Numerical Investigation of Aerosolization in the Venturi Dustiness Tester: Aerodynamics of a Particle on a Hill

Author:

Palakurthi Nithin Kumar1,Ghia Urmila1,Turkevich Leonid A.2

Affiliation:

1. Mechanical and Materials Engineering, College of Engineering and Applied Science, University of Cincinnati, Cincinnati, OH 45221-0072

2. Engineering and Physical Hazards Branch (EPHB), Division of Field Studies and Engineering (DFSE), National Institute for Occupational Safety and Health (NIOSH), Centers for Disease Control and Prevention (CDC), 1090 Tusculum Avenue, Cincinnati, OH 45226

Abstract

Abstract Understanding particle detachment from surfaces is necessary to better characterize dust generation and entrainment. Previous work has studied the detachment of particles from flat surfaces. This work generalizes this to investigate the aerodynamics of a particle attached to various locations on a model hill. This work serves as a model for dust aerosolization in a tube, as powder is injected into the Venturi dustiness tester (VDT). The particle is represented as a sphere in a parallel plate channel, or, in two dimensions, as a cylinder oriented perpendicular to the flow. The substrate is modified to include a conical hill (3D) or wedge (2D), and the test particle is located at various positions on this hill. The governing incompressible Navier–Stokes equations are solved using the finite volume fluent code. The coefficients of lift and drag are compared with the results on the flat substrate. Enhanced drag and significantly enhanced lift are observed as the test particle is situated near the summit of the hill.

Funder

National Institute for Occupational Safety and Health

Publisher

ASME International

Subject

Mechanical Engineering

Reference74 articles.

1. Dustiness of Fine and Nanoscale Powders;Ann. Occup. Hyg.,2013

2. Comment on Comparison of Powder Dustiness Methods;Ann. Occup. Hyg.,2014

3. Aeolian Sand Ripples: Experimental Study of Fully Developed States;Phys. Rev. Lett.,2006

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