Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm

Multilayered pressure vessel is commonly used under harsh conditions, particularly in high pressure and high temperature environment. Thus, the evaluation of the stresses induced within the multilayered pressure vessel’s wall is crucial to ensure safe operation. Recent studies showed that analytical...

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Main Author: Sim, Lih Chi
Format: Final Year Project / Dissertation / Thesis
Published: 2022
Subjects:
Online Access:http://eprints.utar.edu.my/4437/
http://eprints.utar.edu.my/4437/1/1807359_Sim_Lih_Chi.pdf
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author Sim, Lih Chi
author_facet Sim, Lih Chi
author_sort Sim, Lih Chi
building UTAR Institutional Repository
collection Online Access
description Multilayered pressure vessel is commonly used under harsh conditions, particularly in high pressure and high temperature environment. Thus, the evaluation of the stresses induced within the multilayered pressure vessel’s wall is crucial to ensure safe operation. Recent studies showed that analytical solution based on recursive algorithm can be used to obtain thermo-mechanical stresses of multilayered structure efficiently. However, there is no study has been conducted for the derivation of analytical solutions for multilayered spherical pressure vessel and cylindrical pressure vessel under generalized plane strain condition. Hence, the present work aimed to derive the analytical solution by using recursive algorithm for multilayered cylindrical and spherical pressure vessels which are subjected to thermo-mechanical loading. Firstly, the analytical solution for temperature distribution across the multilayered vessel wall was derived. Next, the analytical solutions for radial, tangential and axial stresses distribution across the multilayered vessel wall were derived. After that, verification was carried out on the proposed analytical solutions by using two finite element analysis models reported in literatures. The simulated results were in good agreement with the output from the proposed analytical solutions. In addition, the validated analytical solutions were demonstrated as the iii alternative method to analyze the stresses of functionally graded material (FGM) cylindrical and spherical pressure vessel under thermo-mechanical loading. In general, the stresses results obtained based on present proposed analytical solutions were compared with the FGM exact solution reported in literatures and the overall percentage of difference is less than 1%.
first_indexed 2025-11-15T19:33:59Z
format Final Year Project / Dissertation / Thesis
id utar-4437
institution Universiti Tunku Abdul Rahman
institution_category Local University
last_indexed 2025-11-15T19:33:59Z
publishDate 2022
recordtype eprints
repository_type Digital Repository
spelling utar-44372022-06-30T12:49:09Z Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm Sim, Lih Chi TN Mining engineering. Metallurgy Multilayered pressure vessel is commonly used under harsh conditions, particularly in high pressure and high temperature environment. Thus, the evaluation of the stresses induced within the multilayered pressure vessel’s wall is crucial to ensure safe operation. Recent studies showed that analytical solution based on recursive algorithm can be used to obtain thermo-mechanical stresses of multilayered structure efficiently. However, there is no study has been conducted for the derivation of analytical solutions for multilayered spherical pressure vessel and cylindrical pressure vessel under generalized plane strain condition. Hence, the present work aimed to derive the analytical solution by using recursive algorithm for multilayered cylindrical and spherical pressure vessels which are subjected to thermo-mechanical loading. Firstly, the analytical solution for temperature distribution across the multilayered vessel wall was derived. Next, the analytical solutions for radial, tangential and axial stresses distribution across the multilayered vessel wall were derived. After that, verification was carried out on the proposed analytical solutions by using two finite element analysis models reported in literatures. The simulated results were in good agreement with the output from the proposed analytical solutions. In addition, the validated analytical solutions were demonstrated as the iii alternative method to analyze the stresses of functionally graded material (FGM) cylindrical and spherical pressure vessel under thermo-mechanical loading. In general, the stresses results obtained based on present proposed analytical solutions were compared with the FGM exact solution reported in literatures and the overall percentage of difference is less than 1%. 2022 Final Year Project / Dissertation / Thesis NonPeerReviewed application/pdf http://eprints.utar.edu.my/4437/1/1807359_Sim_Lih_Chi.pdf Sim, Lih Chi (2022) Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm. Master dissertation/thesis, UTAR. http://eprints.utar.edu.my/4437/
spellingShingle TN Mining engineering. Metallurgy
Sim, Lih Chi
Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm
title Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm
title_full Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm
title_fullStr Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm
title_full_unstemmed Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm
title_short Development Of Analytical Solution For Thermo-Mechanical Stresses Of Multilayered Pressure Vessel Based On Recursive Algorithm
title_sort development of analytical solution for thermo-mechanical stresses of multilayered pressure vessel based on recursive algorithm
topic TN Mining engineering. Metallurgy
url http://eprints.utar.edu.my/4437/
http://eprints.utar.edu.my/4437/1/1807359_Sim_Lih_Chi.pdf