A tank having a cross-sectional area of 2 ft2 is operating at steady state with an inlet flow rate of 2.0 cfm. The flow-head characteristics are shown in Fig. P5-3. (a) Find the transfer function H(s/Q(s). (b) If the flow to the tank increases from 2.0 to 2.2 cfm according to a step change, calculate the level h two minutes after the change occurs. 1Outlet flow 2.4 10T--- 0.3 1.0 h(ft) FIGURE P5-3 ,(mYmin)

Introduction to Chemical Engineering Thermodynamics
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ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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A tank having a cross-sectional area of 2 f2 is operating at steady state with an inlet flow rate of
2.0cfm. The flow-head characteristics are shown in Fig. P5-3.
(a) Find the transfer function H(s)/Q(s).
(b) If the flow to the tank increases from 2,0 to 2.2 cfm according to a step change, calculate the
level h two minutes afler the change occurs.
Outlet flow
2.4
10T---
03
10
h(fi)
FIGURE P5-3
Transcribed Image Text:Problem A tank having a cross-sectional area of 2 f2 is operating at steady state with an inlet flow rate of 2.0cfm. The flow-head characteristics are shown in Fig. P5-3. (a) Find the transfer function H(s)/Q(s). (b) If the flow to the tank increases from 2,0 to 2.2 cfm according to a step change, calculate the level h two minutes afler the change occurs. Outlet flow 2.4 10T--- 03 10 h(fi) FIGURE P5-3
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