2016-05-10 01:33:12 +08:00
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< li class = "toctree-l1" > < a class = "reference internal" href = "Section_intro.html" > 1. Introduction< / a > < / li >
< li class = "toctree-l1" > < a class = "reference internal" href = "Section_start.html" > 2. Getting Started< / a > < / li >
< li class = "toctree-l1" > < a class = "reference internal" href = "Section_commands.html" > 3. Commands< / a > < / li >
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< li class = "toctree-l1" > < a class = "reference internal" href = "Section_accelerate.html" > 5. Accelerating LAMMPS performance< / a > < / li >
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< li class = "toctree-l1" > < a class = "reference internal" href = "Section_modify.html" > 10. Modifying & extending LAMMPS< / a > < / li >
< li class = "toctree-l1" > < a class = "reference internal" href = "Section_python.html" > 11. Python interface to LAMMPS< / a > < / li >
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< li > compute smd/hourglass/error command< / li >
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< a href = "http://lammps.sandia.gov" > Website< / a >
< a href = "Section_commands.html#comm" > Commands< / a >
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< div class = "section" id = "compute-smd-hourglass-error-command" >
< span id = "index-0" > < / span > < h1 > compute smd/hourglass/error command< / h1 >
< div class = "section" id = "syntax" >
< h2 > Syntax< / h2 >
< div class = "highlight-default" > < div class = "highlight" > < pre > < span > < / span > < span class = "n" > compute< / span > < span class = "n" > ID< / span > < span class = "n" > group< / span > < span class = "o" > -< / span > < span class = "n" > ID< / span > < span class = "n" > smd< / span > < span class = "o" > /< / span > < span class = "n" > hourglass< / span > < span class = "o" > /< / span > < span class = "n" > error< / span >
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< li > ID, group-ID are documented in < a class = "reference internal" href = "compute.html" > < span class = "doc" > compute< / span > < / a > command< / li >
< li > smd/hourglass/error = style name of this compute command< / li >
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< div class = "section" id = "examples" >
< h2 > Examples< / h2 >
< div class = "highlight-default" > < div class = "highlight" > < pre > < span > < / span > < span class = "n" > compute< / span > < span class = "mi" > 1< / span > < span class = "nb" > all< / span > < span class = "n" > smd< / span > < span class = "o" > /< / span > < span class = "n" > hourglass< / span > < span class = "o" > /< / span > < span class = "n" > error< / span >
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< h2 > Description< / h2 >
< p > Define a computation which outputs the error of the approximated
relative separation with respect to the actual relative separation of
the particles i and j. Ideally, if the deformation gradient is exact,
and there exists a unique mapping between all particles’ positions
within the neighborhood of the central node and the deformation
gradient, the approximated relative separation will coincide with the
actual relative separation of the particles i and j in the deformed
configuration. This compute is only really useful for debugging the
hourglass control mechanim which is part of the Total-Lagrangian SPH
pair style.< / p >
< p > See < a class = "reference external" href = "USER/smd/SMD_LAMMPS_userguide.pdf" > this PDF guide< / a > to use Smooth
Mach Dynamics in LAMMPS.< / p >
< p > < strong > Output Info:< / strong > < / p >
< p > This compute calculates a per-particle vector, which can be accessed by
any command that uses per-particle values from a compute as input. See
< a class = "reference internal" href = "Section_howto.html#howto-15" > < span class = "std std-ref" > How-to discussions, section 6.15< / span > < / a >
for an overview of LAMMPS output options.< / p >
< p > The per-particle vector values will are dimensionless. See
2016-05-10 04:13:19 +08:00
< span class = "xref doc" > units< / span > .< / p >
2016-05-10 01:33:12 +08:00
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< div class = "section" id = "restrictions" >
< h2 > Restrictions< / h2 >
< p > This compute is part of the USER-SMD package. It is only enabled if
LAMMPS was built with that package. See the < a class = "reference internal" href = "Section_start.html#start-3" > < span class = "std std-ref" > Making LAMMPS< / span > < / a > section for more info.< / p >
< p > This quantity will be computed only for particles which interact with
tlsph pair style.< / p >
< p > < strong > Related Commands:< / strong > < / p >
< p > < a class = "reference internal" href = "compute_smd_tlsph_defgrad.html" > < span class = "doc" > smd/tlsph_defgrad< / span > < / a > < / p >
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< h2 > Default< / h2 >
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