<div dir="ltr">Hi Adam,<div><br></div><div>Thanks for the clarification. Can you please send me a sample .par file for the baseflow for the case of "dfh_cav". Also is it possible to get the equations solved for this problem(dfh_cav). I would like to know the way that this has been made dimensionless.</div><div><br></div><div>For your kind information I briefly describe my case which I have been used to solve with the regular non-linear framework using older versions (.rea files). My setup is as follows:</div><div>Geometry is a 3D cylindrical annullus.</div><div>Temperature are fixed at inner and outer cylinders.</div><div>Gravity is acting in -z direction</div><div>There is a back ground rotation which is constant.</div><div><br></div><div>Please let me know if any other info is required. Thanks for the help.</div><div><br></div><div>Swarandeep</div><div><br></div><div><br></div><div><br></div></div><div class="gmail_extra"><br><div class="gmail_quote">On Thu, Aug 17, 2017 at 1:48 PM, <span dir="ltr"><<a href="mailto:nek5000-users@lists.mcs.anl.gov" target="_blank">nek5000-users@lists.mcs.anl.gov</a>></span> wrote:<br><blockquote class="gmail_quote" style="margin:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex">
<div text="#000000" bgcolor="#FFFFFF">
<div class="m_-3388491434408227516moz-cite-prefix">Hi Swarandeep,<br>
<br>
Yes. You generate ###.rea in the standard way. In the old version
it was txt and contained both mesh information and runtime
parameter. One could split mesh information (###.re2, binary file)
and runtime parameters (###.rea with negative number of elements
or currently ###.par) using reatore2 tool. The map file is
generated with genmap (can be txt or binary). So the procedure is
more or less the same. If you have ###.rea with mesh you split it
and generate ###.re2. Next you generate ###.map with genmap and
finally ###.par by hand. Be careful to use tolls from the same
release, as they've been changed significantly (e.g. binary
###.map file).<br>
Regards<br>
Adam<div><div class="h5"><br>
<br>
On 16/08/17 18:52, <a class="m_-3388491434408227516moz-txt-link-abbreviated" href="mailto:nek5000-users@lists.mcs.anl.gov" target="_blank">nek5000-users@lists.mcs.anl.<wbr>gov</a> wrote:<br>
</div></div></div><div><div class="h5">
<blockquote type="cite">
<div dir="ltr">Hi Adam,
<div><br>
</div>
<div> Thank you very much for the help. </div>
<div><br>
</div>
<div> Does the ###.map, ###.box file and from them the
###.rea file (in the <span style="font-size:12.8px">dfh_cav
case:</span> the ###.re2 files) are created as done for the
earlier versions i.e., by using genbox and genmap. Please
clarify.</div>
<div><br>
</div>
<div>Swarandeep <br>
</div>
<div><br>
</div>
<div><br>
</div>
</div>
<div class="gmail_extra"><br>
<div class="gmail_quote">On Wed, Aug 16, 2017 at 5:35 PM, <span dir="ltr"><<a href="mailto:nek5000-users@lists.mcs.anl.gov" target="_blank">nek5000-users@lists.mcs.anl.<wbr>gov</a>></span>
wrote:<br>
<blockquote class="gmail_quote" style="margin:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex">Hi,<br>
<br>
The simplest way would be to look into existing example
under<br>
Nek5000/short_test/dfh_cav/<br>
It is a differentially heated cavity case and covers both
direct and adjoint linear solver. It is compatible with the
current git version and uses ###.par file instead of
###.rea.<br>
Regards<br>
Adam
<div class="m_-3388491434408227516HOEnZb">
<div class="m_-3388491434408227516h5"><br>
<br>
<br>
<br>
<br>
On 11/08/17 11:05, <a href="mailto:nek5000-users@lists.mcs.anl.gov" target="_blank">nek5000-users@lists.mcs.anl.go<wbr>v</a>
wrote:<br>
<blockquote class="gmail_quote" style="margin:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex">
This information might be outdated (old version) but
previously the base flow was read in using the restart
option in the rea file. The disturbance you can read
in yourself in userchk.<br>
<br>
Philipp<br>
<br>
On 2017-08-11 10:49, <a href="mailto:nek5000-users@lists.mcs.anl.gov" target="_blank">nek5000-users@lists.mcs.anl.go<wbr>v</a>
wrote:<br>
<blockquote class="gmail_quote" style="margin:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex">
Hi Philipp,<br>
<br>
That was very much helpful. I have a steady
base flow and<br>
temperature state. Please let me know where to
provide the base flow.<br>
<br>
<br>
Thank you<br>
Swarandeep<br>
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