The volumetric flow through the pump in the figure is Q = 0.014 m3 / s. The fluid being pumped is oil with specific gravity SG = 0.86. Losses in the system are caused by the check valve and friction in the pipeline and were estimated at HLT = 1.86 m col of water. Other data available are: PA = -28 kPa (vacuum), PB = 296 kPa (man), ZB = 1 m, DA = 7.62 cm, DB = 5.08 cm. Calculate the POWER in kW that the pump transmits to the oil. Bomba = pump flujo = flow/flux válvula de verificación = check valve
The volumetric flow through the pump in the figure is Q = 0.014 m3 / s. The fluid being pumped is oil with specific gravity SG = 0.86. Losses in the system are caused by the check valve and friction in the pipeline and were estimated at HLT = 1.86 m col of water. Other data available are: PA = -28 kPa (vacuum), PB = 296 kPa (man), ZB = 1 m, DA = 7.62 cm, DB = 5.08 cm. Calculate the POWER in kW that the pump transmits to the oil. Bomba = pump flujo = flow/flux válvula de verificación = check valve
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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The volumetric flow through the pump in the figure is Q = 0.014 m3 / s. The fluid being pumped is oil with specific gravity SG = 0.86. Losses in the system are caused by the check valve and friction in the pipeline and were estimated at HLT = 1.86 m col of water. Other data available are: PA = -28 kPa (vacuum), PB = 296 kPa (man), ZB = 1 m, DA = 7.62 cm, DB = 5.08 cm. Calculate the POWER in kW that the pump transmits to the oil.
Bomba = pump
flujo = flow/flux
válvula de verificación = check valve
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