forked from lijiext/lammps
git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@9897 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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@ -51,7 +51,7 @@
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<P><B>Examples:</B>
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<P><B>Examples:</B>
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</P>
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</P>
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<PRE>fix 2 gas gcmc 10 1000 1000 2 29494 298.0 -0.5 0.01
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<PRE>fix 2 gas gcmc 10 1000 1000 2 29494 298.0 -0.5 0.01
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fix 3 Kr gcmc 10 100 100 1 3456543 3.0 -2.5 0.1 molecule yes maxrot 180
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fix 3 Kr gcmc 10 100 100 1 3456543 3.0 -2.5 0.1 molecule yes maxangle 180
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fix 4 my_gas gcmc 1 10 10 1 123456543 300.0 -12.5 1.0 region disk
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fix 4 my_gas gcmc 1 10 10 1 123456543 300.0 -12.5 1.0 region disk
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</PRE>
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</PRE>
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<P><B>Description:</B>
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<P><B>Description:</B>
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@ -35,7 +35,7 @@ keyword = {molecule}, {region}, {maxangle}, {pressure}, or {fugacity_coeff} :l
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[Examples:]
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[Examples:]
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fix 2 gas gcmc 10 1000 1000 2 29494 298.0 -0.5 0.01
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fix 2 gas gcmc 10 1000 1000 2 29494 298.0 -0.5 0.01
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fix 3 Kr gcmc 10 100 100 1 3456543 3.0 -2.5 0.1 molecule yes maxrot 180
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fix 3 Kr gcmc 10 100 100 1 3456543 3.0 -2.5 0.1 molecule yes maxangle 180
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fix 4 my_gas gcmc 1 10 10 1 123456543 300.0 -12.5 1.0 region disk :pre
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fix 4 my_gas gcmc 1 10 10 1 123456543 300.0 -12.5 1.0 region disk :pre
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[Description:]
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[Description:]
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@ -22,7 +22,7 @@
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<PRE> <I>one</I> args = none
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<PRE> <I>one</I> args = none
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<I>multi</I> args = none
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<I>multi</I> args = none
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<I>custom</I> args = list of attributes
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<I>custom</I> args = list of attributes
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possible attributes = step, elapsed, elaplong, dt, cpu, tpcpu, spcpu,
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possible attributes = step, elapsed, elaplong, dt, time, cpu, tpcpu, spcpu,
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atoms, temp, press, pe, ke, etotal, enthalpy,
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atoms, temp, press, pe, ke, etotal, enthalpy,
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evdwl, ecoul, epair, ebond, eangle, edihed, eimp,
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evdwl, ecoul, epair, ebond, eangle, edihed, eimp,
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emol, elong, etail,
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emol, elong, etail,
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@ -38,6 +38,7 @@
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elapsed = timesteps since start of this run
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elapsed = timesteps since start of this run
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elaplong = timesteps since start of initial run in a series of runs
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elaplong = timesteps since start of initial run in a series of runs
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dt = timestep size
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dt = timestep size
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time = simulation time
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cpu = elapsed CPU time in seconds
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cpu = elapsed CPU time in seconds
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tpcpu = time per CPU second
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tpcpu = time per CPU second
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spcpu = timesteps per CPU second
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spcpu = timesteps per CPU second
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@ -213,6 +214,15 @@ keywords for the <A HREF = "run.html">run</A> for info on how to invoke a series
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runs that keep track of an initial starting time. If these keywords
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runs that keep track of an initial starting time. If these keywords
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are not used, then <I>elapsed</I> and <I>elaplong</I> are the same value.
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are not used, then <I>elapsed</I> and <I>elaplong</I> are the same value.
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</P>
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</P>
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<P>The <I>dt</I> keyword is the current timestep size in time
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<A HREF = "units.html">units</A>. The <I>time</I> keyword is the current elapsed
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simulation time, also in time <A HREF = "units.html">units</A>, which is simply
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(step*dt) if the timestep size has not changed and the timestep has
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not been reset. If the timestep has changed (e.g. via <A HREF = "fix_dt_reset.html">fix
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dt/reset</A>) or the timestep has been reset (e.g. via
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the "reset_timestep" command), then the simulation time is effectively
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a cummulative value up to the current point.
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</P>
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<P>The <I>cpu</I> keyword is elapsed CPU seconds since the beginning of this
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<P>The <I>cpu</I> keyword is elapsed CPU seconds since the beginning of this
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run. The <I>tpcpu</I> and <I>spcpu</I> keywords are measures of how fast your
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run. The <I>tpcpu</I> and <I>spcpu</I> keywords are measures of how fast your
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simulation is currently running. The <I>tpcpu</I> keyword is simulation
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simulation is currently running. The <I>tpcpu</I> keyword is simulation
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{one} args = none
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{one} args = none
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{multi} args = none
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{multi} args = none
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{custom} args = list of attributes
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{custom} args = list of attributes
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possible attributes = step, elapsed, elaplong, dt, cpu, tpcpu, spcpu,
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possible attributes = step, elapsed, elaplong, dt, time, cpu, tpcpu, spcpu,
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atoms, temp, press, pe, ke, etotal, enthalpy,
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atoms, temp, press, pe, ke, etotal, enthalpy,
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evdwl, ecoul, epair, ebond, eangle, edihed, eimp,
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evdwl, ecoul, epair, ebond, eangle, edihed, eimp,
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emol, elong, etail,
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emol, elong, etail,
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elapsed = timesteps since start of this run
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elapsed = timesteps since start of this run
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elaplong = timesteps since start of initial run in a series of runs
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elaplong = timesteps since start of initial run in a series of runs
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dt = timestep size
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dt = timestep size
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time = simulation time
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cpu = elapsed CPU time in seconds
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cpu = elapsed CPU time in seconds
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tpcpu = time per CPU second
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tpcpu = time per CPU second
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spcpu = timesteps per CPU second
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spcpu = timesteps per CPU second
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@ -207,6 +208,15 @@ keywords for the "run"_run.html for info on how to invoke a series of
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runs that keep track of an initial starting time. If these keywords
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runs that keep track of an initial starting time. If these keywords
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are not used, then {elapsed} and {elaplong} are the same value.
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are not used, then {elapsed} and {elaplong} are the same value.
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The {dt} keyword is the current timestep size in time
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"units"_units.html. The {time} keyword is the current elapsed
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simulation time, also in time "units"_units.html, which is simply
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(step*dt) if the timestep size has not changed and the timestep has
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not been reset. If the timestep has changed (e.g. via "fix
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dt/reset"_fix_dt_reset.html) or the timestep has been reset (e.g. via
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the "reset_timestep" command), then the simulation time is effectively
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a cummulative value up to the current point.
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The {cpu} keyword is elapsed CPU seconds since the beginning of this
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The {cpu} keyword is elapsed CPU seconds since the beginning of this
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run. The {tpcpu} and {spcpu} keywords are measures of how fast your
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run. The {tpcpu} and {spcpu} keywords are measures of how fast your
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simulation is currently running. The {tpcpu} keyword is simulation
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simulation is currently running. The {tpcpu} keyword is simulation
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