DAMASK_EICMD/lib/damask/DS_HDF5.xml

174 lines
4.2 KiB
XML

<?xml version="1.0"?>
<h5ds>
<history>
<type>attr</type>
<h5path>/</h5path>
<category></category>
<description>store cmd history</description>
</history>
<inc>
<type>attr</type>
<h5path>/</h5path>
<category></category>
<description></description>
<log></log>
</inc>
<ip>
<type>scalar</type>
<h5path>/ip</h5path>
<category></category>
<description></description>
<log></log>
</ip>
<node>
<type>scalar</type>
<h5path>/node</h5path>
<category></category>
<description></description>
<log></log>
</node>
<pos>
<type>vector</type>
<log></log>
</pos>
<elem>
<type>integer</type>
<h5path>/elem</h5path>
<category></category>
<description></description>
<log></log>
</elem>
<phase>
<type>integer</type>
<h5path>/phase</h5path>
<category>Crystallite</category>
<description></description>
<log></log>
</phase>
<texture>
<type>integer</type>
<h5path>/texture</h5path>
<category>Crystallite</category>
<description></description>
<log></log>
</texture>
<volume>
<type>scalar</type>
<h5path>/volume</h5path>
<category>Crystallite</category>
<description></description>
<log></log>
</volume>
<orientation>
<type>vector</type>
<h5path>/orientation</h5path>
<category>Crystallite</category>
<description></description>
<log></log>
</orientation>
<eulerangles>
<type>vector</type>
<h5path>/eulerangles</h5path>
<category>Crystallite</category>
<description>Bunnge Euler angles in degrees</description>
<log></log>
</eulerangles>
<grainrotation>
<type>vector</type>
<h5path>/grainrotation</h5path>
<category>Crystallite</category>
<description></description>
<log></log>
</grainrotation>
<f>
<type>tensor</type>
<h5path>/f</h5path>
<category>Crystallite</category>
<description>deformation gradient (F)</description>
<log></log>
</f>
<p>
<type>tensor</type>
<h5path>/p</h5path>
<category>Crystallite</category>
<description>Pikola Kirkhoff stress</description>
<log></log>
</p>
<resistance_slip>
<type>vector</type>
<h5path>/resistance_slip</h5path>
<category>Constitutive</category>
<description></description>
</resistance_slip>
<shearrate_slip>
<type>vector</type>
<h5path>/shearrate_slip</h5path>
<category>Constitutive</category>
<description></description>
</shearrate_slip>
<resolvedstress_slip>
<type>vector</type>
<h5path>/resolvedstress_slip</h5path>
<category>Constitutive</category>
<description></description>
</resolvedstress_slip>
<totalshear>
<type>scalar</type>
<h5path>/totalshear</h5path>
<category>Constitutive</category>
<description></description>
</totalshear>
<accumulatedshear_slip>
<type>vector</type>
<h5path>/accumulatedshear_slip</h5path>
<category>Constitutive</category>
<description>vector contains accumulated shear per slip system</description>
</accumulatedshear_slip>
<Cauchy>
<type>tensor</type>
<h5path>/Cauchy</h5path>
<category>Derived</category>
<description>Cauchy stress tensor</description>
</Cauchy>
<lnV>
<type>tensor</type>
<h5path>/lnV</h5path>
<category>Derived</category>
<description></description>
</lnV>
<MisesCauchy>
<type>scalar</type>
<h5path>/MisesCauchy</h5path>
<category>Derived</category>
<description>von Mises equivalent of Cauchy stress</description>
</MisesCauchy>
<MiseslnV>
<type>scalar</type>
<h5path>/MiseslnV</h5path>
<category>Derived</category>
<description>left von Mises strain</description>
</MiseslnV>
</h5ds>