An Exact Analytical Solution for Heat Conduction in a ‎Functionally Graded Conical Shell

In this study, an exact analytical solution for the heat conduction problem in a truncated conical shell is presented. The cone is made of functionally graded materials and it is considered that the material properties vary according to power-law functions. The general thermal boundary conditions ar...

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Published inJournal of applied and computational mechanics Vol. 9; no. 2; pp. 302 - 317
Main Authors Amin Amiri Delouei, Amin Emamian, Sajjad Karimnejad, Yueming Li
Format Journal Article
LanguageEnglish
Published Shahid Chamran University of Ahvaz 01.04.2023
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ISSN2383-4536
DOI10.22055/jacm.2020.35641.2703

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Abstract In this study, an exact analytical solution for the heat conduction problem in a truncated conical shell is presented. The cone is made of functionally graded materials and it is considered that the material properties vary according to power-law functions. The general thermal boundary conditions are applied to cover a wide variety of actual applications. The results are successfully validated. Two examples, which are tried to mimic practical conditions, are studied using the derived solution, and a parametric study is done to shed light on the problem. The outcomes of this research provide useful information for understanding the nature of heat transfer behavior in the specific geometry of a cone. Regarding the specific applications of conical shells, the results can be used in the prefabrication process of these shells and tailoring the design parameter of functionally graded materials.
AbstractList In this study, an exact analytical solution for the heat conduction problem in a truncated conical shell is presented. The cone is made of functionally graded materials and it is considered that the material properties vary according to power-law functions. The general thermal boundary conditions are applied to cover a wide variety of actual applications. The results are successfully validated. Two examples, which are tried to mimic practical conditions, are studied using the derived solution, and a parametric study is done to shed light on the problem. The outcomes of this research provide useful information for understanding the nature of heat transfer behavior in the specific geometry of a cone. Regarding the specific applications of conical shells, the results can be used in the prefabrication process of these shells and tailoring the design parameter of functionally graded materials.
Author Yueming Li
Amin Amiri Delouei
Sajjad Karimnejad
Amin Emamian
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  organization: Department of Mechanical Engineering, University of Bojnord, Bojnord 945 3155111, Iran
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  fullname: Amin Emamian
  organization: Mechanical Engineering Department, Shahrood University of Technology, Shahrood, 361 9995161, Iran
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  fullname: Sajjad Karimnejad
  organization: Mechanical Engineering Department, Shahrood University of Technology, Shahrood, 361 9995161, Iran
– sequence: 4
  fullname: Yueming Li
  organization: State Key Laboratory for Strength and Vibration of Mechanical Structures, Shaanxi Key Laboratory of Environment and Control for Flight Vehicle,‎ School of Aerospace Engineering, Xi’an Jiaotong University, Xi’an, 710049, The People's Republic of China‎
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Snippet In this study, an exact analytical solution for the heat conduction problem in a truncated conical shell is presented. The cone is made of functionally graded...
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StartPage 302
SubjectTerms conical shell
exact analytical study
functionally graded material
general thermal boundary conditions
heat conduction
Title An Exact Analytical Solution for Heat Conduction in a ‎Functionally Graded Conical Shell
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