By Mohd. Kamaruddin Abd. Hamid
Aspen HYSYS: An advent to Chemical Engineering Simulations is meant for college kids who're utilizing Aspen HYSYS for the 1st time and feature very little adventure in desktop simulation. it may be used as a textbook in learners chemical engineering classes, or workshops the place Aspen HYSYS is being taught. The e-book may also function a reference in additional complicated chemical engineering classes whilst Aspen HYSYS is used as a device for simulation and fixing difficulties. It can even be used for self research of Aspen HYSYS by way of scholars and training engineers. moreover, the e-book could be a complement or a secondary publication in classes the place Aspen HYSYS is used, however the teacher doesn't have time to hide it broadly.
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Extra info for Aspen HYSYS: An introduction to chemical engineering simulation : for chemical engineering undergraduate students
_____________________________________ Analyze the Property using Case Study In this section, we will analyze the specific volume of n-butane when the temperature is changing. To do this analysis, do the following: 1. Go to the Tools menu and select Databook or click Ctrl+D as shown in Figure 2-7. Figure 2-7 2. Next, click Insert button then Variable Navigator view displays as shown in Figure 2-8. EQUATION OF STATE 27 Figure 2-8 3. In the Object column, select stream 1, and in the Variable column, select Molar Volume.
Accessing HYSYS To start HYSYS: 1. Click on the Start menu. 2. 1. Open a new case by using one of the following: 1. Go to the File menu, select New, followed by Case, or 2. Press Ctrl N, or 3. Click the New icon on the toolbar. Defining the Simulation Basis 1. Enter the following values in the specified fluid package view: On this page… Property Package Components Select… Soave-Redlich-Kwong (SRK) n-butane 2. Click the Enter Simulation Environment button when you are ready to start building the simulation.
2. Select Save As. 3. Give the HYSYS file the name Compressor then press the OK button. 9 Discussion This example shows that compressing gases can increase their temperature. 3°C increase in the temperature of the natural gas. The less efficient a compressor is, the greater the increase in the temperature of the gases being compressed. 10 51 Review and Summary In the first part of this chapter, we started with a problem to find the compressor outlet temperature when given the compressor efficiency.