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04 Thin cylindrical pressure vessel| Numerical |Hoop Stress | Longitudinal stress

Welcome to my video on thin cylindrical pressure vessels! In this video, we will explore the concept of hoop stress and longitudinal stress that arise in cylindrical pressure vessels, and learn how to calculate these stresses numerically.
A thin cylindrical pressure vessel is a type of container that is used to store or transport pressurized fluids or gases. It is typically made of a cylindrical shell with hemispherical or dished ends, and is designed to withstand the internal pressure that is exerted on it by the fluid or gas inside.
One of the key stresses that occur in a cylindrical pressure vessel is hoop stress. This is the stress that acts tangentially to the circumference of the vessel, and is caused by the internal pressure. The hoop stress can be calculated using the formula:
hoop stress = (internal pressure x radius) / thickness
where the radius is the radius of the cylinder, and the thickness is the thickness of the cylinder wall.
Another stress that occurs in a cylindrical pressure vessel is longitudinal stress. This is the stress that acts along the length of the vessel, and is caused by the internal pressure. The longitudinal stress can be calculated using the formula:
longitudinal stress = (internal pressure x radius^2) / (2 x thickness)
In this video, we will learn how to calculate these stresses numerically

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I am Sunil Mohod. Welcome to Our YouTube Channel
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Видео 04 Thin cylindrical pressure vessel| Numerical |Hoop Stress | Longitudinal stress канала Sunil Mohod
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