2.10-10. Flow in an Annulus and Pressure Drop. Water flows n tal, concentric-pipe heat exchanger and is being heated from 40°C to 50°C in the exchanger which has a length of 30 m of cquivalent straight pipe. The flow rate of the water is 2.90 x 10-m/s The inner pipe is 1-in. schedule 40 and the outer is 2-in. schedule 40. What is the pressure drop? Use an average temper- ature of 45°C for bulk physical properties. Assume that the wall temperature is an average of 4°C higher than the average bulk temperature so that a correction can be made for the effect of heat transfer on the friction factor. ICuuoorible Elow Starting with

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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2.10-10. Flow in an Annulus and Pressure Drop. Water flows in the annulus of a hori-
(S3) SIEDER,
2ontal, concentric-pipe heat exchanger and is being heated from 40°C to 50°C in
the exchanger which has a length of 30 m of equivalent straight pipe. The flow
rate of the water is 2.90 x 10-m/s The inner pipe is 1-in. schedule 40 and the
outer is 2-in. schedule 40. What is the pressure drop? Use an average temper-
ature of 45°C for bulk physical properties. Assume that the wall temperature is
an average of 4°C higher than the average bulk temperature so that a correction
can be made for the effect of heat transfer on the friction factor.
(W1) WEASH
Chen
2-10-6
ICauronible Elow
Starting with
Transcribed Image Text:2.10-10. Flow in an Annulus and Pressure Drop. Water flows in the annulus of a hori- (S3) SIEDER, 2ontal, concentric-pipe heat exchanger and is being heated from 40°C to 50°C in the exchanger which has a length of 30 m of equivalent straight pipe. The flow rate of the water is 2.90 x 10-m/s The inner pipe is 1-in. schedule 40 and the outer is 2-in. schedule 40. What is the pressure drop? Use an average temper- ature of 45°C for bulk physical properties. Assume that the wall temperature is an average of 4°C higher than the average bulk temperature so that a correction can be made for the effect of heat transfer on the friction factor. (W1) WEASH Chen 2-10-6 ICauronible Elow Starting with
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