Published November 2002 | Version v1
Journal article

Particle imaging velocimetry experiments and lattice-Boltzmann simulations on a single sphere settling under gravity

  • 1. Kramers Laboratorium voor Fysische Technologie, Delft University of Technology, Prins Bernhardlaan 6, 2628 BW Delft (Netherlands)

Description

A comparison is made between experiments and simulations on a single sphere settling in silicon oil in a box. Cross-correlation particle imaging velocimetry measurements were carried out at particle Reynolds numbers ranging from 1.5 to 31.9. The particle Stokes number varied from 0.2 to 4 and at bottom impact no rebound was observed. Detailed data of the flow field induced by the settling sphere were obtained, along with time series of the sphere's trajectory and velocity during acceleration, steady fall and deceleration at bottom approach. Lattice-Boltzmann simulations prove to capture the full transient behavior of both the sphere motion and the fluid motion. The experimental data were used to assess the effect of spatial resolution in the simulations over a range of 2-8 grid nodes per sphere radius. The quality of the flow field predictions depends on the Reynolds number. When the sphere is very close to the bottom of the container, lubrication theory has been applied to compensate for the lack of spatial resolution in the simulations

Additional details

Identifiers

Publishing Information

Journal Title
Physics of Fluids (1994)
Journal Volume
14
Journal Issue
11
Journal Page Range
p. 4012-4025
ISSN
1070-6631
CODEN
PHFLE6

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
35008809
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Resource subtype / Literary indicator
Numerical Data
Descriptors DEI
ACCELERATION; BOLTZMANN EQUATION; COMPUTERIZED SIMULATION; DISPERSIONS; EXPERIMENTAL DATA; GRAVITATION; LUBRICATION; REYNOLDS NUMBER; RHEOLOGY; SEDIMENTATION; SPHERES; THEORETICAL DATA; TWO-PHASE FLOW; VELOCITY
Descriptors DEC
DATA; DIFFERENTIAL EQUATIONS; EQUATIONS; FLUID FLOW; INFORMATION; INTEGRO-DIFFERENTIAL EQUATIONS; KINETIC EQUATIONS; NUMERICAL DATA; PARTIAL DIFFERENTIAL EQUATIONS; SIMULATION

Optional Information

Notes
(c) 2002 American Institute of Physics.