Fluid Flow And Heat Transfer Science And Engineering
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Fluid Flow and Heat Transfer Science and Engineering
Author | : Emilia Lloyd |
Publsiher | : Clanrye International |
Total Pages | : 0 |
Release | : 2023-09-26 |
Genre | : Science |
ISBN | : 1647266785 |
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Fluid flow and heat transfer processes play a significant role in various fields of engineering and science from microscopic to the planetary scale. Heat transfer can be improved by using nanofluids. The problem with fluid flow occurs because of a continuously moving surface in an ambient fluid, which differs from the fluid that flows past a fixed surface. Fluid flow problems in the absence of chemical reactions and electromagnetic forces involve thermal and mechanical variables only. There are three methods or techniques that are utilized to address problems in fluid mechanics and heat transfer, namely, numerical methods, experimental methods, and theoretical methods. This book aims to shed light on the science and engineering of fluid flow and heat transfer. It consists of contributions made by international experts. This book will serve as a reference to a broad spectrum of readers.
Fluid Flow Heat and Mass Transfer at Bodies of Different Shapes
Author | : Kuppalapalle Vajravelu,Swati Mukhopadhyay |
Publsiher | : Academic Press |
Total Pages | : 202 |
Release | : 2015-09-08 |
Genre | : Mathematics |
ISBN | : 9780128037850 |
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Most of the equations governing the problems related to science and engineering are nonlinear in nature. As a result, they are inherently difficult to solve. Analytical solutions are available only for some special cases. For other cases, one has no easy means but to solve the problem must depend on numerical solutions. Fluid Flow, Heat and Mass Transfer at Bodies of Different Shapes: Numerical Solutions presents the current theoretical developments of boundary layer theory, a branch of transport phenomena. Also, the book addresses the theoretical developments in the area and presents a number of physical problems that have been solved by analytical or numerical method. It is focused particularly on fluid flow problems governed by nonlinear differential equations. The book is intended for researchers in applied mathematics, physics, mechanics and engineering. Addresses basic concepts to understand the theoretical framework for the method Provides examples of nonlinear problems that have been solved through the use of numerical method Focuses on fluid flow problems governed by nonlinear equations
Computer aided Engineering
Author | : A. D. Gosman,Brian Edward Launder,Gordon J. Reece |
Publsiher | : Unknown |
Total Pages | : 179 |
Release | : 1985 |
Genre | : Computer-aided engineering |
ISBN | : 0853128685 |
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Heat Transfer and Fluid Flow
Author | : Engineering Science Project |
Publsiher | : Unknown |
Total Pages | : 88 |
Release | : 1974 |
Genre | : Fluid dynamics |
ISBN | : 0333156404 |
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Fundamentals of the Finite Element Method for Heat and Fluid Flow
Author | : Roland W. Lewis,Perumal Nithiarasu,Kankanhalli N. Seetharamu |
Publsiher | : John Wiley and Sons |
Total Pages | : 357 |
Release | : 2008-02-07 |
Genre | : Science |
ISBN | : 9780470346389 |
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Heat transfer is the area of engineering science which describes the energy transport between material bodies due to a difference in temperature. The three different modes of heat transport are conduction, convection and radiation. In most problems, these three modes exist simultaneously. However, the significance of these modes depends on the problems studied and often, insignificant modes are neglected. Very often books published on Computational Fluid Dynamics using the Finite Element Method give very little or no significance to thermal or heat transfer problems. From the research point of view, it is important to explain the handling of various types of heat transfer problems with different types of complex boundary conditions. Problems with slow fluid motion and heat transfer can be difficult problems to handle. Therefore, the complexity of combined fluid flow and heat transfer problems should not be underestimated and should be dealt with carefully. This book: Is ideal for teaching senior undergraduates the fundamentals of how to use the Finite Element Method to solve heat transfer and fluid dynamics problems Explains how to solve various heat transfer problems with different types of boundary conditions Uses recent computational methods and codes to handle complex fluid motion and heat transfer problems Includes a large number of examples and exercises on heat transfer problems In an era of parallel computing, computational efficiency and easy to handle codes play a major part. Bearing all these points in mind, the topics covered on combined flow and heat transfer in this book will be an asset for practising engineers and postgraduate students. Other topics of interest for the heat transfer community, such as heat exchangers and radiation heat transfer, are also included.
Fluid Flow and Heat Transfer in Rotating Porous Media
Author | : Peter Vadasz |
Publsiher | : Springer |
Total Pages | : 78 |
Release | : 2015-07-28 |
Genre | : Science |
ISBN | : 9783319200569 |
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This Book concentrates the available knowledge on rotating fluid flow and heat transfer in porous media in one single reference. Dr. Vadasz develops the fundamental theory of rotating flow and heat transfer in porous media and introduces systematic classification and identification of the relevant problems. An initial distinction between rotating flows in isothermal heterogeneous porous systems and natural convection in homogeneous non-‐isothermal porous systems provides the two major classes of problems to be considered. A few examples of solutions to selected problems are presented, highlighting the significant impact of rotation on the flow in porous media.
Nano and Bio Heat Transfer and Fluid Flow
Author | : Majid Ghassemi,Azadeh Shahidian |
Publsiher | : Academic Press |
Total Pages | : 160 |
Release | : 2017-03-15 |
Genre | : Medical |
ISBN | : 9780128038529 |
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Nano and Bio Heat Transfer and Fluid Flow focuses on the use of nanoparticles for bio application and bio-fluidics from an engineering perspective. It introduces the mechanisms underlying thermal and fluid interaction of nanoparticles with biological systems. This book will help readers translate theory into real world applications, such as drug delivery and lab-on-a-chip. The content covers how transport at the nano-scale differs from the macro-scale, also discussing what complications can arise in a biologic system at the nano-scale. It is ideal for students and early career researchers, engineers conducting experimental work on relevant applications, or those who develop computer models to investigate/design these systems. Content coverage includes biofluid mechanics, transport phenomena, micro/nano fluid flows, and heat transfer. Discusses nanoparticle applications in drug delivery Covers the engineering fundamentals of bio heat transfer and fluid flow Explains how to simulate, analyze, and evaluate the transportation of heat and mass problems in bio-systems
Heat Transfer and Fluid Flow in Minichannels and Microchannels
Author | : Satish Kandlikar |
Publsiher | : Elsevier |
Total Pages | : 492 |
Release | : 2006 |
Genre | : Science |
ISBN | : 0080445276 |
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&Quot;This book explores flow through passages with hydraulic diameters from about 1 [mu]m to 3 mm, covering the range of minichannels and microchannels. Design equations along with solved examples and practice problems are also included to serve the needs of practicing engineers and students in a graduate course."--BOOK JACKET.