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Comparing trunk/OOPSE/libmdtools/calc_sticky_pair.F90 (file contents):
Revision 611 by gezelter, Tue Jul 15 17:10:50 2003 UTC vs.
Revision 730 by gezelter, Wed Aug 27 16:25:11 2003 UTC

# Line 9 | Line 9
9   !! @author Matthew Meineke
10   !! @author Christopher Fennel
11   !! @author J. Daniel Gezelter
12 < !! @version $Id: calc_sticky_pair.F90,v 1.10 2003-07-15 17:10:50 gezelter Exp $, $Date: 2003-07-15 17:10:50 $, $Name: not supported by cvs2svn $, $Revision: 1.10 $
12 > !! @version $Id: calc_sticky_pair.F90,v 1.14 2003-08-27 16:25:11 gezelter Exp $, $Date: 2003-08-27 16:25:11 $, $Name: not supported by cvs2svn $, $Revision: 1.14 $
13  
14   module sticky_pair
15  
# Line 27 | Line 27 | module sticky_pair
27    logical, save :: sticky_initialized = .false.
28    real( kind = dp ), save :: SSD_w0 = 0.0_dp
29    real( kind = dp ), save :: SSD_v0 = 0.0_dp
30 +  real( kind = dp ), save :: SSD_v0p = 0.0_dp
31    real( kind = dp ), save :: SSD_rl = 0.0_dp
32    real( kind = dp ), save :: SSD_ru = 0.0_dp
33 +  real( kind = dp ), save :: SSD_rlp = 0.0_dp
34    real( kind = dp ), save :: SSD_rup = 0.0_dp
35 +  real( kind = dp ), save :: SSD_rbig = 0.0_dp
36  
37    public :: check_sticky_FF
38    public :: set_sticky_params
# Line 44 | Line 47 | contains
47      return
48    end subroutine check_sticky_FF
49  
50 <  subroutine set_sticky_params(sticky_w0, sticky_v0)
51 <    real( kind = dp ), intent(in) :: sticky_w0, sticky_v0
50 >  subroutine set_sticky_params(sticky_w0, sticky_v0, sticky_v0p, &
51 >       sticky_rl, sticky_ru, sticky_rlp, sticky_rup)
52 >
53 >    real( kind = dp ), intent(in) :: sticky_w0, sticky_v0, sticky_v0p
54 >    real( kind = dp ), intent(in) :: sticky_rl, sticky_ru
55 >    real( kind = dp ), intent(in) :: sticky_rlp, sticky_rup
56      
57      ! we could pass all 5 parameters if we felt like it...
58      
59      SSD_w0 = sticky_w0
60      SSD_v0 = sticky_v0
61 <    SSD_rl = 2.75_DP
62 <    SSD_ru = 3.35_DP
63 <    SSD_rup = 4.0_DP
61 >    SSD_v0p = sticky_v0p
62 >    SSD_rl = sticky_rl
63 >    SSD_ru = sticky_ru
64 >    SSD_rlp = sticky_rlp
65 >    SSD_rup = sticky_rup
66 >
67 >    if (SSD_ru .gt. SSD_rup) then
68 >       SSD_rbig = SSD_ru
69 >    else
70 >       SSD_rbig = SSD_rup
71 >    endif
72    
73      sticky_initialized = .true.
74      return
# Line 96 | Line 111 | contains
111      real (kind=dp) :: rijtest, rjitest
112      real (kind=dp) :: radcomxi, radcomyi, radcomzi
113      real (kind=dp) :: radcomxj, radcomyj, radcomzj
114 +    integer :: id1, id2
115  
100
116      if (.not.sticky_initialized) then
117         write(*,*) 'Sticky forces not initialized!'
