Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Numerical simulation of bubble dispersion in turbulent Taylor-Couette flow

View through CrossRef
We investigate bubble dispersion in turbulent Taylor-Couette flow. The aim of this study is to describe the main mechanisms yielding preferential bubble accumulation in near-wall structures of the flow. We first proceed to direct numerical simulation of Taylor-Couette flows for three different geometrical configurations (three radius ratios η = R1/R2: η = 0.5, η = 0.72, and η = 0.91 with the outer cylinder at rest) and Reynolds numbers corresponding to turbulent regime ranging from 3000 to 8000. The statistics of the flow are discussed using two different averaging procedures that permit to characterize the mean azimuthal velocity, the Taylor vortices contribution and the small-scale turbulent fluctuations. The simulations are compared and validated with experimental and numerical data from literature. The second part of this study is devoted to bubble dispersion. Bubble accumulation is analyzed by comparing the dispersion obtained with the full turbulent flow field to bubble dispersion occurring at lower Reynolds numbers in previous works. Several patterns of preferential accumulation of bubbles have been observed depending on bubble size and the effect of gravity. For the smaller size considered, bubbles disperse homogeneously throughout the gap, while for the larger size they accumulate along the inner wall for the large gap width (η = 0.5). Varying the intensity of buoyancy yields complex evolution of the bubble spatial distribution. For low gravity effect, bubble entrapment is strong leading to accumulation along the inner wall in outflow regions (streaks of low wall shear stress). When buoyancy effect dominates on vortex trapping, bubbles rise through the vortices, while spiral patterns stretched along the inner cylinder are clearly identified. Force balance is analyzed to identify dominating forces leading to this accumulation and accumulation patterns are compared with previous experiments.
Title: Numerical simulation of bubble dispersion in turbulent Taylor-Couette flow
Description:
We investigate bubble dispersion in turbulent Taylor-Couette flow.
The aim of this study is to describe the main mechanisms yielding preferential bubble accumulation in near-wall structures of the flow.
We first proceed to direct numerical simulation of Taylor-Couette flows for three different geometrical configurations (three radius ratios η = R1/R2: η = 0.
5, η = 0.
72, and η = 0.
91 with the outer cylinder at rest) and Reynolds numbers corresponding to turbulent regime ranging from 3000 to 8000.
The statistics of the flow are discussed using two different averaging procedures that permit to characterize the mean azimuthal velocity, the Taylor vortices contribution and the small-scale turbulent fluctuations.
The simulations are compared and validated with experimental and numerical data from literature.
The second part of this study is devoted to bubble dispersion.
Bubble accumulation is analyzed by comparing the dispersion obtained with the full turbulent flow field to bubble dispersion occurring at lower Reynolds numbers in previous works.
Several patterns of preferential accumulation of bubbles have been observed depending on bubble size and the effect of gravity.
For the smaller size considered, bubbles disperse homogeneously throughout the gap, while for the larger size they accumulate along the inner wall for the large gap width (η = 0.
5).
Varying the intensity of buoyancy yields complex evolution of the bubble spatial distribution.
For low gravity effect, bubble entrapment is strong leading to accumulation along the inner wall in outflow regions (streaks of low wall shear stress).
When buoyancy effect dominates on vortex trapping, bubbles rise through the vortices, while spiral patterns stretched along the inner cylinder are clearly identified.
Force balance is analyzed to identify dominating forces leading to this accumulation and accumulation patterns are compared with previous experiments.

Related Results

The Canberra Bubble
The Canberra Bubble
According to the ABC television program Four Corners, “Parliament House in Canberra is a hotbed of political intrigue and high tension … . It’s known as the ‘Canberra Bubble’ and i...
Vapor Bubble Interaction With a Superheated Wall
Vapor Bubble Interaction With a Superheated Wall
Sliding bubbles are known to augment heat transfer rates on the surface on which they slide. The pre-cursor problem — the bubble approaching an inclined superheated wall provides t...
A Single Cavitation Bubble Induced Damage
A Single Cavitation Bubble Induced Damage
Abstract In the present work, we experimentally and numerically investigated the dynamics of a millimeter-sized cavitation bubble generated nearby a solid surface. I...
Pengaruh diameter lubang bubbles generator pada pengikatan CO2 dengan larutan kalium hidroksida 4 molar
Pengaruh diameter lubang bubbles generator pada pengikatan CO2 dengan larutan kalium hidroksida 4 molar
Bubble generator is an alternative technology for bubble producers. One of many other functions of bubble generator is as a purification tool. Type of bubble generator that's used ...
Numerical investigation of central breakup of large bubble induced by liquid jet
Numerical investigation of central breakup of large bubble induced by liquid jet
A large spherical bubble rising in quiescent liquid generally leads to the formation of a toroidal bubble (central breakup). In this paper, we investigate the bubble dynamics durin...
A CFD-PBM coupled model under entire turbulent spectrum for simulating a bubble column with highly viscous media
A CFD-PBM coupled model under entire turbulent spectrum for simulating a bubble column with highly viscous media
To account for the effect of liquid viscosity, the bubble breakup model considering turbulent eddy collision based on the inertial subrange turbulent spectrum was extended to the e...
Bubble Effect on the Structures of Weakly Turbulent Couette Taylor Flow
Bubble Effect on the Structures of Weakly Turbulent Couette Taylor Flow
In industrial applications, rotating flows have been recognized to enhance mixing and transfer properties. Moreover, bubbly flows are also used to improve transfers. Therefore, it ...
On the numerical simulation of compressible flows
On the numerical simulation of compressible flows
In this thesis, numerical tools to simulate compressible flows in a wide range of situations are presented. It is intended to represent a step forward in the scientific research of...

Back to Top