Taylor & Francis

Numerical Heat Transfer Part B Fundamentals Template

Write in a clean editor, then format for Numerical Heat Transfer Part B Fundamentals in one click — DocuGuru applies the official Taylor & Francis template with author–year references and exports a submission-ready PDF plus the editable LaTeX source. Free to start.

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.

PublisherTaylor & Francis
Reference styleAuthor–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 inFluid Dynamics and Turbulent Flows Computational Fluid Dynamics and Aerodynamics Advanced Numerical Methods in Computational Mathematics Nanofluid Flow and Heat Transfer Lattice Boltzmann Simulation Studies
ISSN1040-7790
Citation impact (2-yr)7.82
h-index76
i10-index1,181
Total citations44,192
Top institutions publishing hereXi'an Jiaotong University
Journal websitewww.tandfonline.com
You getA submission-ready PDF and the editable LaTeX source — ready to submit.

Papers published in Numerical Heat Transfer Part B Fundamentals per year

61
2014
44
2015
61
2016
59
2017
48
2018
52
2019
48
2020
14
2021
24
2022
185
2023
204
2024
38
2025

Citation impact of Numerical Heat Transfer Part B Fundamentals by publication year

1.3K
2014
631
2015
782
2016
556
2017
453
2018
518
2019
329
2020
85
2021
180
2022
2K
2023
1.8K
2024
42
2025

Citations each year’s papers have accumulated so far — the most recent years are still building up.

Most-cited papers in Numerical Heat Transfer Part B Fundamentals

COMPARISON OF DIFFERENT<i>k</i>-ε MODELS FOR INDOOR AIR FLOW COMPUTATIONS

Qingyan Chen · 1 Oct 1995

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…

COMPUTATION OF RADIANT HEAT TRANSFER ON A NONORTHOGONAL MESH USING THE FINITE-VOLUME METHOD

E. H. Chui, G. D. Raithby · 1 Apr 1993

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…

ERAL SOURCE-BASED METHOD FOR SOLIDIFICATION PHASE CHANGE

Vaughan R. Voller, C. R. Swaminathan · 1 Jan 1991

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…

A PRESSURE-BASED METHOD FOR UNSTRUCTURED MESHES

Shubhra Mathur, Jayathi Y. Murthy · 1 Mar 1997

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…

Numerical Heat Transfer Part B Fundamentals template — frequently asked questions

How do I write a paper in the Numerical Heat Transfer Part B Fundamentals format?
In DocuGuru you write your manuscript in a normal editor — no LaTeX setup required — and select the Numerical Heat Transfer Part B Fundamentals template. When you export, DocuGuru compiles the paper into the official Taylor & Francis format and hands you a submission-ready PDF along with the editable LaTeX source.
What reference style does Numerical Heat Transfer Part B Fundamentals use?
Numerical Heat Transfer Part B Fundamentals uses Author–year (Chicago, T&F) references, shown as author–year markers such as (Smith, 2023) in the text. DocuGuru formats every in-text citation and the reference list in this exact style automatically. A reference appears like this: Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." Numerical Heat Transfer Part B Fundamentals 12 (3): 45–58.
Do I need to know LaTeX to submit to Numerical Heat Transfer Part B Fundamentals?
No. DocuGuru generates the interact LaTeX class and compiles the PDF for you in the background, so you get a Taylor & Francis-ready Numerical Heat Transfer Part B Fundamentals document without writing any LaTeX. If you do want it, the LaTeX source is included in the export.
Can I import an existing draft into the Numerical Heat Transfer Part B Fundamentals template?
Yes. Paste or upload your current manuscript — Word, LaTeX, Markdown, or plain text — and DocuGuru reflows it into the Numerical Heat Transfer Part B Fundamentals format with correct headings, figures, tables, and author–year citations.
Who publishes Numerical Heat Transfer Part B Fundamentals?
Numerical Heat Transfer Part B Fundamentals is a multidisciplinary journal published by Taylor & Francis. DocuGuru's Numerical Heat Transfer Part B Fundamentals template matches Taylor & Francis's official submission format.
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Yes — DocuGuru produces a PDF built with the official Numerical Heat Transfer Part B Fundamentals template (the interact class) that is ready to submit to Taylor & Francis, together with the matching LaTeX source files.
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