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April 5, 2024, 04:17 |
Turbine in Star CCM+
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#1 |
New Member
Daniel Wirch
Join Date: Apr 2024
Posts: 2
Rep Power: 0 |
I'm a student and my thesis topic includes a CFD simulation of a radial turbine with Star CCM+. I am running a three dimensional implicit unsteady simulation with k-omega turbulence, coupled flow and ideal gas. The turbine should have a specific rotation rate as the goal, which i put into the simulation as a rigid body motion for the impeller region. How do I verfiy the design? Is it via the pressure drop between input and ouput? Is there another way?
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April 5, 2024, 19:28 |
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#2 | |
Member
Peresvet
Join Date: Mar 2021
Location: USSR
Posts: 56
Rep Power: 5 |
Quote:
https://youtu.be/xDyWPHa41KE |
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April 9, 2024, 11:45 |
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#3 |
New Member
Daniel Wirch
Join Date: Apr 2024
Posts: 2
Rep Power: 0 |
Hello Peresvet,
thank you for the tip. I am going to implement the overset mesh for the impeller. What do you mean by the inverse problem? Have a monitor of the pressure difference between input and output? And what does "delov" mean? |
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April 9, 2024, 15:11 |
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#4 | |
Member
Peresvet
Join Date: Mar 2021
Location: USSR
Posts: 56
Rep Power: 5 |
Quote:
Delov! A proverb in Russian means, simply, easily, without problems. In my example, this is a wind generator turbine and it is spun by the air flow at the inlet. In your case, I assume, the turbine has already been given a rotation speed and all that remains is to determine the pressure. To control the pressure in a given section or on the surface of a turbine, etc., you need to create a new scalar scene and select the field function in it > select the appropriate one from the list. |
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Tags |
rigid body motion, turbine, verification |
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