You will need some of the following properties of water: Temperature -4°C Density = 998 kg/m Dynamic viscosity = 1.003.10 kg/m Kinematic viscosity = 1.004.10* m/s 3. Consider the following elbow with 57 mm inner diameter: 90 mm Water flows through the elbow from the bottom to the top: a. Determine gage pressure (in Pascals) at the inlet of the elbow if outlet is exposed to the atmosphere. Recall: 1 atm = 101,325 Pa b. Determine mass flow rate of the of the water if maximum velocity is 10m's
c. Determine whether flow across the pipe laminar or turbulent. Show work. d. Determine net horizontal component of the force of water flow at the outlet Assume kinematic correction factor of 1.05. c. Determine net vertical component of the force of water flow at the inlet. Assume kinematic correction factor of 1.05. Determine head loss across the elbow if minor loss coefficient, Kl=0.1.
You will need some of the following properties of water: Temperature -4°C Density = 998 kg/m Dynamic viscosity = 1.003.1
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You will need some of the following properties of water: Temperature -4°C Density = 998 kg/m Dynamic viscosity = 1.003.1
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