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      The Inclusion-Based Boundary Element Method (iBEM)

      1 in stock

      Firm sale: non returnable item
      SKU 9780128193846 Categories ,
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      The Inclusion-Based Boundary Element Method (iBEM) is an innovative numerical method for the study of the multi-physical and mechanical behaviour of composite materials, linear elasticity, potential flow or Stokes fluid dynamics. It combines the basic ideas of Eshelby's Equiva...

      £138.00

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      Description

      Product ID:9780128193846
      Product Form:Paperback / softback
      Country of Manufacture:NL
      Title:The Inclusion-Based Boundary Element Method (iBEM)
      Authors:Author: Chunlin Wu, Liangliang Zhang, Huiming Yin, Gan Song
      Page Count:354
      Subjects:Mechanical engineering, Mechanical engineering, Materials science, Materials science
      Description:Select Guide Rating
      The Inclusion-Based Boundary Element Method (iBEM) is an innovative numerical method for the study of the multi-physical and mechanical behaviour of composite materials, linear elasticity, potential flow or Stokes fluid dynamics. It combines the basic ideas of Eshelby's Equivalent Inclusion Method (EIM) in classic micromechanics and the Boundary Element Method (BEM) in computational mechanics. The book starts by explaining the application and extension of the EIM from elastic problems to the Stokes fluid, and potential flow problems for a multiphase material system in the infinite domain. It also shows how switching the Green's function for infinite domain solutions to semi-infinite domain solutions allows this method to solve semi-infinite domain problems. A thorough examination of particle-particle interaction and particle-boundary interaction exposes the limitation of the classic micromechanics based on Eshelby's solution for one particle embedded in the infinite domain, and demonstrates the necessity to consider the particle interactions and boundary effects for a composite containing a fairly high volume fraction of the dispersed materials. Starting by covering the fundamentals required to understand the method and going on to describe everything needed to apply it to a variety of practical contexts, this book is the ideal guide to this innovative numerical method for students, researchers, and engineers.
      Imprint Name:Academic Press Inc
      Publisher Name:Elsevier Science Publishing Co Inc
      Country of Publication:GB
      Publishing Date:2022-04-21

      Additional information

      Weight576 g
      Dimensions227 × 151 × 27 mm