Engineering

Engineering

ISSN Print: 1947-3931
ISSN Online: 1947-394X
www.scirp.org/journal/eng
E-mail: eng@scirp.org
"Turbulent Modulation in Particulate Flow: A Review of Critical Variables"
written by Ammar Saber, T. Staffan Lundström, J. Gunnar I. Hellström,
published by Engineering, Vol.7 No.10, 2015
has been cited by the following article(s):
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[1] Lagrangian wavelet analysis of turbulence modulation in particle–liquid mixing flows
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[2] Experimental investigation of the effects of particle near-wall motions on turbulence statistics in particle-laden flows
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[3] Two-Fluid RANS Modelling of Turbulence Created by a Vertically Falling/Moving Particle Cloud
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[4] An investigation of particles effects on wall-normal velocity fluctuations in sand-laden atmospheric surface layer flows
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[5] Differences of turbulence modulation by heavy particles on solid wall and erodible bed surface
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[6] Modulation of turbulence intensity by heavy finite-size particles in upward channel flow
2021
[7] Investigation of particle loading on the turbulent flow over a deep cavity
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[8] A Multiscale Approach for the Numerical Simulation of Turbulent Flows with Droplets
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[9] Experimental investigation on the effect of particles on large scale vortices of an isolated hemispherical roughness element
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[10] Progress in CFD Simulations of Fluidized Beds for Chemical and Energy Process Engineering
Progress in Energy and …, 2021
[11] Large scale structures of turbulent flows in the atmospheric surface layer with and without sand
2020
[12] Effect of Neutrally Buoyant Particles on Horizontal Turbulent Flow Through a Tee-Junction
2020
[13] Particles-induced turbulence: A critical review of physical concepts, numerical modelings and experimental investigations
2020
[14] Direct numerical simulation of particle-laden turbulent boundary layers without and with combustion
2020
[15] Modélisation numérique d'écoulements turbulents avec entraînement d'air au sein d'ouvrages hydrauliques
2019
[16] Sand-turbulence interaction in a high-Reynolds-number turbulent boundary layer under net sedimentation conditions
2019
[17] Flame propagation characteristics and explosion behaviors of aluminum dust explosions in a horizontal pipeline
2019
[18] Numerical analysis of particulate flows with the finite element method
2019
[19] Turbulent burning velocity of methane–air–dust premixed flames
Combustion and Flame, 2018
[20] Influence of Dusts on Premixed Methane-Air Flames
2018
[21] Assessment of Non-Spherical Point-Particle Models in LES using Direct Particle-Fluid Simulations
2018
[22] Turbulent energy dissipation rate modification due to particle insertion: Effect of Reynolds number
Chaos, Solitons & Fractals, 2018
[23] Particle-turbulence interaction in High-Reynolds-number Sand-laden Turbulent Boundary Layer
2018
[24] A spatiotemporal tree model for turbulence in dispersed phase multiphase flows: Energy dissipation rate behavior in single particle and binary particles arrays
AIP Conference Proceedings, 2017
[25] On the significance of two-way coupling in simulation of turbulent particle agglomeration
Powder Technology, 2017
[26] Unsteady numerical analysis of the liquid-solid two-phase flow around a step using Eulerian-Lagrangian and the filter-based RANS method
Journal of Mechanical Science and Technology, 2017
[27] Dynamical tree models for high Reynolds number turbulence applied in fluid-solid systems of 1D-space and time
Thesis, 2017
[28] Characterization and Prediction of Water Droplet Size in Oil-Water Flow
Dissertation, Ohio University, 2016
[29] Influence of Inertial Particles on Turbulence Characteristics in Outer and Near Wall Flow as Revealed With High Resolution Particle Image Velocimetry
2016
[30] О достаточных условиях устойчивости конвективного дисперсного течения
News of Altai State University, 2016
[31] Эффективный спектральный метод для исследования устойчивости дисперсных течений
News of Altai State University, 2016
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