Simulation of contaminant removal using Lattice Boltzmann Method - Couverture souple

Jahanshaloo, Leila; Che Sidik, Nor Azwadi

 
9783845432359: Simulation of contaminant removal using Lattice Boltzmann Method

Synopsis

After two decades of development, the Lattice Boltzmann method has gain noticeable popularity as an alternative numerical approach for modeling the fluid flow. The main objective of this research is to study the contaminated flow removal from rectangular cavity and the effects of Reynolds varying on the removal percentage. In this research, solid-fluid flow analysis using lattice Boltzmann method, is offered for over cavity flow by considering different Reynolds numbers with different cavity aspect ratios. This research intends to provide the liquid and solid particle interaction investigation results by employing the Lagrangian point force approach for the particle’s trajectory analysis in both lid driven cavity flow and flow over cavity.

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Présentation de l'éditeur

After two decades of development, the Lattice Boltzmann method has gain noticeable popularity as an alternative numerical approach for modeling the fluid flow. The main objective of this research is to study the contaminated flow removal from rectangular cavity and the effects of Reynolds varying on the removal percentage. In this research, solid-fluid flow analysis using lattice Boltzmann method, is offered for over cavity flow by considering different Reynolds numbers with different cavity aspect ratios. This research intends to provide the liquid and solid particle interaction investigation results by employing the Lagrangian point force approach for the particle’s trajectory analysis in both lid driven cavity flow and flow over cavity.

Biographie de l'auteur

Received B.Sc. from Iran Nushirvani University of Technology(NUT) (2002), M.Sc. from Universiti Technologi Malaysia(UTM) (2011), in mechanical engineering. She is currently a Ph.D. candidate at the department of Thermo-Fluid of (UTM). Her research interests are: Computational Fluid Dynamics, Heat Transfer and Particulate flow modelling.

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