Yogesh Jaluria Bücher





Computer Methods for Engineering with MATLAB(R) Applications
- 632 Seiten
- 23 Lesestunden
The second edition, authored by a renowned expert from Rutgers, provides a foundational understanding of the mathematical methods used in numerical computer analysis. It emphasizes critical issues relevant to engineering, making it a valuable resource for those looking to grasp essential concepts in this field.
Design and Optimization of Thermal Systems, Third Edition
with MATLAB Applications
- 592 Seiten
- 21 Lesestunden
Focusing on systematic approaches to thermal systems design, this book offers essential guidance for solving design challenges. It covers conceptual design, modeling, simulation, and optimization, with an emphasis on manufacturability and material selection. The Third Edition includes updated examples and problems, alongside discussions of genetic and gradient search methods, as well as knowledge-based design methodologies. Additionally, it integrates computer design analysis using MATLAB, making it a comprehensive resource for engineers and designers in the field.
Computational Heat Transfer
- 560 Seiten
- 20 Lesestunden
The book offers an updated exploration of finite difference and finite element methods, featuring expanded coverage on various topics, new examples, and problems. It removes outdated content and includes a computer disk with each copy for enhanced learning. Professors Jaluria and Torrance have structured the text to facilitate comparisons among several applicable methods, making it a comprehensive resource for students and professionals in the field.
Advanced Materials Processing and Manufacturing
- 372 Seiten
- 14 Lesestunden
Advanced processing of new materials and manufacturing systems is thoroughly examined, focusing on thermal transport and fluid flow. The book highlights innovative techniques in fiber optics, electronic components, and composite materials, alongside microscale components and new applications. It features analysis, mathematical modeling, numerical simulations, and experimental studies to enhance prediction, design, and optimization. Additionally, it explores the relationship between product characteristics and fundamental transport mechanisms, establishing a strong foundation for diverse manufacturing processes.