THE EFFECT OF PARTICLE SIZE AND CONCENTRATION ON THE EFFICIENCY OF A MULTICYCLONE DEVICE
Keywords:
Multicyclone, particle size, concentration, efficiency, mathematical model, industrial air purificationAbstract
This article analyzes the effect of particle size and their concentration on the efficiency of a multicyclone device. Multicyclone technology is an important tool in industrial air purification, but its effectiveness depends on the physical properties of the particles. The research tries to explain the effectiveness depending on the particle size and concentration through mathematical modeling. Based on this model, the effect of particles on the device performance is clearly analyzed and the results are shown. The mathematical model is based on Newton’s second law and mass balance.
References
Sharibaev, N., Tursunov, A., & Djuraev, S. (2022). Mathematical modeling of the laws of airborne distribution of dust particles generated in manufacturing plants. In Journal of Physics: Conference Series (Vol. 2373). Institute of Physics. https://doi.org/10.1088/1742-6596/2373/7/072043
Ochiyev, B. S., & Jumayev, T. Y. (2019). "Multisiklon qurilmalar samaradorligini oshirish usullari." O‘zbekiston Fanlar Akademiyasi axborotnomasi, 47(2), 112-118.
Guliaev, A. A., & Ivanov, V. K. (2018). "Industrial chang tutgichlarining samaradorligini oshirish usullari." Chang va gaz tutish texnologiyalari jurnali, 29(3), 56-61.
Smith, J. D. (2017). "Particle Size and Concentration Effects on Cyclone Separators." Chemical Engineering Science, 64(10), 230-242.
Kim, S. K., & Lee, J. H. (2016). "Influence of Particle Size on Multicyclone Efficiency in Industrial Applications." Journal of Environmental Engineering, 142(4), 04016010.
Xolmatov, U. N., & Shamsiev, D. K. (2015). "Gazli aralashmalardagi chang zarralarining o‘lchami va kontsentratsiyasining multisiklonli qurilmalarga ta’siri." Toshkent Davlat Texnika Universiteti ilmiy axborotlari, 63(3), 27-34.
Additional Files
Published
How to Cite
Issue
Section
Categories
License
Copyright (c) 2024 Шерзод Джураев

This work is licensed under a Creative Commons Attribution 4.0 International License.