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Draw the simulink through matlab for this question For a distillation column the outlet temperature from a tray was modeled. The dynamic response is given

Draw the simulink through matlab for this question

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For a distillation column the outlet temperature from a tray was modeled. The dynamic response is given as the following: T(s) 6 G(S) = R'(S) 100s2 + 30s +2 Where T is the outlet temperature and R is the reflux flow rate returned to same tray. The initial steady state value of T is 50 C and R is 12 kg/s. Answer each question on your simulation and plot the response of T' up to 100 seconds for the following cases separately: a) The response for a change in the reflux flow rate at t=0 to 15 kg/s. b) The normalized response plot for the step change. what kind of system do we have (overdamped,crtitically damped or underdamped)? c) The actual value of T for the previous step change. What's the new steady state value? d)The reflux flow rate kept increasing at a constant rate, what's the ter ature after 60 seconds? e) The reflux flow rate was changing as the following 12+ sqrt(t) For a distillation column the outlet temperature from a tray was modeled. The dynamic response is given as the following: T(s) 6 G(S) = R'(S) 100s2 + 30s +2 Where T is the outlet temperature and R is the reflux flow rate returned to same tray. The initial steady state value of T is 50 C and R is 12 kg/s. Answer each question on your simulation and plot the response of T' up to 100 seconds for the following cases separately: a) The response for a change in the reflux flow rate at t=0 to 15 kg/s. b) The normalized response plot for the step change. what kind of system do we have (overdamped,crtitically damped or underdamped)? c) The actual value of T for the previous step change. What's the new steady state value? d)The reflux flow rate kept increasing at a constant rate, what's the ter ature after 60 seconds? e) The reflux flow rate was changing as the following 12+ sqrt(t)

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