Determine the stress in the walls of a cylindrical tank 3.6 m high, 1 m in diameter, 10 mm thick. It is totally filled with three liquids having unit weight of 9.81 KN/m, 19.62 KN/m³, and 29.43 KN/m?, respectively, having equal a depth of 1.20 m.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Determine the stress in the walls of a cylindrical tank 3.6 m high, 1 m in
diameter, 10 mm thick. It is totally filled with three liquids having unit weight
of 9.81 KN/m?, 19.62 KN/m?, and 29.43 KN/m³, respectively, having equal a
depth of 1.20 m.
hint:
And for pressure, we have to get the MAXIMUM PRESSUREI
And the maximum pressure occurs at the bottom of the tank.
To solve for pressure at the bottom of the tank, the equation is: p = yM.
The pressure at the bottom of the tank which is filled with different liquids is:
Pbottom = P1 + P2 + P3
Transcribed Image Text:Determine the stress in the walls of a cylindrical tank 3.6 m high, 1 m in diameter, 10 mm thick. It is totally filled with three liquids having unit weight of 9.81 KN/m?, 19.62 KN/m?, and 29.43 KN/m³, respectively, having equal a depth of 1.20 m. hint: And for pressure, we have to get the MAXIMUM PRESSUREI And the maximum pressure occurs at the bottom of the tank. To solve for pressure at the bottom of the tank, the equation is: p = yM. The pressure at the bottom of the tank which is filled with different liquids is: Pbottom = P1 + P2 + P3
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