Modeling of Hydrodynamics in a 25 mm ϕ Pulsed Disk and Doughnut Column
Author(s) -
Rajnish Kumar,
D. Sivakumar,
Shekhar Kumar,
U. Kamachi Mudali
Publication year - 2013
Publication title -
isrn chemical engineering
Language(s) - English
Resource type - Journals
ISSN - 2090-861X
DOI - 10.1155/2013/547489
Subject(s) - mechanics , flooding (psychology) , throughput , drop (telecommunication) , materials science , physics , engineering , mechanical engineering , wireless , psychotherapist , psychology , telecommunications
The hydrodynamic parameters, namely, dispersed phase holdup and flooding throughput, have been investigated in 25 mm diameter pulsed disk and doughnut column (PDDC), in no mass transfer conditions. In this work, using existing correlations on plate pulsed columns, the dispersed phase holdup and the flooding throughput are empirically modelled well using the slip velocity concept. A good agreement is observed between experimental values and predicted values obtained from empirical correlation. The experimental data for dispersed phase holdup and flooding throughput has been modelled using the Van Delden model to describe the hydrodynamics characteristics of a PDDC and necessary adjustable parameters for drop size distribution and dispersed phase holdup are updated for 30% TBP-nitric acid system. The model parameters were estimated by minimizing the absolute error between experimental and theoretical values of flooding throughput and holdup data. It was found that the measured values and observed trends could be described accurately using this model after fitting holdup and flooding data. The error between the experimental and theoretical values of flooding throughput and holdup was found to be less than 10%.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom