Dynamic Modeling and Simulation of a Slurry Mixing and Pumping Process: An Industrial Case
Ridouane Oulhiq, Khalid Benjelloun, Maarouf Saad, Yassine Kali, Laurent Deshayes
2019
Abstract
In this paper, a dynamic model of a slurry mixing and pumping process is proposed. The centrifugal pump is modeled based on the hydraulic application, the hydraulic part and the induction motor models, taking into account the pumped slurry density. This paper also proposes a new approach to estimate the parameters of the pump’s hydraulic part model based on the pump characteristic curves. Additionally, a dynamic simulation of the system is realized under MATLAB/Simulink environment and the variation effect of the process inputs on the outputs is studied.
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in Harvard Style
Oulhiq R., Benjelloun K., Saad M., Kali Y. and Deshayes L. (2019). Dynamic Modeling and Simulation of a Slurry Mixing and Pumping Process: An Industrial Case.In Proceedings of the 9th International Conference on Simulation and Modeling Methodologies, Technologies and Applications - Volume 1: SIMULTECH, ISBN 978-989-758-381-0, pages 27-35. DOI: 10.5220/0007774000270035
in Bibtex Style
@conference{simultech19,
author={Ridouane Oulhiq and Khalid Benjelloun and Maarouf Saad and Yassine Kali and Laurent Deshayes},
title={Dynamic Modeling and Simulation of a Slurry Mixing and Pumping Process: An Industrial Case},
booktitle={Proceedings of the 9th International Conference on Simulation and Modeling Methodologies, Technologies and Applications - Volume 1: SIMULTECH,},
year={2019},
pages={27-35},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0007774000270035},
isbn={978-989-758-381-0},
}
in EndNote Style
TY - CONF
JO - Proceedings of the 9th International Conference on Simulation and Modeling Methodologies, Technologies and Applications - Volume 1: SIMULTECH,
TI - Dynamic Modeling and Simulation of a Slurry Mixing and Pumping Process: An Industrial Case
SN - 978-989-758-381-0
AU - Oulhiq R.
AU - Benjelloun K.
AU - Saad M.
AU - Kali Y.
AU - Deshayes L.
PY - 2019
SP - 27
EP - 35
DO - 10.5220/0007774000270035