Green's Function and Boundary Elements of Multifield Materials
eBook - PDF

Green's Function and Boundary Elements of Multifield Materials

  1. 266 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Green's Function and Boundary Elements of Multifield Materials

About this book

Green's Function and Boundary Elements of Multifield Materials contains a comprehensive treatment of multifield materials under coupled thermal, magnetic, electric, and mechanical loads. Its easy-to-understand text clarifies some of the most advanced techniques for deriving Green's function and the related boundary element formulation of magnetoelectroelastic materials: Radon transform, potential function approach, Fourier transform. Our hope in preparing this book is to attract interested readers and researchers to a new field that continues to provide fascinating and technologically important challenges. You will benefit from the authors' thorough coverage of general principles for each topic, followed by detailed mathematical derivation and worked examples as well as tables and figures where appropriate. - In-depth explanations of the concept of Green's function - Coupled thermo-magneto-electro-elastic analysis - Detailed mathematical derivation for Green's functions

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Yes, you can access Green's Function and Boundary Elements of Multifield Materials by Qing-Hua Qin in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Electrical Engineering & Telecommunications. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Front Cover
  2. Green’s Function and Boundary Elements of Multifield Materials
  3. Copyright Page
  4. Table of Contents
  5. Preface
  6. Acknowledgements
  7. Notations
  8. Chapter 1 Introduction
  9. Chapter 2: Green’s function of electroelastic problem
  10. Chapter 3: Green’s function for thermoelectroelastic problems
  11. Chapter 4: Green’s function for magnetoelectroelastic problems
  12. Chapter 5: Boundary element method for piezoelectricity
  13. Chapter 6: Boundary element method for discontinuity problems
  14. Chapter 7: Trefftz boundary element method
  15. Appendix A: Radon Transform
  16. Appendix B: The constants alphaj, sj, and betamj appeared in Section 4.3
  17. Appendix C: Numerical Integration
  18. Index