Water is drawn from a reservoir, in which the water level is 240 m above datum, at the rate of 0.13 m3/sec. The outlet of the pipeline is at datum level and is fitted with a nozzle to produce a high-speed jet to drive a turbine of the Pelton wheel type. If the velocity of the is 66 m/sec, calculate a) The power of the jet, b) The power supplied from the reservoir, c) The head used to overcome losses,
Water is drawn from a reservoir, in which the water level is 240 m above datum, at the rate of 0.13 m3/sec. The outlet of the pipeline is at datum level and is fitted with a nozzle to produce a high-speed jet to drive a turbine of the Pelton wheel type. If the velocity of the is 66 m/sec, calculate a) The power of the jet, b) The power supplied from the reservoir, c) The head used to overcome losses,
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Water is drawn from a reservoir, in which the water level is 240 m
above datum, at the rate of 0.13 m3/sec. The outlet of the pipeline is at datum level and is
fitted with a nozzle to produce a high-speed jet to drive a turbine of the Pelton wheel type. If
the velocity of the is 66 m/sec, calculate
a) The power of the jet,
b) The power supplied from the reservoir,
c) The head used to overcome losses,
d) The efficiency of the pipeline and nozzle in transmitting power.
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