISSN 0045-7930, 10/2018, Volume 175, pp. 111 - 128
In this paper, an accurate and stable sharp interface immersed boundary method(IBM) is presented for the direct numerical simulation of particle laden flows.... 
Computer Science(all) | Ghost cell approach | Projected area | Torque computation | Particle laden flow | Immersed boundary method | Spurious oscillations | Engineering(all)
Journal Article
Physical Review E, ISSN 1539-3755, 2017, Volume 96, Issue 2
Connecting the macroscopic world of continuous fields to the microscopic world of discrete molecular events is important for understanding several phenomena... 
Journal Article
Journal Article
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