Obtain Error between Nuexp and Nucor in %. use the following air properties

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
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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Experiments have been conducted on
a metallic cylinder 9.525 mm in diameter and 300 mm long.
The cylinder is heated internally by an electrical heater and is subjected to a cross flow of air in a low speed wind tunnel.
Under a specific set of operating conditions for which the upstream air velocity and temperature were maintained
at V = 7.62 m/s and Tair = 24.0°C, respectively, and
the heater power dissipating was measured to be P = 57.2 W,
while the average cylinder surface temperature was determined to be Tsur = 80°C.
It is estimated that 10% of the power dissipation is lost through the cumulative effect of surface radiation
and conduction through the end pieces.
Obtain Error between Nuexp and Nucor in %.
use the following air properties
Viscosity (mu)
0.00001962 kg/m-s
Density (rho)
1.086 kg/m3
Thermal conductivity (k)
0.02816 W/m-K
Pr
0.701
Transcribed Image Text:Experiments have been conducted on a metallic cylinder 9.525 mm in diameter and 300 mm long. The cylinder is heated internally by an electrical heater and is subjected to a cross flow of air in a low speed wind tunnel. Under a specific set of operating conditions for which the upstream air velocity and temperature were maintained at V = 7.62 m/s and Tair = 24.0°C, respectively, and the heater power dissipating was measured to be P = 57.2 W, while the average cylinder surface temperature was determined to be Tsur = 80°C. It is estimated that 10% of the power dissipation is lost through the cumulative effect of surface radiation and conduction through the end pieces. Obtain Error between Nuexp and Nucor in %. use the following air properties Viscosity (mu) 0.00001962 kg/m-s Density (rho) 1.086 kg/m3 Thermal conductivity (k) 0.02816 W/m-K Pr 0.701
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