trifugal pump lifts water from a sump to a m is suction lift. The suction and delivery on pipe is 2.5 m and in delivery pipe it is 7.5 cm at the outlet. The speed of the pump i efficiency is 86%, determine the absolute Accumo that the inlot and outlet of the num
trifugal pump lifts water from a sump to a m is suction lift. The suction and delivery on pipe is 2.5 m and in delivery pipe it is 7.5 cm at the outlet. The speed of the pump i efficiency is 86%, determine the absolute Accumo that the inlot and outlet of the num
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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![06(a). A centrifugal pump lifts water from a sump to an overhead reservoir. The static lift is 40 m out
of which 3 m is suction lift. The suction and delivery pipes are both of 30 cm diameter. The friction
loss in suction pipe is 2.5 m and in delivery pipe it is 7.5 m. The impeller is 0.5 m in diameter and has a
width of 3 cm at the outlet. The speed of the pump is 1200 rpm. The exit blade angle is 20°. If the
manometric efficiency is 86%, determine the absolute pressures at the suction and delivery ends of
the pump. Assume that the inlet and outlet of the pump are at the same elevation. Take atmospheric
pressure as 10.10 m of water.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fddbd2c82-203e-479c-8c8b-8b17212fec7d%2F217337b4-d4b3-4fec-9bd9-a471473a545f%2Fnhu9to_processed.jpeg&w=3840&q=75)
Transcribed Image Text:06(a). A centrifugal pump lifts water from a sump to an overhead reservoir. The static lift is 40 m out
of which 3 m is suction lift. The suction and delivery pipes are both of 30 cm diameter. The friction
loss in suction pipe is 2.5 m and in delivery pipe it is 7.5 m. The impeller is 0.5 m in diameter and has a
width of 3 cm at the outlet. The speed of the pump is 1200 rpm. The exit blade angle is 20°. If the
manometric efficiency is 86%, determine the absolute pressures at the suction and delivery ends of
the pump. Assume that the inlet and outlet of the pump are at the same elevation. Take atmospheric
pressure as 10.10 m of water.
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