Project Main Details
2010-12-01 14:21:06 GMT 2010-12-07 14:00:00 (GMT -05:00) Eastern Time (US & Canada) Yes (click here to learn more about ) Closed 0 0 0 direct invitation(s) have been sent by the voice seeker resulting in 0 audition(s) and/or proposal(s) so far. Voice123 SmartCast is seeking 50 auditions and/or proposals for this project (approx.) Invitations sent by SmartCast have resulted in 0 audition(s) and/or proposal(s) so far.
In this window, we’ll define the fluids to be used in the analysis. For this example, I’ll use liquid water. The rest of the default settings will work well here, but one thing I’d like to point out are the flow characteristics at the bottom. This shows what type of flow the fluid will encounter. In this case Laminar and Turbulent. Again, I’ll click next.
Now, we’ll specify the wall conditions. If you’ve ever taken a thermodynamics course, you’ll remember that an adiabatic process is a process in which absolutely no heat can be transferred to or from the working fluid. Basically, using an adiabatic wall condition assumes that the walls are perfectly insulated. Since this analysis doesn’t involve any heat transfer, this is the condition we want to choose. If there was heat transfer involved, we would select a different option.
The roughness value that you set here is used in the calculation of the velocity profile within the boundary layer of the flow. If you don’t know the exact roughness value for the inside of the pipe, I always recommend using zero. A roughness value of zero means that SolidWorks will assume that the walls are perfectly smooth.
You can see the cut plot in the graphics area. It’s displayed in contours right now, and the scale shows the corresponding values in pascals.
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