CFD Online Logo CFD Online URL
www.cfd-online.com
[Sponsors]
Home > Forums > Software User Forums > ANSYS > FLUENT

On Setring Step Size in unsteady Solver of FLUENT

Register Blogs Community New Posts Updated Threads Search

Reply
 
LinkBack Thread Tools Search this Thread Display Modes
Old   August 19, 2009, 22:44
Post On Setring Step Size in unsteady Solver of FLUENT
  #1
Member
 
Join Date: Jun 2009
Posts: 34
Rep Power: 16
lzgwhy is on a distinguished road
Recently, I calculate a flow over one cylinder and along its axis by using unsteady solver in FLUENT. However, it is noted that this flow may be steady flow. The pressure, velocity (vector) of one point were minitored in calculation. It was found that the pressure of this point oscillated greatly and quickly for small step size around a contant, and less greatly and quickly for larger step size. However, velocity (vector) of this piont seems constant. The step size was determined by CFL condition. So I have the following questions:
(1) The smaller step size, the more accuracy?
(2) Odinary unsteady solver is not suitable for steady flow in FLUENT, though they are essentially the same iterative method?
(3) Is it more easy to culculate a accurate velocity field than pressure field?
lzgwhy is offline   Reply With Quote

Reply


Posting Rules
You may not post new threads
You may not post replies
You may not post attachments
You may not edit your posts

BB code is On
Smilies are On
[IMG] code is On
HTML code is Off
Trackbacks are Off
Pingbacks are On
Refbacks are On


Similar Threads
Thread Thread Starter Forum Replies Last Post
Superlinear speedup in OpenFOAM 13 msrinath80 OpenFOAM Running, Solving & CFD 18 March 3, 2015 05:36
Unsteady Flow-Time Step Size Maple FLUENT 1 March 10, 2009 08:52
Fluent File Size John S. FLUENT 2 February 3, 2009 10:20
Time accuracy of NITA - FRACTIONAL STEP in Fluent Paolo Lampitella Main CFD Forum 0 March 19, 2008 07:20
time step in unsteady combustion process FRANK LEE FLUENT 2 July 25, 2007 04:51


All times are GMT -4. The time now is 01:32.