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A Bejan

Heat Transfer - Evolution, Design and Performance

Heat Transfer - Evolution, Design and Performance

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  • More about Heat Transfer - Evolution, Design and Performance


The book provides authoritative coverage of the fundamentals of heat transfer, written by one of the most cited authors in Engineering. It covers thermodynamics principles and establishes performance and evolution as fundamental concepts in thermal sciences, and demonstrates how principles of physics predict a future with economies of scale, multi-scale design, vascularization, and hierarchical distribution of many small features. It also explores new work on conduction architecture, convection with nanofluids, boiling and condensation on designed surfaces, and resonance of natural circulation in enclosures.

Format: Hardback
Length: 608 pages
Publication date: 11 March 2022
Publisher: John Wiley and Sons Ltd


Heat transfer is a fundamental concept in engineering that involves the transfer of heat between physical systems. It encompasses the generation, utilization, conversion, and exchange of heat energy. The field of heat transfer has been extensively studied by renowned experts, and Professor Adrian Bejan is one of the most cited authors in this area. In his book "Heat Transfer," Professor Bejan provides authoritative coverage of the fundamentals of heat transfer.

The book begins by introducing the fundamental concepts and problem-solving methods of heat transfer. It explains how heat is generated in various physical systems and how it can be used to perform work or generate electricity. Professor Bejan also discusses the conversion of heat energy between different forms, such as thermal energy to electrical energy or mechanical energy.

One of the key strengths of "Heat Transfer" is its comprehensive coverage of the principles of thermodynamics. The author explains how thermodynamic laws govern the behavior of heat transfer systems and how they can be used to design and optimize heat transfer processes. The book also discusses the principles of Fourier conduction, fins, boundary layer theory, duct flow, scale analysis, and the structure of turbulence.

Building upon his classic 1993 book "Heat Transfer," Professor Bejan maintains his straightforward scientific approach to teaching essential developments such as Fourier conduction, fins, boundary layer theory, duct flow, scale analysis, and the structure of turbulence. In this new volume, "Heat Transfer: Evolution, Design, and Performance," the author explores topics and research developments that have emerged during the past decade.

These topics include the designing of convective flow and heat and mass transfer, the crucial relationship between configuration and performance, and new populations of configurations such as tapered ducts, plates with multi-scale features, and dendritic fins. The book also includes numerous examples, problems with solutions, and access to a companion website.

One of the notable features of "Heat Transfer: Evolution, Design, and Performance" is its emphasis on the application of heat transfer principles in real-world situations. The author discusses how heat transfer principles are used in various industries, such as power generation, aerospace, and transportation. He provides examples of successful heat transfer designs and highlights the importance of considering factors such as efficiency, cost, and environmental impact in designing heat transfer systems.

In conclusion, "Heat Transfer: Evolution, Design, and Performance" is a comprehensive and authoritative book that provides a solid foundation in the fundamentals of heat transfer. Written by one of the most cited authors in engineering, the book offers a straightforward scientific approach to teaching essential developments and explores topics and research developments that have emerged in the past decade. Whether you are a student, engineer, or researcher, this book will be a valuable resource for understanding and applying heat transfer principles in your work.

Weight: 1448g
Dimension: 265 x 201 x 38 (mm)
ISBN-13: 9781119467403

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