Author:
Azimian M.,Lichti M.,Bart H.-J.
Abstract
Hydroabrasion in particulate flows plays an important role in various industrial and natural processes. To predict
the influence of it in a pipeline, channel or a fitting, it is essential to characterize the effects in a simple standardized
geometry. An example to this is a pipe channel with a cylindrical obstacle adjusted inside the channel perpendicular to the
flow direction. Results of flow field are generated by using the non-invasive Laser/Phase Doppler Anemometry
(LDA/PDA) measurement technique. The velocity profiles of single phase and particulate flow from computational fluid
dynamics (CFD) and discrete element method (DEM) simulations were validated by the LDA experimental data. The
simulations were performed on the basis of Euler-Lagrange technique for both CFD and DEM. The measurements show
that a Karman vortex field forms behind the obstacle and particles move inside this field with an average negative velocity
of up to 25% of the fully developed velocity field. A comparison of CFD and DEM results with experimental data showed
that in Karman velocity field, the CFD results fit better to the LDA measurements. In the fully developed flow region and
also above and under the vortex field behind the obstacle, the DEM results match better with the LDA data.
Publisher
Bentham Science Publishers Ltd.
Subject
General Chemical Engineering
Cited by
21 articles.
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