Effect of Head Types on the Free Vibration and Fatigue for Horizontal LPG Pressure Vessels

Pressure vessels are the heart of plants and oil refineries stations. In many engineering applications such vessels can be subjected to periodic loading either internally due to the charging and discharging process or externally due to the excitation from other nearby components such as pumps, comp...

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Main Authors: Marwan Abdulrazzaq Salman, Mahmud Rasheed Ismail, Yassr Y. Kahtan
Format: Article
Language:English
Published: Al-Nahrain Journal for Engineering Sciences 2018-12-01
Series:مجلة النهرين للعلوم الهندسية
Subjects:
Online Access:https://nahje.com/index.php/main/article/view/473
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spelling doaj-e9c104b19539425b80e4fb6c93e334172021-02-02T17:55:20ZengAl-Nahrain Journal for Engineering Sciencesمجلة النهرين للعلوم الهندسية2521-91542521-91622018-12-0121410.29194/NJES.21040494473Effect of Head Types on the Free Vibration and Fatigue for Horizontal LPG Pressure VesselsMarwan Abdulrazzaq Salman0Mahmud Rasheed Ismail1Yassr Y. Kahtan2Mechanical Eng. Dep., Al-Nahrain University, Baghdad, IRAQProsthetics and orthotics Eng. Dept., Al-Nahrain University, Baghdad, IRAQProsthetics and orthotics Eng. Dept., Al-Nahrain University, Baghdad, IRAQ Pressure vessels are the heart of plants and oil refineries stations. In many engineering applications such vessels can be subjected to periodic loading either internally due to the charging and discharging process or externally due to the excitation from other nearby components such as pumps, compressors or from seismic. So that in spite of a good design according static assumption it may be critical in dynamics. In this work a horizontal pressure vessel with accessories subjected to liquefied petroleum gas pressure LPG is considered. Three models of different head types are investigated herein namely; Deep torispherical, Elliptical 2:1 and Hemispherical. The design and material selections are chosen as per ASME. For practical service many accessories are attached to the vessel such as manhole, supports, inlet and outlet opining. Finite Element method via ANSYS R18.2 is introduced for the numerical analysis. The fatigue life in case of fully reversed cyclic loading are estimated and located. Vibration characteristics such as mode shapes and natural frequencies for the lowest five modes are evaluated and compared. It is found that the fatigue life can be increased as higher as 180% for hemi- spherical head as compared with deep torispherical head pressure vessel and the lowest four natural frequencies are nearly identical for all models, however significant change observed in the fifth natural frequency. https://nahje.com/index.php/main/article/view/473Pressure VesselASME codesFinite Element AnalysisStressDeformation
collection DOAJ
language English
format Article
sources DOAJ
author Marwan Abdulrazzaq Salman
Mahmud Rasheed Ismail
Yassr Y. Kahtan
spellingShingle Marwan Abdulrazzaq Salman
Mahmud Rasheed Ismail
Yassr Y. Kahtan
Effect of Head Types on the Free Vibration and Fatigue for Horizontal LPG Pressure Vessels
مجلة النهرين للعلوم الهندسية
Pressure Vessel
ASME codes
Finite Element Analysis
Stress
Deformation
author_facet Marwan Abdulrazzaq Salman
Mahmud Rasheed Ismail
Yassr Y. Kahtan
author_sort Marwan Abdulrazzaq Salman
title Effect of Head Types on the Free Vibration and Fatigue for Horizontal LPG Pressure Vessels
title_short Effect of Head Types on the Free Vibration and Fatigue for Horizontal LPG Pressure Vessels
title_full Effect of Head Types on the Free Vibration and Fatigue for Horizontal LPG Pressure Vessels
title_fullStr Effect of Head Types on the Free Vibration and Fatigue for Horizontal LPG Pressure Vessels
title_full_unstemmed Effect of Head Types on the Free Vibration and Fatigue for Horizontal LPG Pressure Vessels
title_sort effect of head types on the free vibration and fatigue for horizontal lpg pressure vessels
publisher Al-Nahrain Journal for Engineering Sciences
series مجلة النهرين للعلوم الهندسية
issn 2521-9154
2521-9162
publishDate 2018-12-01
description Pressure vessels are the heart of plants and oil refineries stations. In many engineering applications such vessels can be subjected to periodic loading either internally due to the charging and discharging process or externally due to the excitation from other nearby components such as pumps, compressors or from seismic. So that in spite of a good design according static assumption it may be critical in dynamics. In this work a horizontal pressure vessel with accessories subjected to liquefied petroleum gas pressure LPG is considered. Three models of different head types are investigated herein namely; Deep torispherical, Elliptical 2:1 and Hemispherical. The design and material selections are chosen as per ASME. For practical service many accessories are attached to the vessel such as manhole, supports, inlet and outlet opining. Finite Element method via ANSYS R18.2 is introduced for the numerical analysis. The fatigue life in case of fully reversed cyclic loading are estimated and located. Vibration characteristics such as mode shapes and natural frequencies for the lowest five modes are evaluated and compared. It is found that the fatigue life can be increased as higher as 180% for hemi- spherical head as compared with deep torispherical head pressure vessel and the lowest four natural frequencies are nearly identical for all models, however significant change observed in the fifth natural frequency.
topic Pressure Vessel
ASME codes
Finite Element Analysis
Stress
Deformation
url https://nahje.com/index.php/main/article/view/473
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AT mahmudrasheedismail effectofheadtypesonthefreevibrationandfatigueforhorizontallpgpressurevessels
AT yassrykahtan effectofheadtypesonthefreevibrationandfatigueforhorizontallpgpressurevessels
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