TY - JOUR
T1 - Comparación numérico experimental de la caída de presión a través de un hidrociclón
AU - Alcocer De Agüero, Emmanuel
AU - Cuevas-Martínez, Jesús
AU - Gutiérrez-Torres, Claudia Del Carmen
AU - Jiménez-Bernal, José Alfredo
AU - Barbosa-Saldaña, Juan Gabriel
N1 - Publisher Copyright:
© 2020, Scipedia S.L.. All rights reserved.
PY - 2020
Y1 - 2020
N2 - This paper shows the comparative results of an experimental and numerical study. The numerical simulations were performed with the ANSYS/Fluent software by means of CFD applying RNG k-ε and standard k-ω turbulence models. Experimental data were recorded of a hydrocyclone mounted on a test bench which operates with a water flow. The values extracted are the inlet pressure, outlet pressure, inlet velocity and outlet velocity. In order to investigate the pressure drop underwent by a hydrocyclone, a pressure assessment was carried out in different areas of the divice geometry. The results of the numerical study were compared and correlated with the experimental data. The numerical values report a percentage difference of 10.45% for the RNG k-ε model and 1.57% for the standard k-ω model, with respect to the experimentally obtained output pressure. The percentage difference between experimental and numerical pressure drop is 0.04% for standard k-ω model and 0.24% for RNG k-ε model. By studying finite volumes, the components of axial velocity, tangential velocity and turbulence intensity are calculated. These phenomena are studied simultaneously in this work. The turbulence models used to generate the corresponding analyzes in this work show similarity between both results and flow behavior. The concordance between the computational results and the experimental data is acceptable, so that the numerical simulations applied reach the purpose of this investigation.
AB - This paper shows the comparative results of an experimental and numerical study. The numerical simulations were performed with the ANSYS/Fluent software by means of CFD applying RNG k-ε and standard k-ω turbulence models. Experimental data were recorded of a hydrocyclone mounted on a test bench which operates with a water flow. The values extracted are the inlet pressure, outlet pressure, inlet velocity and outlet velocity. In order to investigate the pressure drop underwent by a hydrocyclone, a pressure assessment was carried out in different areas of the divice geometry. The results of the numerical study were compared and correlated with the experimental data. The numerical values report a percentage difference of 10.45% for the RNG k-ε model and 1.57% for the standard k-ω model, with respect to the experimentally obtained output pressure. The percentage difference between experimental and numerical pressure drop is 0.04% for standard k-ω model and 0.24% for RNG k-ε model. By studying finite volumes, the components of axial velocity, tangential velocity and turbulence intensity are calculated. These phenomena are studied simultaneously in this work. The turbulence models used to generate the corresponding analyzes in this work show similarity between both results and flow behavior. The concordance between the computational results and the experimental data is acceptable, so that the numerical simulations applied reach the purpose of this investigation.
KW - CFD
KW - Experimental data
KW - Finite volumes
KW - Hydrocyclone
KW - Numerical results
KW - Turbulence models
UR - http://www.scopus.com/inward/record.url?scp=85092898838&partnerID=8YFLogxK
U2 - 10.23967/J.RIMNI.2020.09.006
DO - 10.23967/J.RIMNI.2020.09.006
M3 - Artículo
AN - SCOPUS:85092898838
SN - 0213-1315
VL - 36
SP - 1
EP - 12
JO - Revista Internacional de Metodos Numericos para Calculo y Diseno en Ingenieria
JF - Revista Internacional de Metodos Numericos para Calculo y Diseno en Ingenieria
IS - 3
M1 - 45
ER -