A REVIEW ON COMPUTATIONAL FLUID DYNAMICS SIMULATION METHODS FOR DIFFERENT CONVECTIVE DRYING APPLICATIONS

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Date

2023

Authors

Seda Özcan Çoban
Fatih Selimefendigil
Hakan Fehmi Oztop
A. Hepbasli

Journal Title

Journal ISSN

Volume Title

Publisher

Serbian Society of Heat Transfer Engineers

Open Access Color

GOLD

Green Open Access

Yes

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No
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Average
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Average
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Abstract

This paper focuses on the CFD studies on one of the commonly used drying processes for different applications. First a brief information about drying is given with determining important properties that effect drying characteristics. Next basic principles of CFD modelling are explained while capabilities of computational processing are presented. A detailed literature survey about CFD studies in convective drying process is then conducted. Finally some sound concluding remarks are listed. It may be concluded that the CFD is a powerful and flexible tool that can be adopted to many different physical situations including complex scenarios results of CFD simulations represent good predictions for fluid-flow heat and mass transfer of various drying methods and those numerical studies can be used for validation and controlling of applicability of new drying systems. © 2023 Elsevier B.V. All rights reserved.

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Keywords

Drying, Flow Of Fluids, Heat Convection, Mass Transfer, Numerical Methods, Basic Principles, Cfd Modeling, Computational Fluid Dynamics Simulations, Computational Processing, Convective Drying, Drying Characteristics, Drying Process, Flexible Tool, Literature Survey, Property, Computational Fluid Dynamics, Drying, Flow of fluids, Heat convection, Mass transfer, Numerical methods, Basic principles, CFD modeling, Computational fluid dynamics simulations, Computational processing, Convective drying, Drying characteristics, Drying process, Flexible tool, Literature survey, Property, Computational fluid dynamics

Fields of Science

0404 agricultural biotechnology, 04 agricultural and veterinary sciences, 0405 other agricultural sciences

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OpenCitations Citation Count
2

Source

Thermal Science

Volume

27

Issue

1B

Start Page

825

End Page

842
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Scopus : 3

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Mendeley Readers : 24

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3

checked on Apr 09, 2026

Web of Science™ Citations

3

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