Delete fix_wall_cl.txt
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"LAMMPS WWW Site"_lws - "LAMMPS Documentation"_ld - "LAMMPS Commands"_lc :c
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:link(lws,http://lammps.sandia.gov) link(ld,Manual.html)
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:link(lc,Section_commands.html#comm)
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:line
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fix wall/cl command :h3
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[Syntax:]
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fix ID group-ID wall/cl face pos temp velx vely velz keyword value ... :pre
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ID, group-ID are documented in "fix"_fix.html command :ulb,l
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wall/cl = style name of this fix command :l
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one or more face/arg pairs may be appended :l
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face = {xlo} or {xhi} or {ylo} or {yhi} or {zlo} or {zhi} :l
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{xlo},{ylo},{zlo} pos = EDGE or constant or variable
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EDGE = current lo edge of simulation box
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constant = number like 0.0 or -30.0 (distance units)
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variable = "equal-style variable"_variable.html like v_x or v_wiggle
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temp = wall temperature
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velx, vely, velz = wall velocity along x, y, z directions
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accomx, accomy, accomz = accommodation coefficients along x, y, z directions
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{xhi},{yhi},{zhi} pos = EDGE or constant or variable
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EDGE = current hi edge of simulation box
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constant = number like 50.0 or 100.3 (distance units)
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variable = "equal-style variable"_variable.html like v_x or v_wiggle
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temp = wall temperature
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velx, vely, velz = wall velocity along x, y, z directions
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accomx, accomy, accomz = accommodation coefficients along x, y, z directions
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:pre
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zero or more keyword/value pairs may be appended :l
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keyword = {units} :l
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{units} value = {lattice} or {box}
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{lattice} = the wall position is defined in lattice units
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{box} = the wall position is defined in simulation box units :pre
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:ule
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[Examples:]
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fix ywalls all wall/cl xlo EDGE 300 0.1 0.1 0 0.8 0.8 0.9 xhi EDGE 200 0.1 0.1 0
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0.8 0.8 0.9
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fix ywalls all wall/cl xlo 300 0.1 0.1 0 ylo 300 0.1 0.1 0 0.9 0.8 0.7 units box
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:pre
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[Description:]
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Cercignani-Lampis (CL) "CL"_#CL propose a stochastic wall model which can model
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the gas-wall collision realistically. Instead of mixing wall/reflect and
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wall/diffusive as in Maxwell model (fix wall/maxwell), the CL model used shifted
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MB distribution for the tangential velocity and exponential bessel for the
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normal velocity. Two accommodation coefficients are used: one for the tangential
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velocity (isotropic) and one for the normal kinetic energy. In this fix, a
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generalized version "To"_#To which can account for the anisotropy of the wall
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surface is implemented, there are three coefficients: two for the tangential
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velocity (two components) and one for the kinetic energy. The code will
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recognize automatically the normal direction of the wall and the other two
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tangential directions. For example, if accomx = 0.5, accomy = 0.2, accomz = 0.3
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and the wall is normal to direction y, accomx and accomz are the tangential
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velocity accommodation coefficients and accomy is the normal kinetic energy
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accommodation coefficients.
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The {units} keyword determines the distance units used to define a wall position
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A {box} value selects standard distance units as defined by the
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"units"_units.html command, e.g. Angstroms for units = real or metal.
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A {lattice} value means the distance units are in lattice spacings. The
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"lattice"_lattice.html command must have been previously used to define the
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lattice spacings.
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:line
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[Restrictions:]
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Due to its properties, this fix has has the same limitation as the the
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wall/reflect. Any dimension (xyz) that has a wall must be non-periodic. It
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shoudld not be used with rigid bodies such as those defined by a "fix rigid"
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command.
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[Related commands:]
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"fix wall/reflect"_fix_wall_reflect.html, "fix
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"wall/maxwell"_fix_wall_maxwell.html, "fix
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"wall/diffusive"_fix_wall_diffusive.html
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[Default:] none
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:line
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:link(CL)
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[(CL)] Cercignani and M. Lampis, "Kinetic models for gas-surface
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interactions" Transp. Theory Stat. Phys. 1, 2, 101 (1971).
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:link(To)
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[(To)] Q.D.
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To, V.H. Vu, G. Lauriat, and C. Leonard, "Boundary conditions for gas flow
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problems from anisotropic scattering kernels" J. Math. Phys. 56, 103101 (2015).
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