The field storage tank is filled with water to the level shown. The stand pipe is connected to the tank at B and open to the atmosphere at C. Determine the maximum pressure in the tank and the pressure of the trapped air in the tank (space A) if the water rises to a level h = 8 m in the stand pipe. 2 m (58.86 kPa)

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The field storage tank is filled with water to the level shown. The stand pipe is connected to the tank at B and open to the atmosphere at C. Determine the maximum pressure in the tank and the pressure of the trapped air in the tank(Space A) if the water rises to a level of h=8 m in the stand pipe.

The field storage tank is filled with water to the
level shown. The stand pipe is connected to the
tank at B and open to the atmosphere at C.
Determine the maximum pressure in the tank
and the pressure of the trapped air in the tank
(space A) if the water rises to a level h = 8 m in
the stand pipe.
Transcribed Image Text:The field storage tank is filled with water to the level shown. The stand pipe is connected to the tank at B and open to the atmosphere at C. Determine the maximum pressure in the tank and the pressure of the trapped air in the tank (space A) if the water rises to a level h = 8 m in the stand pipe.
4. The field storage tank is filled with water to the
level shown. The stand pipe is connected to the
tank at B and open to the atmosphere at C.
Determine the maximum pressure in the tank
and the pressure of the trapped air in the tank
(space A) if the water rises to a level h = 8 m in
the stand pipe.
2 m
(58.86 kPa)
Transcribed Image Text:4. The field storage tank is filled with water to the level shown. The stand pipe is connected to the tank at B and open to the atmosphere at C. Determine the maximum pressure in the tank and the pressure of the trapped air in the tank (space A) if the water rises to a level h = 8 m in the stand pipe. 2 m (58.86 kPa)
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