b) An elbow with an angle, 0 of 30 is attached between two pipes that transports...
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b) An elbow with an angle, 0 of 30 is attached between two pipes that transports gasoline (Pg= 700 kg/m) at a volume flowrate of 0.02 m/s as shown in Figure Q2 (b). The diameter of the inlet, DA is 0.1 m, and the diameter of the outlet DB is 0.05 m. The inlet gage pressure of gasoline at point A, Pgage,A is 300 kPa and the elevation difference between point A and point B is 0.4 m. e B Figure Q2 (b) A 0.4 m If the weight of the pipe and the gasoline are neglected, determine: i) the gage pressure at point B, PB and ii) the anchoring force, FR required to hold the elbow in place. [CO2/PO2/C4/DK4] b) An elbow with an angle, 0 of 30 is attached between two pipes that transports gasoline (Pg= 700 kg/m) at a volume flowrate of 0.02 m/s as shown in Figure Q2 (b). The diameter of the inlet, DA is 0.1 m, and the diameter of the outlet DB is 0.05 m. The inlet gage pressure of gasoline at point A, Pgage,A is 300 kPa and the elevation difference between point A and point B is 0.4 m. e B Figure Q2 (b) A 0.4 m If the weight of the pipe and the gasoline are neglected, determine: i) the gage pressure at point B, PB and ii) the anchoring force, FR required to hold the elbow in place. [CO2/PO2/C4/DK4]
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To solve the given problem we are provided with the following information The gasoline density g is 700 kgm The volume flow rate Q is 002 ms The diame... View the full answer
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