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Home > Science, Technology & Agriculture > Energy technology and engineering > Heat transfer processes > Heat Transfer Modelling Using COMSOL: Slab to Radial Fin(Multiphysics Modeling)
Heat Transfer Modelling Using COMSOL: Slab to Radial Fin(Multiphysics Modeling)

Heat Transfer Modelling Using COMSOL: Slab to Radial Fin(Multiphysics Modeling)


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About the Book

Fins have been used historically as reliable design features for thermal management, which continues to be an important problem in engineering today. This book develops heat transfer models for progressively complex fin designs. Mathematicians, engineers, and analysts may equally benefit from the content as it provides the reader with numerical and analytical tools to approach general and thermal management heat transfer problems. The main focus is on the COMSOL® Multiphysics Heat Transfer module; however, the fundamentals may be applied to other commercial packages such as ANSYS and Abaqus. The content can be utilized in a variety of engineering disciplines including mechanical, aerospace, biomedical, chemical, civil, and electrical, etc. Features: Includes numerous example models that enable the reader to implement conceptual material in practical scenarios with broad industrial applications Uses COMSOL Multiphysics® version 5.3 in combination with the Heat Transfer Module to set up and carry out the numerical analysis for the models presented in the book Presents mathematical methods related to the problems Includes a companion disc with models and custom apps created with COMSOL Application Builder (available by emailing info@merclearning.com with proof of purchase if e-version)

Table of Contents:
1: Heat Transfer through the Ages. 2: Extended Surfaces. 3: Conservation of Energy. 4: Finite Element Analysis. 5: Sensitivity Analysis. 6: Fin Geometries. 7: COMSOL Multiphysics-Extended Surfaces: Thermal Case Study. 8: Fin with Rectangular Cross Section. 9: Fin with Circular Cross Section.10: Side-Rectangular Fin with Triangular Cross Section. 11: Side-Triangular Fin with Rectangular Cross Section. 12: Side-Concave Fin with Rectangular Cross Section. 13: Side-Convex Fin with Rectangular Cross Section. 14: Side-Concave-Trapezoidal Fin with Rectangular Cross Section. 15: Pin Fin with Circular Cross Section. 16: Radial Fin with Hyperbolic Profile. 17: Webbed Radial Fin with Hyperbolic Profile (Duckling Radial Fin). 18: Forced Convective Webbed Radial Fin with Hyperbolic Profile (Not the Ugly Ducking). 19: Mathematical Methods to Solve Heat and Wave Problems. 20: Lean Six Sigma Implementation. 21: Good Practices. 22: Case Studies: FEM Models and Applications. Appendices. Index.

About the Author :
Layla S. Mayboudi holds a Ph.D. fromQueen's University (Canada) in mechanical engineering. Her research areas include heat transfer modelling and validation, thermal management, thermal imaging, and flow optimization. She also has industrial experience and training in operations research, process improvement (Black Belt Lean Six Sigma certified), and mechanical test management. Dr. Mayboudi has published books, journal articles, and conference papers, and has several years of experience in education, aerospace, and rail transportation industries where she initiated and completed numerous projects resulting in improved capabilities (efficiency and effectiveness). Dr. Mayboudi has a strong aviation background and has accumulated over 300 solo and duo flight hours (mostly in the Cessna 172).


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Product Details
  • ISBN-13: 9781683921738
  • Publisher: Mercury Learning & Information
  • Publisher Imprint: Mercury Learning & Information
  • Height: 229 mm
  • No of Pages: 272
  • Sub Title: Slab to Radial Fin
  • ISBN-10: 1683921739
  • Publisher Date: 09 Jul 2018
  • Binding: Digital (delivered electronically)
  • Language: English
  • Series Title: Multiphysics Modeling
  • Width: 178 mm


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