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Internal Convection in a box with heat transfer
Posted Sep 27, 2010, 4:00 p.m. EDT 3 Replies
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Hello everybody!
I have a problem when modelling convection in a close box (rectangular shape) using general heat transfer module and weak compressible navier-stokes module coupled. I wanna know the profiles of heat flux and velocities on the fluid (argon, gas) but... My models don't converge... I think this can be solved in a simple mode, but i really don't figure out, yet. Can anyone post a solved model like this?
Description of my model:
Rectangular box, (0,80 m in x, 2,8 m in y)
Material Library: Argon (gas form)
General Heat Tranfer
Physics: default
convective box checked, velocity field marked as "u" and "v", Pa = 1[atm];
initial temperature=25[degC];
Bondary settings: botton: Temperature=(25+0.7*t[1/s])[degC]; all others: Insulation
Weakly Compressible Navier-Stokes
physics: all default, plus Fy=-9.8[m/s^2]*rho_chns
stabilization tab: all default
initial: u,v =0 (both), Po=1[atm]
Bondary Settings: wall, no slip (all them)
The time evolution that I tried was 100 seconds
I've already tried:
- Refining meshes
- Changes the solver
- Using a bondary condiction of heat flux instead Temperature (in general heat transfer, botton of box)
I always only find this message:
Error:
Failed to find consistent initial values.
Last time step is not converged.
Thanks for reading, sorry for the long text. :)
I have a problem when modelling convection in a close box (rectangular shape) using general heat transfer module and weak compressible navier-stokes module coupled. I wanna know the profiles of heat flux and velocities on the fluid (argon, gas) but... My models don't converge... I think this can be solved in a simple mode, but i really don't figure out, yet. Can anyone post a solved model like this?
Description of my model:
Rectangular box, (0,80 m in x, 2,8 m in y)
Material Library: Argon (gas form)
General Heat Tranfer
Physics: default
convective box checked, velocity field marked as "u" and "v", Pa = 1[atm];
initial temperature=25[degC];
Bondary settings: botton: Temperature=(25+0.7*t[1/s])[degC]; all others: Insulation
Weakly Compressible Navier-Stokes
physics: all default, plus Fy=-9.8[m/s^2]*rho_chns
stabilization tab: all default
initial: u,v =0 (both), Po=1[atm]
Bondary Settings: wall, no slip (all them)
The time evolution that I tried was 100 seconds
I've already tried:
- Refining meshes
- Changes the solver
- Using a bondary condiction of heat flux instead Temperature (in general heat transfer, botton of box)
I always only find this message:
Error:
Failed to find consistent initial values.
Last time step is not converged.
Thanks for reading, sorry for the long text. :)
3 Replies Last Post Oct 5, 2010, 4:09 p.m. EDT