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Influence Mechanism of Liquid Level on Oil Tank Structures and Damage Risk Prevention Based on Shell Theory
by
Rui, Jia
, Cao, Peng-Fei
, Wang, Si-Kai
, Yi, Di-Fei
, Wang, Hua-Ping
, Wang, Ti-Cai
in
Damage prevention
/ Deformation
/ Deformation effects
/ Design optimization
/ Finite element method
/ Liquid levels
/ Mechanical analysis
/ Prevention
/ Shell theory
/ Static pressure
/ Storage facilities
/ Storage tanks
/ Strain distribution
/ Structural health monitoring
/ Structural safety
/ Wall thickness
2025
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Influence Mechanism of Liquid Level on Oil Tank Structures and Damage Risk Prevention Based on Shell Theory
by
Rui, Jia
, Cao, Peng-Fei
, Wang, Si-Kai
, Yi, Di-Fei
, Wang, Hua-Ping
, Wang, Ti-Cai
in
Damage prevention
/ Deformation
/ Deformation effects
/ Design optimization
/ Finite element method
/ Liquid levels
/ Mechanical analysis
/ Prevention
/ Shell theory
/ Static pressure
/ Storage facilities
/ Storage tanks
/ Strain distribution
/ Structural health monitoring
/ Structural safety
/ Wall thickness
2025
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Do you wish to request the book?
Influence Mechanism of Liquid Level on Oil Tank Structures and Damage Risk Prevention Based on Shell Theory
by
Rui, Jia
, Cao, Peng-Fei
, Wang, Si-Kai
, Yi, Di-Fei
, Wang, Hua-Ping
, Wang, Ti-Cai
in
Damage prevention
/ Deformation
/ Deformation effects
/ Design optimization
/ Finite element method
/ Liquid levels
/ Mechanical analysis
/ Prevention
/ Shell theory
/ Static pressure
/ Storage facilities
/ Storage tanks
/ Strain distribution
/ Structural health monitoring
/ Structural safety
/ Wall thickness
2025
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Influence Mechanism of Liquid Level on Oil Tank Structures and Damage Risk Prevention Based on Shell Theory
Journal Article
Influence Mechanism of Liquid Level on Oil Tank Structures and Damage Risk Prevention Based on Shell Theory
2025
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Overview
As a key storage facility, the structural safety of large oil tanks is directly related to the stable operation of the energy system. The static pressure caused by the change of liquid level is one of the main loads in the service process of storage tanks, which determines the structural deformation and damage risk. To explore the structural deformation properties under the change of liquid levels and provide a theoretical basis for the prevention and control of damage risk, this paper systematically analyzes the mechanical response of storage tanks under the pressures induced by different liquid levels based on the shell theory. Combined with the finite element software COMSOL, the radial displacement and stress-strain distribution under different liquid levels are simulated to verify the accuracy and effectiveness of the proposed theoretical model. The increase in liquid level and radius aggravates the radial deformation and makes the risk point move up, while the increase in wall thickness can effectively reduce the deformation response. Suggestions on the monitoring zone and damage risk prevention measures have also been given to instruct the safe operation of oil tanks. The research provides theoretical support for the optimization design of storage tank structures, the construction of advanced structural health monitoring system and the prevention and control of damage risk.
Publisher
Tech Science Press
Subject
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