In a test to determine the discharge coefficient of a 30 cm by 15 cm Venturi meter the total weight of oil (specific gravity = 0.83) passing through the meter in 2.0 minutes was 15383 N. A water-oil differential manometer connected to inlet and throat of the meter showed an average water difference during that time of 20 cm. Determine the meter coefficient and the head loss on the meter. Compute all values rounded to the fourth decimal point. Direct substitution to formula solution will have no credit points.
In a test to determine the discharge coefficient of a 30 cm by 15 cm Venturi meter the total weight of oil (specific gravity = 0.83) passing through the meter in 2.0 minutes was 15383 N. A water-oil differential manometer connected to inlet and throat of the meter showed an average water difference during that time of 20 cm. Determine the meter coefficient and the head loss on the meter. Compute all values rounded to the fourth decimal point. Direct substitution to formula solution will have no credit points.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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- In a test to determine the discharge coefficient of a 30 cm by 15 cm Venturi meter the total weight of oil (specific gravity = 0.83) passing through the meter in 2.0 minutes was 15383 N. A water-oil differential manometer connected to inlet and throat of the meter showed an average water difference during that time of 20 cm. Determine the meter coefficient and the head loss on the meter. Compute all values rounded to the fourth decimal point. Direct substitution to formula solution will have no credit points.
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