Benzene (p = 876 kg/m³, μ = 6.01 × 10-4Pa.s) is to be transported in copper tubing (Type M). The fl rate is 2.0 l/s in the portion of the system to be selected. Determine the optimum economic diameter for t tubing when liquid is being conveyed, given the following: C₁ = $700/m².2 C₂ = $0.04/kW.hr n = 1.2 a = 1/7 b = 0.01 t = 8400 hr/yr F = 7.0 n = 75%

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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Benzene (p = 876 kg/m³, µ = 6.01 × 10¬ªP..s) is to be transported in copper tubing (Type M). The flo
rate is 2.0 1/s in the portion of the system to be selected. Determine the optimum economic diameter for th
tubing when liquid is being conveyed, given the following:
C1 = $700/m².2
C2 = $0.04/kW.hr t= 8400 hr/yr
b = 0.01
n = 1.2
F = 7.0
1/7
n = 75%
a =
Transcribed Image Text:Benzene (p = 876 kg/m³, µ = 6.01 × 10¬ªP..s) is to be transported in copper tubing (Type M). The flo rate is 2.0 1/s in the portion of the system to be selected. Determine the optimum economic diameter for th tubing when liquid is being conveyed, given the following: C1 = $700/m².2 C2 = $0.04/kW.hr t= 8400 hr/yr b = 0.01 n = 1.2 F = 7.0 1/7 n = 75% a =
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