A- Determine the flow rate and the average flow velocity of methanol at 20°C (p= 788.4 kg/m³ and u= 5.857 × 10 -4 kg/m.s) flowing through a 4.4-cm-diameter pipe with a 3.2- cm-diameter orifice meter equipped with a mercury manometer across the orifice plate, as shown in the figure. If the differential height of the manometer is 13 cm. consider the density of mercury is 13600 kg/m³ and Cd = %3D %3D 061

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A- Determine the flow rate and the average flow velocity of
methanol at 20°C (p= 788.4 kg/m³ and u = 5.857 x 10 -
kg/m.s) flowing through a 4.4-cm-diameter pipe with a 3.2-
cm-diameter orifice meter equipped with a mercury
manometer across the orifice plate, as shown in the figure.
If the differential height of the manometer is 13 cm.
consider the density of mercury is 13600 kg/m³ and Cd =
13 cm
Mercury
manometer
0.61.
Transcribed Image Text:A- Determine the flow rate and the average flow velocity of methanol at 20°C (p= 788.4 kg/m³ and u = 5.857 x 10 - kg/m.s) flowing through a 4.4-cm-diameter pipe with a 3.2- cm-diameter orifice meter equipped with a mercury manometer across the orifice plate, as shown in the figure. If the differential height of the manometer is 13 cm. consider the density of mercury is 13600 kg/m³ and Cd = 13 cm Mercury manometer 0.61.
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