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Wednesday, November 4, 2009

Fundamentals of the Finite Element Method for Heat and Fluid Flow by R. W. Lewis

Fundamentals of the Finite Element Method for Heat and Fluid Flow by R. W. Lewis


Fundamentals of the Finite Element Method for Heat and Fluid Flow by R. W. Lewis (Repost)
Publisher: Wiley | Pages: 356 | 2004-05-28 | ISBN 0470847891 | PDF | 9.4 MB



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.

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