Difference between revisions of "Muhammad rafli khansa"

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Todays class starts with an introduction tutorial with mr DAI assistant about open modelica in relation with IC engine.
 
Todays class starts with an introduction tutorial with mr DAI assistant about open modelica in relation with IC engine.
 
We were directed to access the thermosyspro 3.2 to create new model of an ic engine
 
We were directed to access the thermosyspro 3.2 to create new model of an ic engine
 +
 +
  
 
Tutorial :
 
Tutorial :
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4. Next add fuelsource.PQ founded in the combustion tab connected to the fuel inlet
 
4. Next add fuelsource.PQ founded in the combustion tab connected to the fuel inlet
  
5. next add Source.PQ as air source connected to air inlet
+
5. next add Source.PQ as air source
  
6. Next add source.PQ from the waterstream tab and connected it to inlet of the cooling
+
6. Next add source.PQ from the waterstream tab  
  
 
7. Next add “seek” for outlet
 
7. Next add “seek” for outlet
 +
 +
8. Next add singular pressure losses and pit it in between the source and the input (the same goes for the output)

Revision as of 14:10, 24 February 2023

Short Introduction

Hello, my name is muhammad rafli khansa from 2019 class of mechanical engineering. My interest is in sports, art, and music


Class resume 24/02/2022

Todays class starts with an introduction tutorial with mr DAI assistant about open modelica in relation with IC engine. We were directed to access the thermosyspro 3.2 to create new model of an ic engine


Tutorial :

1. Open thermosyspro library

2. Find multi fluids

3. Find machines tab

And it will generate a model in the software

4. Next add fuelsource.PQ founded in the combustion tab connected to the fuel inlet

5. next add Source.PQ as air source

6. Next add source.PQ from the waterstream tab

7. Next add “seek” for outlet

8. Next add singular pressure losses and pit it in between the source and the input (the same goes for the output)