Optimization high vortex finder of cyclone separator with computational fluids dynamics simulation

Cyclone separator is an equipment that separates particles contained in the fluid without using filters. The dust particles in the flue gases can be separated by utilizing centrifugal forces and different densities of particles, so that the exhaust gases to be cleaner before discharged into the envi...

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Main Authors: Ni Ketut Caturwati, Dwinanto, Attegar
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201710103009
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spelling doaj-e4f3fec1c6b44200861629d13e1a3c352021-02-02T06:46:32ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011010300910.1051/matecconf/201710103009matecconf_sicest2017_03009Optimization high vortex finder of cyclone separator with computational fluids dynamics simulationNi Ketut CaturwatiDwinantoAttegarCyclone separator is an equipment that separates particles contained in the fluid without using filters. The dust particles in the flue gases can be separated by utilizing centrifugal forces and different densities of particles, so that the exhaust gases to be cleaner before discharged into the environment. In this paper carried out a simulation by Computational of Fluids Dynamics to determine the number of particles that can be separated in several cyclone separator which has a ratio body diameter against vortex finder high varied as : 1:0.5 ; 1:0.75 ; 1:1 ; 1:1.25 and 1:1.5. Fluid inlet are air with antrachite impurity particles that are commonly found in the exhaust gases from tire manufacturers with inlet velocities varied as: 15 m/s and 30 m/s. The results of simulation show the fluids with 15 m/s of inlet velocity is generate particle separation value is higher than the fluids with 30 m/s inlet velocity for ratio of body diameter and height vortex finder a: 1:0.5 and 1:1.5. For both of inlet velocities the best ratio of body diameter and height vortex finder is 1:1.25, where it has the highest values of percentage trapped particles about 86% for 30 m/s input velocity and also for 15 m/s input velocity.https://doi.org/10.1051/matecconf/201710103009
collection DOAJ
language English
format Article
sources DOAJ
author Ni Ketut Caturwati
Dwinanto
Attegar
spellingShingle Ni Ketut Caturwati
Dwinanto
Attegar
Optimization high vortex finder of cyclone separator with computational fluids dynamics simulation
MATEC Web of Conferences
author_facet Ni Ketut Caturwati
Dwinanto
Attegar
author_sort Ni Ketut Caturwati
title Optimization high vortex finder of cyclone separator with computational fluids dynamics simulation
title_short Optimization high vortex finder of cyclone separator with computational fluids dynamics simulation
title_full Optimization high vortex finder of cyclone separator with computational fluids dynamics simulation
title_fullStr Optimization high vortex finder of cyclone separator with computational fluids dynamics simulation
title_full_unstemmed Optimization high vortex finder of cyclone separator with computational fluids dynamics simulation
title_sort optimization high vortex finder of cyclone separator with computational fluids dynamics simulation
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description Cyclone separator is an equipment that separates particles contained in the fluid without using filters. The dust particles in the flue gases can be separated by utilizing centrifugal forces and different densities of particles, so that the exhaust gases to be cleaner before discharged into the environment. In this paper carried out a simulation by Computational of Fluids Dynamics to determine the number of particles that can be separated in several cyclone separator which has a ratio body diameter against vortex finder high varied as : 1:0.5 ; 1:0.75 ; 1:1 ; 1:1.25 and 1:1.5. Fluid inlet are air with antrachite impurity particles that are commonly found in the exhaust gases from tire manufacturers with inlet velocities varied as: 15 m/s and 30 m/s. The results of simulation show the fluids with 15 m/s of inlet velocity is generate particle separation value is higher than the fluids with 30 m/s inlet velocity for ratio of body diameter and height vortex finder a: 1:0.5 and 1:1.5. For both of inlet velocities the best ratio of body diameter and height vortex finder is 1:1.25, where it has the highest values of percentage trapped particles about 86% for 30 m/s input velocity and also for 15 m/s input velocity.
url https://doi.org/10.1051/matecconf/201710103009
work_keys_str_mv AT niketutcaturwati optimizationhighvortexfinderofcycloneseparatorwithcomputationalfluidsdynamicssimulation
AT dwinanto optimizationhighvortexfinderofcycloneseparatorwithcomputationalfluidsdynamicssimulation
AT attegar optimizationhighvortexfinderofcycloneseparatorwithcomputationalfluidsdynamicssimulation
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