1. In a test to determine the discharge coefficient of a 50 mm by 12.5 mm Venturi meter the total weight of water passing through the meter in 5.0 minutes was 3420 N. A mercury-water differential gage connected to inlet and throat of the meter showed an average difference during that time of 38 cm. Determine the meter
1. In a test to determine the discharge coefficient of a 50 mm by 12.5 mm Venturi meter the total weight of water passing through the meter in 5.0 minutes was 3420 N. A mercury-water differential gage connected to inlet and throat of the meter showed an average difference during that time of 38 cm. Determine the meter
Chapter2: Loads On Structures
Section: Chapter Questions
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Transcribed Image Text:1. In a test to determine the discharge coefficient
of a 50 mm by 12.5 mm Venturi meter the total
weight of water passing through the meter in 5.0
minutes was 3420 N. A mercury-water
differential gage connected to inlet and throat of
the meter showed an average difference during
that time of 38 cm. Determine the meter
coefficient. Assume your own meter fluid specific
gravity.
2. Considering the figure below, determine the
actual discharge using the same meter
coefficient as that computed from number 1.
Q
30 cm ø
Datum Line
15 cm ø
30 сm
Water (sp. gr. = 1)
50 cm
Q
Gage liquid (sp. gr. =
assume)
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