The liquid fed to the mixing tank shown in the figure at a constant temperature is heated by the isa supplied from an isa changer. After one stroke, the feed temperature TO is changed by the step effect. QUA(Tg- T^(2/3)) can be used for heat transfer from the heat exchanger. a) Tick the time dependent dynamic behavior of the temperature in the tank b) Reproduce the transfer function of the system and show it in the block diagram. c) Determine the time constant and process gain values of the system.

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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Question
The liquid fed to the mixing tank shown
in the figure at a constant temperature
is heated by the isa supplied from an
isa changer. After one stroke, the feed
temperature TO is changed by the step
effect. Q = UA(Tg- T^(2/3)) can be used for
heat transfer from the heat exchanger.
ex
a) Tick the time dependent dynamic
behavior of the temperature in the tank
b) Reproduce the transfer function of the
system and show it in the block diagram.
c) Determine the time constant and
process gain values of the system.
d) Determine the dynamical behavior of
the system (steady unstable, overdamped
critically dampened sontim).
e) Determine the steady-state values of the
liquid temperature in the tank before and
after the harvesting step.
Terms:
: F (m/dak), T (°C). V (m³), p (kg m), C, [klikg. C)], UA [kJ/(dak. °C)].
Mi Notlar ile oluşturuldu
16
Transcribed Image Text:The liquid fed to the mixing tank shown in the figure at a constant temperature is heated by the isa supplied from an isa changer. After one stroke, the feed temperature TO is changed by the step effect. Q = UA(Tg- T^(2/3)) can be used for heat transfer from the heat exchanger. ex a) Tick the time dependent dynamic behavior of the temperature in the tank b) Reproduce the transfer function of the system and show it in the block diagram. c) Determine the time constant and process gain values of the system. d) Determine the dynamical behavior of the system (steady unstable, overdamped critically dampened sontim). e) Determine the steady-state values of the liquid temperature in the tank before and after the harvesting step. Terms: : F (m/dak), T (°C). V (m³), p (kg m), C, [klikg. C)], UA [kJ/(dak. °C)]. Mi Notlar ile oluşturuldu 16
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