Calculate the discharge through a venturimeter connected to a differential manometer. The liquid present in the manometer is taken as mercury and the fluid flowing through the venturimeter is water. The difference between the level of mercury in 2 limbs of manometer is 30 mm. The diameter of inlet is 20cm and the ratio of the area of inlet and throat is 4. Assume the coefficient of discharge as 0.96.
Calculate the discharge through a venturimeter connected to a differential manometer. The liquid present in the manometer is taken as mercury and the fluid flowing through the venturimeter is water. The difference between the level of mercury in 2 limbs of manometer is 30 mm. The diameter of inlet is 20cm and the ratio of the area of inlet and throat is 4. Assume the coefficient of discharge as 0.96.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Calculate the discharge through a venturimeter connected to a differential manometer. The liquid present in the manometer is taken as mercury and the fluid flowing through the venturimeter is water. The difference between the level of mercury in 2 limbs of manometer is 30 mm. The diameter of inlet is 20cm and the ratio of the area of inlet and throat is 4. Assume the coefficient of discharge as 0.96.
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