The turbine shown in Figure E8.11 extracts 50 hp from the water flowing through it. The 1-ft-diameter, 300-ft-long pipe is assumed to have a friction factor of 0.02. Minor losses are negligible. Determine the flowrate through the pipe and turbine. (1) 1 = 90 ft 300-ft-long, 1-ft-diameter pipe Free jet Turbine f = 0.02 (2) 2 = 0

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Example 8.11 Type II, Determine Flowrate
• The turbine shown in Figure E8.11 extracts 50 hp from the water
flowing through it. The 1-ft-diameter, 300-ft-long pipe is assumed to
have a friction factor of 0.02. Minor losses are negligible. Determine
the flowrate through the pipe and turbine.
▼ (1)
Z1 = 90 ft
300-ft-long,
1-ft-diameter pipe
Free jet
Turbine
f = 0.02
(2)
Z2 = 0
Transcribed Image Text:Example 8.11 Type II, Determine Flowrate • The turbine shown in Figure E8.11 extracts 50 hp from the water flowing through it. The 1-ft-diameter, 300-ft-long pipe is assumed to have a friction factor of 0.02. Minor losses are negligible. Determine the flowrate through the pipe and turbine. ▼ (1) Z1 = 90 ft 300-ft-long, 1-ft-diameter pipe Free jet Turbine f = 0.02 (2) Z2 = 0
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