Thermal Performance of Nanofluids in Miniature Heat Sinks with Conduits

Author:   S. Harikrishnan ,  A. D. Dhass ,  Hafiz Muhammad Ali
Publisher:   Springer Verlag, Singapore
Edition:   1st ed. 2022
Volume:   131
ISBN:  

9789811678448


Pages:   97
Publication Date:   06 January 2022
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
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Thermal Performance of Nanofluids in Miniature Heat Sinks with Conduits


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Overview

This comprehensive book focuses on the basic physical features and purpose of nanofluids and miniature heat sinks. The contents demonstrate the design modification, fabrication, experimental investigation, and various applications of miniature heat sinks. The book provides context for thermal performance of miniature heat sinks as well as summaries of experimental results correlations that reflect the current technical innovations are included. This book is a useful reference for both academia and industry alike.

Full Product Details

Author:   S. Harikrishnan ,  A. D. Dhass ,  Hafiz Muhammad Ali
Publisher:   Springer Verlag, Singapore
Imprint:   Springer Verlag, Singapore
Edition:   1st ed. 2022
Volume:   131
Weight:   0.336kg
ISBN:  

9789811678448


ISBN 10:   9811678448
Pages:   97
Publication Date:   06 January 2022
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Chapter 1 Introduction   Pages (30) This chapter comprises of introduction of nanofluids and miniature heat sink, types of nanofluids and heat sinks, preparation of nanofluids, characterization of nanofluids and thermo physical properties of nanofluids Chapter 2 Flow characteristics of nanofluids in miniature heat sinks   Pages (30) This chapter provides information about flow patterns of nanofluids in various conduits, extended surfaces and twisted inserts   Chapter 3 Design modifications of miniature heat sinks   Pages (30) This chapter reveals the modification of design made in miniature heat sink and fabrication process of various conduit miniature heat sinks   Chapter 4 Heat transfer characteristics of  miniature heat sink with various conduits Pages (30) This chapter elucidates the thermal performance of miniature heat sink with various conduits and effects of dimensionless numbers   Chapter 5 Application  of  miniature heat sink Pages (30) This chapter deals with various applications of various conduits miniature heat sink, suggestions for future scope of research by utilizing miniature heat sinks  ​

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Author Information

S. Harikrishnan is Professor and Head in the Department of Mechanical Engineering at Kings Engineering College, Chennai, India. He received his B.E. in Electrical and Electronics Engineering from University of Madras in 2002 and M.E. in Refrigeration and Air Conditioning Engineering and Ph.D. in Mechanical Engineering from Anna University in 2007 and 2015, respectively. He has organized four international conferences and delivered invited talks in many colleges in India. He has published 32 research articles in different journals of national and international repute. His areas of research include the phase change materials, nanofluids, and supercapacitor. A. D. Dhass received his B.E., M.E., and Ph.D. degrees in Electrical and Electronics Engineering, Energy Engineering and Solar Energy in 2005, 2009, and 2018 respectively, from Anna University, Chennai, India. Since 2019, he has been working as Associate Professor in the Indus Institute of Technology and Engineering (IITE), Indus University, Ahmedabad, Gujarat, India. His areas of research include solar, heat transfer, and phase change materials. Dr. Hafiz Muhammad Ali, Associate Professor of Mechanical Engineering at King Fahd University of Petroleum and Minerals, Saudi Arabia, received his Ph.D. degree from Queen Mary, University of London, UK, in 2011. He was a postdoc at Water and Energy Laboratory, University of California at Merced, USA, during 2015–16 period.

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