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Numerical Heat Transfer, Part B: Fundamentals - Taylor & Francis | 2024 Impact Factor:3.8 | Cite Score:3.6 | Q3

Numerical Heat Transfer, Part B: Fundamentals Journal

Impact Factor and Journal Rank of Numerical Heat Transfer, Part B: Fundamentals

  • About: Numerical Heat Transfer, Part B: Fundamentals is a peer-reviewed journal published 12 times per year. It addresses all aspects of the methodology for the numerical solution of problems in heat and mass transfer, as well as fluid flow.

    Key Focus Areas
    Numerical Heat Transfer, Part B: Fundamentals focuses on:

    Heat Transfer: Conduction, convection, radiation, and phase change phenomena. Mass Transfer: Diffusion, advection, and chemical reactions. Fluid Flow: Laminar and turbulent flows, multiphase flows, and fluid-structure interactions. Applications: Engineering applications in aerospace, automotive, energy systems, and environmental engineering.

    Impact and Significance
    The journal aims to:

    Advance Numerical Methods: Publish research that enhances the understanding and capabilities of numerical simulations in heat and mass transfer. Support Methodology Development: Provide a platform for the dissemination of innovative methodologies and techniques. Bridge Theory and Practice: Facilitate the integration of theoretical insights with practical applications in engineering and science.

    Types of Contributions Accepted
    Numerical Heat Transfer, Part B: Fundamentals welcomes:

    Research Papers: Original contributions presenting novel numerical methods or significant applications. Review Articles: Comprehensive reviews that summarize recent developments and trends. Experimental Studies: Validation of numerical simulations through experimental results. Methodology Papers: Articles focused on the development of new numerical methodologies.

  • Editor-in-Chief:  John P. Abraham

  • Scope: The journal covers a wide range of topics within the field of numerical heat transfer and fluid flow, including:
  • Methodology for Numerical Solutions: Development and application of numerical methods for solving heat transfer, mass transfer, and fluid flow problems.
  • Modeling of Physical Phenomena: Modeling complex physical phenomena to establish foundations for numerical solutions in heat transfer, fluid dynamics, and related fields.
  • Experimental and Numerical Results: Presentation of numerical and experimental results that support the development and validation of numerical methodologies.
  • Heat and Mass Transfer: Studies on heat conduction, convection, radiation, and mass diffusion, including their interaction in various engineering applications.
  • Fluid Flow: Numerical modeling and simulation of fluid dynamics, including turbulence modeling, multiphase flow, and computational fluid dynamics (CFD).
  • Applications: Practical applications of numerical methods in engineering and scientific domains, such as aerospace, automotive, energy systems, biomedical engineering, and environmental sciences.
  • Latest Research Topics for PhD in Computer Science

  • Print ISSN:  10407790

    Electronic ISSN:   15210626

  • Abstracting and Indexing:  Scopus, Science Citation Index Expanded

  • Imapct Factor 2024:  3.8

  • Subject Area and Category:   Computer Science, Computer Science Applications, Engineering, Mechanics of Materials, Mathematics, Modeling and Simulation, Numerical Analysis, Physics and Astronomy, Condensed Matter Physics

  • Publication Frequency:  

  • H Index:  64

  • Best Quartile:

    Q1:  

    Q2:  

    Q3:  Mechanics of Materials

    Q4:  

  • Cite Score:  3.6

  • SNIP:  0.874

  • Journal Rank(SJR):  0.401