. Corsidera circular soth pipeof inner diameter D;=0.015mwhose inner surface is covered with a layer of liquid as a result of condersation. In order to dry the inner surface of the pipe, air at 300K at 1 atmis forced to flow throughit with anaverage velocity of 1.2m/s. Using the analogy between heat and mass transfer, detemine the mass transfer coefficient inside the pipe for fully developed flow. Note: Viscosity of the air for given conditions is given as 1.58 x 10*n?/s. Also, for a laminar fully developed flow the NuFSh=3.66. Your solutionmust state goveming equations and associated assumptions, illustration and step by step execution of the overall solution
. Corsidera circular soth pipeof inner diameter D;=0.015mwhose inner surface is covered with a layer of liquid as a result of condersation. In order to dry the inner surface of the pipe, air at 300K at 1 atmis forced to flow throughit with anaverage velocity of 1.2m/s. Using the analogy between heat and mass transfer, detemine the mass transfer coefficient inside the pipe for fully developed flow. Note: Viscosity of the air for given conditions is given as 1.58 x 10*n?/s. Also, for a laminar fully developed flow the NuFSh=3.66. Your solutionmust state goveming equations and associated assumptions, illustration and step by step execution of the overall solution
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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Transcribed Image Text:Corsidera circular smoth pipeof inner diameter D;=0.015mwhose inner surface is covered
with a layer of liquid as a result of condensation. In order to dry the inner surface of the pipe, air
at 300K at 1 atmis forced to flow throughit with anaverage velocity of 1.2m/s. Using the analogy
between heat and mass trarsfer, detemine the mass transfer coeffícient irside the pipe for fully
developed flow. Note: Viscosity of the air for given conditions is given as 1.58 x 10°n?/s. Also,
for a lamirar fully developed flow the N=Sh=3.66. Your solution must state governing equations
and associated assumptions, illustration and step by step execution of the overall solution
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