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Particle behavior in a turbulent flow within an axially corrugated geometry

Majal, Ghulam Mustafa (author)
KTH,Teknisk mekanik
Prahl Wittberg, Lisa, Docent, 1978- (author)
KTH,Linné Flow Center, FLOW,BioMEx,Teknisk mekanik
Mihaescu, Mihai, Professor, 1976- (author)
KTH,Competence Center for Gas Exchange (CCGEx),Linné Flow Center, FLOW
 (creator_code:org_t)
2021-08-08
2021
English.
In: Advances in Mechanical Engineering. - : SAGE Publications. - 1687-8132 .- 1687-8140. ; 13:8
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • In this numerical study particle behavior inside a sinusoidal pipe geometry is analyzed. The 3D geometry consists of three identical modules, with a periodic boundary condition applied to the flow in the stream wise direction. The incompressible, turbulent gas flow is modeled using a Large Eddy Simulation (LES) approach. Furthermore, the particle dynamics are simulated using a Lagrangian point force approach incorporating the Stokes drag and slip correction factor. Four different sizes of particles, corresponding to a Stokes number less than unity, are considered along with two different inflow conditions: continuous and pulsatile. The pulsatile inflow has an associated flow frequency of 80 Hz. The fluid flow through the sinusoidal pipe is characterized by weak flow separation in the expansion zones of the sinusoidal pipe geometry, where induced shear layers and weak recirculation zones are identified. Particle behavior under the two inflow conditions is quantified using particle dispersion, particle residence time, and average radial position of the particle. No discernible difference in the particle behavior is observed between the two inflow conditions. As the observed recirculation zones are weak, the particles are not retained within the cavities for a long duration of time, thereby reducing their likelihood of agglomerating.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Maskinteknik -- Strömningsmekanik och akustik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering -- Fluid Mechanics and Acoustics (hsv//eng)

Keyword

Large Eddy Simulation
corrugated geometry
Lagrangian particle tracking
particle radial distribution

Publication and Content Type

ref (subject category)
art (subject category)

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