118         return
119      endif
120  
121 <    if ( rij .LE. SSD_rup ) then
121 >    if ( rij .LE. SSD_rbig ) then
122  
123         r3 = r2*rij
124         r5 = r3*r2
# Line 166 | Line 181 | contains
181  
182         if (do_pot) then
183   #ifdef IS_MPI
184 <          pot_row(atom1) = pot_row(atom1) + 0.25d0*SSD_v0*(s*w + sp*wp)
185 <          pot_col(atom2) = pot_col(atom2) + 0.25d0*SSD_v0*(s*w + sp*wp)
184 >          pot_row(atom1) = pot_row(atom1) + 0.25d0*(SSD_v0*s*w + SSD_v0p*sp*wp)
185 >          pot_col(atom2) = pot_col(atom2) + 0.25d0*(SSD_v0*s*w + SSD_v0p*sp*wp)
186   #else
187 <          pot = pot + 0.5d0*SSD_v0*(s*w + sp*wp)
187 >          pot = pot + 0.5d0*(SSD_v0*s*w + SSD_v0p*sp*wp)
188   #endif  
189         endif
190  
# Line 211 | Line 226 | contains
226         ! do the torques first since they are easy:
227         ! remember that these are still in the body fixed axes
228  
229 <       txi = 0.5d0*SSD_v0*(s*dwidux + sp*dwipdux)
230 <       tyi = 0.5d0*SSD_v0*(s*dwiduy + sp*dwipduy)
231 <       tzi = 0.5d0*SSD_v0*(s*dwiduz + sp*dwipduz)
229 >       txi = 0.5d0*(SSD_v0*s*dwidux + SSD_v0p*sp*dwipdux)
230 >       tyi = 0.5d0*(SSD_v0*s*dwiduy + SSD_v0p*sp*dwipduy)
231 >       tzi = 0.5d0*(SSD_v0*s*dwiduz + SSD_v0p*sp*dwipduz)
232  
233 <       txj = 0.5d0*SSD_v0*(s*dwjdux + sp*dwjpdux)
234 <       tyj = 0.5d0*SSD_v0*(s*dwjduy + sp*dwjpduy)
235 <       tzj = 0.5d0*SSD_v0*(s*dwjduz + sp*dwjpduz)
233 >       txj = 0.5d0*(SSD_v0*s*dwjdux + SSD_v0p*sp*dwjpdux)
234 >       tyj = 0.5d0*(SSD_v0*s*dwjduy + SSD_v0p*sp*dwjpduy)
235 >       tzj = 0.5d0*(SSD_v0*s*dwjduz + SSD_v0p*sp*dwjpduz)
236  
237         ! go back to lab frame using transpose of rotation matrix:
238  
# Line 248 | Line 263 | contains
263  
264         ! first rotate the i terms back into the lab frame:
265  
266 <       radcomxi = s*dwidx+sp*dwipdx
267 <       radcomyi = s*dwidy+sp*dwipdy
268 <       radcomzi = s*dwidz+sp*dwipdz
266 >       radcomxi = SSD_v0*s*dwidx+SSD_v0p*sp*dwipdx
267 >       radcomyi = SSD_v0*s*dwidy+SSD_v0p*sp*dwipdy
268 >       radcomzi = SSD_v0*s*dwidz+SSD_v0p*sp*dwipdz
269  
270 <       radcomxj = s*dwjdx+sp*dwjpdx
271 <       radcomyj = s*dwjdy+sp*dwjpdy
272 <       radcomzj = s*dwjdz+sp*dwjpdz
270 >       radcomxj = SSD_v0*s*dwjdx+SSD_v0p*sp*dwjpdx
271 >       radcomyj = SSD_v0*s*dwjdy+SSD_v0p*sp*dwjpdy
272 >       radcomzj = SSD_v0*s*dwjdz+SSD_v0p*sp*dwjpdz
273  
274   #ifdef IS_MPI    
275         fxii = a_Row(1,atom1)*(radcomxi) + &
# Line 308 | Line 323 | contains
323  
324         ! now assemble these with the radial-only terms:
325  
326 <       fxradial = 0.5d0*SSD_v0*(dsdr*drdx*w + dspdr*drdx*wp + fxii + fxji)
327 <       fyradial = 0.5d0*SSD_v0*(dsdr*drdy*w + dspdr*drdy*wp + fyii + fyji)
328 <       fzradial = 0.5d0*SSD_v0*(dsdr*drdz*w + dspdr*drdz*wp + fzii + fzji)
