git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@1856 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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@ -120,20 +120,25 @@ coords for atoms that appear in the file; the default of -0.5 0.5 is
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valid if all z coords are 0.0. For 2d triclinic simulations, the xz
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and yz tilt factors must be 0.0.
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</P>
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<P>If the system is non-periodic (in a dimension), then all atoms in the
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data file should have coordinates (in that dimension) between the lo
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and hi values. Furthermore, if running in parallel, the lo/hi values
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should be just a bit smaller/larger than the min/max extent of atoms.
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For example, if your atoms extend from 0 to 50, you should not specify
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the box bounds as -10000 and 10000. Since LAMMPS uses the specified
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box size to layout the 3d grid of processors, this will be sub-optimal
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and may cause a parallel simulation to lose atoms when LAMMPS
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shrink-wraps the box to the atoms.
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</P>
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<P>If the system is periodic (in a dimension), then atom coordinates can
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be outside the bounds; they will be remapped (in a periodic sense)
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back inside the box.
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</P>
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<P>IMPORTANT NOTE: If the system is non-periodic (in a dimension), then
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all atoms in the data file must have coordinates (in that dimension)
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that are greater than the lo value and less than the hi value.
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Actually "greater than or equal to" is OK for the lo value, but they
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must be "less than", not "less than or equal to" for the hi value.
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Thus the lo/hi values you specify should be just a bit smaller/larger
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than the min/max extent of atoms. However you do not want to make
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these values much smaller/larger than the extent of the atoms. For
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example, if your atoms extend from 0 to 50, you should not specify the
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box bounds as -10000 and 10000. This is because LAMMPS uses the
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specified box size to layout the 3d grid of processors. A huge
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(mostly empty) box will be sub-optimal for performance and may cause a
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parallel simulation to lose atoms if LAMMPS shrink-wraps the box
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around the atoms.
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</P>
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<HR>
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<P>These are the section keywords for the body of the file.
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@ -115,20 +115,25 @@ coords for atoms that appear in the file; the default of -0.5 0.5 is
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valid if all z coords are 0.0. For 2d triclinic simulations, the xz
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and yz tilt factors must be 0.0.
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If the system is non-periodic (in a dimension), then all atoms in the
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data file should have coordinates (in that dimension) between the lo
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and hi values. Furthermore, if running in parallel, the lo/hi values
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should be just a bit smaller/larger than the min/max extent of atoms.
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For example, if your atoms extend from 0 to 50, you should not specify
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the box bounds as -10000 and 10000. Since LAMMPS uses the specified
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box size to layout the 3d grid of processors, this will be sub-optimal
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and may cause a parallel simulation to lose atoms when LAMMPS
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shrink-wraps the box to the atoms.
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If the system is periodic (in a dimension), then atom coordinates can
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be outside the bounds; they will be remapped (in a periodic sense)
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back inside the box.
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IMPORTANT NOTE: If the system is non-periodic (in a dimension), then
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all atoms in the data file must have coordinates (in that dimension)
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that are greater than the lo value and less than the hi value.
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Actually "greater than or equal to" is OK for the lo value, but they
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must be "less than", not "less than or equal to" for the hi value.
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Thus the lo/hi values you specify should be just a bit smaller/larger
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than the min/max extent of atoms. However you do not want to make
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these values much smaller/larger than the extent of the atoms. For
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example, if your atoms extend from 0 to 50, you should not specify the
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box bounds as -10000 and 10000. This is because LAMMPS uses the
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specified box size to layout the 3d grid of processors. A huge
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(mostly empty) box will be sub-optimal for performance and may cause a
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parallel simulation to lose atoms if LAMMPS shrink-wraps the box
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around the atoms.
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:line
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These are the section keywords for the body of the file.
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