Water is condensing on a surface at (310 mathrm{~K}). The gas mixture has (65 %) water vapor
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Water is condensing on a surface at \(310 \mathrm{~K}\). The gas mixture has \(65 \%\) water vapor and is at a temperature of \(370 \mathrm{~K}\). The total pressure is \(1 \mathrm{~atm}\).
Calculate the rate of condensation. Look for and use numerical values of physical properties from the web or other books.
Use the following values for the transport coefficients.
The gas-side heat transfer coefficient is \(12 \mathrm{~W} / \mathrm{m}^{2} \cdot \mathrm{K}\).
The gas-side mass transfer coefficient is \(0.009 \mathrm{~m} / \mathrm{s}\).
Neglect the heat-transport resistance in the condensing film.
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Related Book For
Advanced Transport Phenomena Analysis Modeling And Computations
ISBN: 9780521762618
1st Edition
Authors: P. A. Ramachandran
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