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11-11-2018 07:51 PM - edited 11-11-2018 07:53 PM

How do we go about setting up 601,153 and 601,159? I recall being told we have the Adv. Nonlinear bundle but can't find those two from the list of available Nastran solutions I have here. All I can see are 601,106 and 601,129.

Below is an extract from the guide: unfortunately there isn't much on the TMC subject, hence why I ask here. Any pointers would be appreciated. Thanks.

Charles

*"Solution 601 of Advanced Nonlinear Solution also supports two heat transfer or coupled structural heat transfer analysis types. The first type 153 is for static structural with steady state heat transfer, or just steady state heat transfer. The second analysis type 159 is for cases when either the structural or heat transfer models are transient (dynamic). This type can also be used for just transient heat transfer analysis. Details of the heat transfer analysis are provided in Chapter 8, and details of the thermo-mechanical coupled (TMC) analysis are provided in Chapter 9.*

*Similarly, most of the global settings controlling the heat transfer or coupled solutions in Advanced Nonlinear Solution are provided in the TMCPARA bulk data entry."*

Solved! Go to Solution.

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11-12-2018 08:34 AM

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11-12-2018 09:49 AM - edited 11-12-2018 09:50 AM

Thanks for the clarification Jim

May I ask how to set this up correctly, I wouldn't know where/how to begin with this card customization. Whether that is to be imputed in the User Defined Text inside the solution's bulk exec control, the *.dat file directly or the contact's parameters. Apologies for the confusion.

We are trying to source thermal data caused from friction between two flat solids sliding (BCTSET & SPCD). If you could provide a simple example of this we'd be very grateful.

Thanks for the support, appreciate it.

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11-13-2018 12:40 PM

There are example decks delivered in the Test Problem Library (TPL)

See: Using the Test Problem Libraries

Searching for files containing ^TMC, I see the following:

anl153hxbcs.dat:TMCPARA 1 COUP 2 anl153hxecs.dat:TMCPARA 1 COUP 2 anl153hxmcs.dat:TMCPARA 1 COUP 2 anl153pnbcs.dat:TMCPARA 1 COUP 2 anl153pnecs.dat:TMCPARA 1 COUP 2 anl153pnmcs.dat:TMCPARA 1 COUP 2 anl153prbcs.dat:TMCPARA 1 COUP 2 anl153precs.dat:TMCPARA 1 COUP 2 anl153prmcs.dat:TMCPARA 1 COUP 2 anl153ttbcs.dat:TMCPARA 1 COUP 2 anl153ttecs.dat:TMCPARA 1 COUP 2 anl153ttmcs.dat:TMCPARA 1 COUP 2 anlbedg1c.dat:TMCPARA 1 COUP 0 TRANOPT 1 anlbedg1e.dat:TMCPARA 1 COUP 0 TRANOPT 1 anlmat5.dat:TMCPARA 1COUP 0 HGENPL 1.000 anlmathem03.dat:TMCPARA* 1COUP 0 * anlmathem04.dat:TMCPARA* 1COUP 0 * anlmathev04.dat:TMCPARA* 1COUP 0 * anlmathev05.dat:TMCPARA* 1COUP 0 * anlplstn06.dat:TMCPARA 1 COUP 1 TRANOPT 1 anlplstn20.dat:TMCPARA 1 COUP 1 anlplsts07.dat:TMCPARA 1 COUP 0 TRANOPT 1 anlplsts08.dat:TMCPARA 1COUP 0TRANOPT 1ATSSUBD 32 + anlplsts20.dat:TMCPARA 1 COUP 1 anltmc01.dat:TMCPARA 1 COUP 1 anltmc02.dat:TMCPARA 1 COUP 2 ITSCHEM 0 anltmc03.dat:TMCPARA 1COUP 2ITSCHEM 0MAXITE 29 + anltmc04.dat:TMCPARA 1COUP 0ITSCHEM 1MAXITE 29 + anltmc05.dat:TMCPARA 1 COUP 1 TRANOPT 0 anltmc06.dat:TMCPARA 1 COUP 2 TRANOPT 1 anltmc07.dat:TMCPARA 1 COUP 2 TRANOPT 2 anltmc08.dat:TMCPARA 1COUP 0TRANOPT 1TTOL .1000E-5 + anltmc09.dat:TMCPARA 1 COUP 0 TRANOPT 1 TTOL .1000E-5 anltmc10.dat:TMCPARA 1 COUP 0 TRANOPT 1 anltmc11.dat:TMCPARA 1COUP 0ITSCHEM 1MAXITE 25 anltmc12.dat:TMCPARA 1 COUP 2 TRANOPT 1 HEATCAP 1 anltmc13.dat:TMCPARA 1 COUP 2 TRANOPT 1 HEATCAP 1

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11-13-2018 10:48 PM - edited 11-14-2018 06:24 AM

Thanks Jim, I appreciate the heads up and quick response. Work flow is not ideal but working fine from CLI, we can then map the data back to a static solution in our case. Side note; this should really be part of the main SC3D package, perhaps in an upcomming version!

Thanks for the kind help

Charles

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