Boilers are pressure vessels which are used for constant pressure enthalpy gain. The walls of boilers need to be robust in design to sustain the pressure and heat of the working fluid. The mechanics and loadings on the wall of pressure vessels need to be understood to estimate performance. Take pressure of the steel boiler 12 – (sec-1 46)³ GPA. 1. Explain the conditions of stresses and governing failure theories in case of the pressure vessel. 2. Determine strains and stresses through the pressure vessel, considering it as thin walled pressure 3. vessel. 4. Design the pressure vessel such that the boiler could sustain the stresses determined above. 5. Analyze the shear stress profile such that the vessel is subjected to residual stresses.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Problem Statement
Boilers are pressure vessels which are used for constant pressure enthalpy gain. The walls of
boilers
need to be robust in design to sustain the pressure and heat of the working fluid. The mechanics
and loadings on the wall of pressure vessels need to be understood to estimate performance.
Take
pressure of the steel boiler 12 – (sec-1 46)³ GPA.
1. Explain the conditions of stresses and governing failure theories in case of the
pressure vessel.
2. Determine strains and stresses through the pressure vessel, considering it as thin
walled pressure
3. vessel.
4. Design the pressure vessel such that the boiler could sustain the stresses determined
above.
5. Analyze the shear stress profile such that the vessel is subjected to residual stresses.
Transcribed Image Text:Problem Statement Boilers are pressure vessels which are used for constant pressure enthalpy gain. The walls of boilers need to be robust in design to sustain the pressure and heat of the working fluid. The mechanics and loadings on the wall of pressure vessels need to be understood to estimate performance. Take pressure of the steel boiler 12 – (sec-1 46)³ GPA. 1. Explain the conditions of stresses and governing failure theories in case of the pressure vessel. 2. Determine strains and stresses through the pressure vessel, considering it as thin walled pressure 3. vessel. 4. Design the pressure vessel such that the boiler could sustain the stresses determined above. 5. Analyze the shear stress profile such that the vessel is subjected to residual stresses.
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