Inderscience

Progress in Computational Fluid Dynamics An International Journal Template

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About the Progress in Computational Fluid Dynamics An International Journal format

Progress in Computational Fluid Dynamics An International Journal is a peer-reviewed journal published by Inderscience, covering Fluid Dynamics and Turbulent Flows, Lattice Boltzmann Simulation Studies, Computational Fluid Dynamics and Aerodynamics.

PublisherInderscience
Reference styleAuthor–year (Harvard/AGSM)
Author–year — (Smith, 2023) in the text
Smith, A., Jones, B. and Lee, C. (2023) 'A representative article title', Progress in Computational Fluid Dynamics An International Journal, 12(3), pp. 45–58.

Formats any DOI in Progress in Computational Fluid Dynamics An International Journal style. No sign-up.

Publishes research inFluid Dynamics and Turbulent Flows Lattice Boltzmann Simulation Studies Computational Fluid Dynamics and Aerodynamics Fluid Dynamics and Vibration Analysis Combustion and flame dynamics
ISSN1468-4349
Citation impact (2-yr)0.34
h-index38
i10-index219
Total citations9,400
Top institutions publishing hereXi'an Jiaotong University
Journal websitewww.inderscience.com
You getA submission-ready PDF and the editable LaTeX source — ready to submit.

Papers published in Progress in Computational Fluid Dynamics An International Journal per year

36
2014
43
2015
72
2016
57
2017
49
2018
57
2019
59
2020
65
2021
66
2022
61
2023
54
2024
53
2025

Citation impact of Progress in Computational Fluid Dynamics An International Journal by publication year

221
2014
209
2015
345
2016
444
2017
138
2018
226
2019
243
2020
101
2021
61
2022
53
2023
20
2024
14
2025

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

Most-cited papers in Progress in Computational Fluid Dynamics An International Journal

Models, algorithms and validation for opensource DEM and CFD-DEM

Christoph Kloss, Christoph Goniva, Alice Hager et al. · 1 Jan 2012

We present a multi–purpose CFD–DEM framework to simulate coupled fluid–granular systems. The motion of the particles is resolved by means of the Discrete Element Method (DEM), and the Computational Fluid Dynamics (CFD) method is used to calculate the interstitial fluid flow. We first give a short overview over the DEM and CFD–DEM codes and implementations,…

1,786 citations Cite SaveGo to paper →
Smooth particle hydrodynamics: status and future potential

Paul W. Cleary, Mahesh Prakash, Joseph Ha et al. · 1 Jan 2007

SPH is a powerful mesh free method that is now able to solve very complex multi-physics flow and deformation problems in a broad number of fields. This paper concentrates on the use of SPH to simulate a broad range of complex industrial fluid flow problems. These include free surface fluid flow for the generation of…

Reynolds-Stress Model for Eulerian multiphase

Davor Čokljat, M.D. Slack, Sergio A. Vasquez et al. · 1 Jan 2006

This paper presents a way of modelling turbulence in multiphase flows within the context of the Reynolds-Stress Model. The model has been implemented in the general-purpose unstructured finite volume code Fluent V6. Two multiphase turbulence approaches were considered: mixture and dispersed models. The mixture model solves the Reynolds-stress transport equations on the mixture level only.…

Recent advances of Lattice Boltzmann techniques on unstructured grids

Stefano Ubertini, Sauro Succi · 1 Jan 2005

Further research on both theoretical and practical aspects of a previously defined finite-volume formulation to integrate the Lattice Boltzmann equation (LBE) on unstructured grids is presented. Moreover, additional explicit schemes for time discretisation are proposed. The method is tested on an impulsively started channel flow with the aim of exactly locating solid boundaries. Cavity flow…

Progress in Computational Fluid Dynamics An International Journal template — frequently asked questions

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What reference style does Progress in Computational Fluid Dynamics An International Journal use?
Progress in Computational Fluid Dynamics An International Journal uses Author–year (Harvard/AGSM) 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, A., Jones, B. and Lee, C. (2023) 'A representative article title', Progress in Computational Fluid Dynamics An International Journal, 12(3), pp. 45–58.
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Who publishes Progress in Computational Fluid Dynamics An International Journal?
Progress in Computational Fluid Dynamics An International Journal is a engineering and computer science journal published by Inderscience. DocuGuru's Progress in Computational Fluid Dynamics An International Journal template matches Inderscience's official submission format.
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