Process Dynamics And Control, 4e
Process Dynamics And Control, 4e
16th Edition
ISBN: 9781119385561
Author: Seborg, Dale E.
Publisher: WILEY
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Chapter 4, Problem 4.5E
Interpretation Introduction

Interpretation:

The four transfer functions for the relation between two outputs and two inputs needs to be determined.

Concept introduction:

The Laplace transform of a time-domain function, f(t) is represented by L[f(t)] is defined as: L[f(t)]=f(s)=0f(t)e-stdt.

An integral transform equation is named as Laplace transform equation after the inventor name Pierre-Simon Laplace. This transform equation has many applications in science and engineering field. This transformation is used to transfer a real variable (t) into the function of a complex variable (s).

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The power out of an adiabatic steam turbine is 5 MW and the steam enters turbine at 2 MPa and velocity of 50 m/s, specific enthalpy (h) of 3248 kJ/kg. The elevation of the inlet is 10 m higher than at the datum. The vapor mixture exits at 15 kPa and a velocity of 180 m/s, specific enthalpy (h) of 2361.01 kJ/kg. The elevation of the exit is 6 m higher than at the datum. Let g = 9.81 m/s². Assuming the ideal gas model and R = 0.462 KJ/(kg.K). The steam specific heat ratio is 1.283. Calculate:
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