t (min) T, (°C) T, (°C) | t (min) T;(°C) T,(°C) 2 10.00 20.00 11 17.80 25.77 1 12.27 20.65 12 17.85 25.84 13.89 21.79 13 17.89 25.88 3 15.06 22.83 14 17.92 25.92 4 15.89 23.68 15 17.95 25.94 16.49 24.32 16 17.96 25.96 16.91 24.79 17 17.97 25.97 7 17.22 25.13 18 17.98 25.98 8 17.44 25.38 19 17.99 25.98 17.60 25.55 20 17.99 25.99 10 17.71 25.68 50 18.00 26.00 T1 Tank T2 Tank 1 2
t (min) T, (°C) T, (°C) | t (min) T;(°C) T,(°C) 2 10.00 20.00 11 17.80 25.77 1 12.27 20.65 12 17.85 25.84 13.89 21.79 13 17.89 25.88 3 15.06 22.83 14 17.92 25.92 4 15.89 23.68 15 17.95 25.94 16.49 24.32 16 17.96 25.96 16.91 24.79 17 17.97 25.97 7 17.22 25.13 18 17.98 25.98 8 17.44 25.38 19 17.99 25.98 17.60 25.55 20 17.99 25.99 10 17.71 25.68 50 18.00 26.00 T1 Tank T2 Tank 1 2
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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A process consists of two stirred tanks with input q and outputsT₁ andT₂. To test the hypothesis that the dynamics in each tank are basically first-order,a step change inqis made from 82 to 85 L/min, with output responses given in Table (a)Find the transfer functionsT′₁(s)∕Q′(s) andT′₂(s)∕T′₁(s) Assume that they are of the form Ki/(?ᵢs+1).(b)Calculate the model responses to the same step change in q and plot with the experimental data
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