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chi3612

铜虫 (小有名气)

[求助] 用polyflow做模拟挤出,出现错误?

用polyflow做模拟挤出,材料选材料库中的材料,进行广义牛顿非等温流体分析,出现错误?


1.Update failed for the Solution component in Fluid Flow - Extrusion (Polyflow).  The Polyflow Solver for system Fluid Flow - Extrusion (Polyflow) exited with an error. No results file is available.Detailed information can be found in the listing file for the run, which can be viewed by selecting [Listing Viewer] from the Solution component.



2.(DP 0) Summary of the simulation:

        The computation failed.


     *  Expert tool diagnostics  *

     The problem Preprocessors   has not converged.


     *  Expert tool suggestions  *

     There is a non-linearity in problem Navier-Stokes 3D introduced by
     the power law index (n) of the viscosity law.  The value of the power
     law index is 2.2722e-007.
     The expert system suggests to use a Picard iterative scheme with a
     number of iterations about 30 or 40.

     There is a non-linearity in problem Inflow introduced by the power
     law index (n) of the viscosity law.  The value of the power law index
     is 2.2722e-007.
     The expert system suggests to use a Picard iterative scheme with a
     number of iterations about 30 or 40.

     There is a non-linearity in problem Navier-Stokes 3D introduced by
     the power law index (n) of the viscosity law.  The value of the power
     law index is 2.2722e-007.
     The expert system suggests to use an evolution for this parameter
     coupling with Newton-Raphson iterative scheme.  The evolution scheme
     must be the following :
        -   f(s) = 1/s
        -   S-ini = n = 2.272e-007
        -   S-final = 1.0
        -   Initial increment = 2.8402e-007 = n/0.8.

     There is a non-linearity in problem Inflow introduced by the power
     law index (n) of the viscosity law.  The value of the power law index
     is 2.2722e-007.
     The expert system suggests to use an evolution for this parameter
     coupling with Newton-Raphson iterative scheme.  The evolution scheme
     must be the following :
        -   f(s) = 1/s
        -   S-ini = n = 2.272e-007
        -   S-final = 1.0
        -   Initial increment = 2.8402e-007 = n/0.8.

     If you can not define the evolution with those typical values of the
     evolution parameters, maybe your problem is not well defined.  Please
     check the setup of your simulations.
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楼主请问问题解决了吗,我也碰到了相同的问题
2楼2022-05-01 20:43:15
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