Advances in Modeling and Simulation in Textile Engineering

Advances in Modeling and Simulation in Textile Engineering
Author :
Publisher : Woodhead Publishing
Total Pages : 468
Release :
ISBN-10 : 9780128229552
ISBN-13 : 0128229551
Rating : 4/5 (52 Downloads)

Book Synopsis Advances in Modeling and Simulation in Textile Engineering by : Nicholus Tayari Akankwasa

Download or read book Advances in Modeling and Simulation in Textile Engineering written by Nicholus Tayari Akankwasa and published by Woodhead Publishing. This book was released on 2021-03-28 with total page 468 pages. Available in PDF, EPUB and Kindle. Book excerpt: Advances in Modeling and Simulation in Textile Engineering: New Concepts, Methods, and Applications explains the advanced principles and techniques that can be used to solve textile engineering problems using numerical modeling and simulation. The book draws on innovative research and industry practice to explain methods for the modeling of all of these processes, helping readers apply computational power to more areas of textile engineering. Experimental results are presented and linked closely to processes and methods of implementation. Diverse concepts such as heat transfer, fluid dynamics, three-dimensional motion, and multi-phase flow are addressed. Finally, tools, theoretical principles, and numerical models are extensively covered. Textile engineering involves complex processes which are not easily expressed numerically or simulated, such as fiber motion simulation, yarn to fiber formation, melt spinning technology, optimization of yarn production, textile machinery design and optimization, and modeling of textile/fabric reinforcements. - Provides new approaches and techniques to simulate a wide range of textile processes from geometry to manufacturing - Includes coverage of detailed mathematical methods for textiles, including neural networks, genetic algorithms, and the finite element method - Addresses modeling techniques for many different phenomena, including heat transfer, fluid dynamics and multi-phase flow


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