326 >       fxradial = 0.5d0*(SSD_v0*dsdr*drdx*w + SSD_v0p*dspdr*drdx*wp + fxii + fxji)
327 >       fyradial = 0.5d0*(SSD_v0*dsdr*drdy*w + SSD_v0p*dspdr*drdy*wp + fyii + fyji)
328 >       fzradial = 0.5d0*(SSD_v0*dsdr*drdz*w + SSD_v0p*dspdr*drdz*wp + fzii + fzji)
329  
330   #ifdef IS_MPI
331         f_Row(1,atom1) = f_Row(1,atom1) + fxradial
# Line 331 | Line 346 | contains
346   #endif
347  
348         if (do_stress) then          
334          if (molMembershipList(atom1) .ne. molMembershipList(atom2)) then
349  
350 + #ifdef IS_MPI
351 +          id1 = tagRow(atom1)
352 +          id2 = tagColumn(atom2)
353 + #else
354 +          id1 = atom1
355 +          id2 = atom2
356 + #endif
357 +
358 +          if (molMembershipList(id1) .ne. molMembershipList(id2)) then
359 +
360               ! because the d vector is the rj - ri vector, and
361               ! because fxradial, fyradial, and fzradial are the
362               ! (positive) force on atom i (negative on atom j) we need
# Line 357 | Line 381 | contains
381  
382    !! calculates the switching functions and their derivatives for a given
383    subroutine calc_sw_fnc(r, s, sp, dsdr, dspdr)
384 <          
384 >    
385      real (kind=dp), intent(in) :: r
386      real (kind=dp), intent(inout) :: s, sp, dsdr, dspdr
387 <
387 >    
388      ! distances must be in angstroms
389      
390      if (r.lt.SSD_rl) then
391         s = 1.0d0
368       sp = 1.0d0
392         dsdr = 0.0d0
393 +    elseif (r.gt.SSD_ru) then
394 +       s = 0.0d0
395 +       dsdr = 0.0d0
396 +    else
397 +       s = ((SSD_ru + 2.0d0*r - 3.0d0*SSD_rl) * (SSD_ru-r)**2) / &
398 +            ((SSD_ru - SSD_rl)**3)
399 +       dsdr = 6.0d0*(r-SSD_ru)*(r-SSD_rl)/((SSD_ru - SSD_rl)**3)
400 +    endif
401 +
402 +    if (r.lt.SSD_rlp) then
403 +       sp = 1.0d0      
404         dspdr = 0.0d0
405      elseif (r.gt.SSD_rup) then
372       s = 0.0d0
406         sp = 0.0d0
374       dsdr = 0.0d0
407         dspdr = 0.0d0
408      else
409 <       sp = ((SSD_rup + 2.0d0*r - 3.0d0*SSD_rl) * (SSD_rup-r)**2) / &
410 <            ((SSD_rup - SSD_rl)**3)
411 <       dspdr = 6.0d0*(r-SSD_rup)*(r-SSD_rl)/((SSD_rup - SSD_rl)**3)
380 <      
381 <       if (r.gt.SSD_ru) then
382 <          s = 0.0d0
383 <          dsdr = 0.0d0
384 <       else
385 <          s = ((SSD_ru + 2.0d0*r - 3.0d0*SSD_rl) * (SSD_ru-r)**2) / &
386 <               ((SSD_ru - SSD_rl)**3)
387 <          dsdr = 6.0d0*(r-SSD_ru)*(r-SSD_rl)/((SSD_ru - SSD_rl)**3)
388 <       endif
409 >       sp = ((SSD_rup + 2.0d0*r - 3.0d0*SSD_rlp) * (SSD_rup-r)**2) / &
410 >            ((SSD_rup - SSD_rlp)**3)
411 >       dspdr = 6.0d0*(r-SSD_rup)*(r-SSD_rlp)/((SSD_rup - SSD_rlp)**3)      
412      endif
413      
414      return

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