Sherzod Sobirjonovich, Djurayev
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KINEMATIC SCHEME AND DYNAMIC MODEL OF THE NEWLY DESIGNED MULTICYCLONE DEVICE Sherzod Sobirjonovich, Djurayev; Nosir Yusupjanovich, Haribayev
Journal of Higher Education and Academic Advancement Vol. 2 No. 2 (2025): Journal of Higher Education and Academic Advancement
Publisher : PT. Antis International Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61796/ejheaa.v2i2.1252

Abstract

Objective: This study aims to design and analyze a newly developed multicyclone device for improved impurity removal in cotton processing systems. Method: The design incorporates advanced kinematic schemes, and dynamic modeling is carried out by deriving the equations of motion using Lagrange's Second Equation to optimize performance. Results: The results show that the optimized multicyclone device significantly reduces rotational irregularities, minimizing fiber damage and enhancing impurity extraction efficiency. Novelty: This research offers a novel approach to cotton cleaning by integrating advanced dynamic modeling, which enhances the overall performance and efficiency of cotton processing systems, addressing key challenges in the industry.