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Computational Fluid Dynamics Reveals Mass Transfer Limitations in a Pilot-Scale Microbial Electrolysis Cell. [PDF]
Guerrero-Sodric O +4 more
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Impact of hybrid ventilation strategies on mitigating aerosolized respiratory droplet dispersion in kitchen environments. [PDF]
Singararaj K +3 more
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Industrial Perspective on the Manufacturing of Lipid Nanoparticles for Nucleic Acid Delivery. [PDF]
Hong Hoang J +4 more
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CFD-Based Evaluation of Stirred Tank Designs for High-Viscosity Copolymer Aramid Dope Mixing. [PDF]
Yeo DH, Yoon HS, Yu SH, Sim JH.
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Turbulent mixing of passive scalar near turbulent and non-turbulent interface in mixing layers
Physics of Fluids, 2015A direct numerical simulation of a temporally developing mixing layer with a passive scalar transport is performed for various Schmidt numbers (Sc = 0.25, 1, 4, and 8). Turbulent mixing is investigated near the turbulent/non-turbulent interface (TNTI), which is a layer consisting of the turbulent sublayer (TSL) and viscous superlayer (VSL).
Tomoaki Watanabe +2 more
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Fractal modelling of turbulent mixing
Combustion Theory and Modelling, 1999The aim of this work is to propose a new model for turbulent flows, called the fractal model (FM), applicable both in a Reynolds averaged Navier–Stokes (RANS) and a large-eddy simulation (LES) formulation, with the ultimate goal of applying it to simulate turbulent combustion irrelevant of its mode (premixed or non-premixed).
GIACOMAZZI E. +2 more
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A nonsequential turbulent mixing process
Physics of Fluids, 2010We study the relaxation of an initially segregated scalar mixture in a randomly stirred medium, aiming at describing the overall concentration distribution of the mixture, its shape, and its rate of deformation as it evolves toward uniformity. An ever dispersing mixture is realized by releasing a plume of scalar in a large scale, sustained turbulent ...
Duplat, J. +2 more
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