B- A stream of warm petroleum product is produced in a steady state flow mix process by combining of cool stream with another hot one of same prod During the mixing, heat is lost to the surroundings and the mixing system provided with agitator to agitate the mixture. . Derive an equation to estimate the temperature of the exit stream T3. It is required that T3 not exceed 50°C, if T₁ = 25°C, T₂ = 75°C, Q = 30kV kW, m₁ = 1.6 kg/s, m2 = 1.1 kg/s is this requirement exist? And y maximum T₁ to keep this requirements? Where, subscript 1& 2 rep streams and 3 of exit one. Take Cp = 1.84 kJ/kg.K.

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
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B- A stream of warm petroleum product is produced in a steady state flow mix
process by combining of cool stream with another hot one of same prod
During the mixing, heat is lost to the surroundings and the mixing system
provided with agitator to agitate the mixture.
. Derive an equation to estimate the temperature of the exit stream T3.
It is required that T3 not exceed 50°C, if T₁ = 25°C, T₂ = 75°C, Q = 30kV
kW, m₁ = 1.6 kg/s, m2 = 1.1 kg/s is this requirement exist? And y
maximum T₁ to keep this requirements? Where, subscript 1& 2 rep
streams and 3 of exit one. Take Cp = 1.84 kJ/kg.K.
Transcribed Image Text:B- A stream of warm petroleum product is produced in a steady state flow mix process by combining of cool stream with another hot one of same prod During the mixing, heat is lost to the surroundings and the mixing system provided with agitator to agitate the mixture. . Derive an equation to estimate the temperature of the exit stream T3. It is required that T3 not exceed 50°C, if T₁ = 25°C, T₂ = 75°C, Q = 30kV kW, m₁ = 1.6 kg/s, m2 = 1.1 kg/s is this requirement exist? And y maximum T₁ to keep this requirements? Where, subscript 1& 2 rep streams and 3 of exit one. Take Cp = 1.84 kJ/kg.K.
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