Abstract In this article, Jive k-ε, two-equation models are studied: the standard k-ε model, a low-Reynolds-number k-ε model, a two-layer k-ε model, a two-scale k-ε model, and a renormalization group (RNG) k-ε model. They are evaluated for their performance in predicting natural convection, forced convection, and mixed convection in rooms, as well as an impinging…
Numerical Heat Transfer Part B Fundamentals Template
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About the Numerical Heat Transfer Part B Fundamentals format
Numerical Heat Transfer Part B Fundamentals is a peer-reviewed journal published by Taylor & Francis, covering Fluid Dynamics and Turbulent Flows, Computational Fluid Dynamics and Aerodynamics, Advanced Numerical Methods in Computational Mathematics.
| Publisher | Taylor & Francis |
|---|---|
| Reference style | Author–year (Chicago, T&F) Author–year — (Smith, 2023) in the text Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." Numerical Heat Transfer Part B Fundamentals 12 (3): 45–58.
Formats any DOI in Numerical Heat Transfer Part B Fundamentals style. No sign-up. |
| Publishes research in | Fluid Dynamics and Turbulent Flows Computational Fluid Dynamics and Aerodynamics Advanced Numerical Methods in Computational Mathematics Nanofluid Flow and Heat Transfer Lattice Boltzmann Simulation Studies |
| ISSN | 1040-7790 |
| Citation impact (2-yr) | 7.82 |
| h-index | 76 |
| i10-index | 1,181 |
| Total citations | 44,192 |
| Top institutions publishing here | Xi'an Jiaotong University |
| Journal website | www.tandfonline.com |
| You get | A submission-ready PDF and the editable LaTeX source — ready to submit. |
Papers published in Numerical Heat Transfer Part B Fundamentals per year
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Most-cited papers in Numerical Heat Transfer Part B Fundamentals
Abstract The finite-volume method has been shown to effectively predict radiant exchange in geometrically simple enclosures where the medium is gray, absorbing, emitting, and scattering. Cartesian and circular cylindrical meshes have always been used. The present article shows that the method applies equally well to geometrically complex enclosures where nonorthogonal, boundary-fitted meshes are used. This…
After a brief review of current source-based methods for modeling solidification phase change systems, a new source-based method for the treatment of latent heat evolution is presented. The essential feature of the proposed method is linearization of the discretized source term. This results in a robust and accurate computational method that can deal efficiently with…
Abstract This article presents a finite-volume scheme for multidimensional incompressible flows. Unstructured, solution-adaptive meshes composed of arbitrary convex palyhedra are used. A cell-centered equal-order formulation is developed. Gradients required for the evaluation of diffusion fluxes and for second-order-accurate convective operators are found by linear reconstruction. An additive-correction multigrid scheme is used to solve the resulting…