International Journal of Computational Fluid Dynamics

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Journal Properties
  • Country
    United Kingdom
  • Language
    English
  • Number of Articles
    1,242
  • Abbreviation
    Int J Comput Fluid Dyn
  • ISSN
    1061-8562
  • e-ISSN
    1029-0257
  • Main Publisher
    Taylor & Francis
  • Publisher
    Informa UK Limited
  • Indian UGC
  • DOAJ (latest)
Journal Properties
  • Science
    Physics
    Electricity and magnetism
    Electricity
    Plasma physics
    Ionized gases
    Technology
    Engineering (General)
    Civil engineering (General)
    Technology
    Engineering (General)
    Civil engineering (General)
    Mechanics of engineering
    Applied mechanics
    Technology
    Mechanical engineering and machinery
  • website
Description
The _International Journal of Computational Fluid Dynamics_ is dedicated to advancing the understanding and application of computational methods in fluid dynamics. It publishes original research articles, reviews, and short communications that address the development and validation of numerical algorithms, turbulence modeling, multiphase flow, and complex fluid phenomena. The journal serves as a platform for researchers and engineers to exchange ideas and findings in this rapidly evolving field. Coverage includes but is not limited to: finite volume methods, finite element methods, spectral methods, boundary element methods, and other advanced numerical techniques applied to fluid flow problems. It is indexed in prominent databases like Scopus and Web of Science, ensuring high visibility. The target audience includes researchers in academia and industry, as well as engineers and scientists involved in the simulation and analysis of fluid dynamics. Contributing to the _International Journal of Computational Fluid Dynamics_ can help disseminate your valuable research findings to a global audience. The journal aims to promote the use of CFD techniques to solve real-world engineering problems, encouraging submissions that demonstrate innovative approaches and impactful results. Join the community of researchers pushing the boundaries of CFD. The journal is an invaluable resource for staying at the forefront of computational fluid dynamics.