[1] | 1 | ! (c) 2008, Lawrence Livermore National Security Limited Liability Corporation. |
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| 2 | ! All rights reserved. |
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| 3 | ! |
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| 4 | ! Redistribution and use in source and binary forms, with or without modification, are permitted |
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| 5 | ! provided that the following conditions are met: |
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| 6 | ! |
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| 7 | ! * Redistributions of source code must retain the above copyright notice, this list |
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| 8 | ! of conditions and the following disclaimer. |
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| 9 | ! * Redistributions in binary form must reproduce the above copyright notice, this list |
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| 10 | ! of conditions and the following disclaimer in the documentation and/or other materials |
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| 11 | ! provided with the distribution. |
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| 12 | ! * Neither the name of the Lawrence Livermore National Security Limited Liability Corporation |
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| 13 | ! nor the names of its contributors may be used to endorse or promote products derived from |
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| 14 | ! this software without specific prior written permission. |
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| 15 | ! |
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| 16 | ! THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR |
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| 17 | ! IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND |
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| 18 | ! FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR |
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| 19 | ! CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL |
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| 20 | ! DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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| 21 | ! DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER |
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| 22 | ! IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT |
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| 23 | ! OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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| 24 | |
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| 25 | subroutine pf_to_mr(npoints,nlev,ncol,rain_ls,snow_ls,grpl_ls, |
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| 26 | & rain_cv,snow_cv,prec_frac, |
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| 27 | & p,t,mx_rain_ls,mx_snow_ls,mx_grpl_ls, |
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| 28 | & mx_rain_cv,mx_snow_cv) |
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| 29 | |
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| 30 | |
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| 31 | implicit none |
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| 32 | |
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| 33 | INTEGER npoints ! number of model points in the horizontal |
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| 34 | INTEGER nlev ! number of model levels in column |
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| 35 | INTEGER ncol ! number of subcolumns |
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| 36 | |
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| 37 | INTEGER i,j,ilev,ibox |
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| 38 | |
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| 39 | REAL rain_ls(npoints,nlev),snow_ls(npoints,nlev) ! large-scale precipitation flux |
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| 40 | REAL grpl_ls(npoints,nlev) |
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| 41 | REAL rain_cv(npoints,nlev),snow_cv(npoints,nlev) ! convective precipitation flux |
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| 42 | |
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| 43 | REAL prec_frac(npoints,ncol,nlev) ! 0 -> clear sky |
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| 44 | ! 1 -> LS precipitation |
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| 45 | ! 2 -> CONV precipitation |
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| 46 | ! 3 -> both |
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| 47 | REAL mx_rain_ls(npoints,ncol,nlev),mx_snow_ls(npoints,ncol,nlev) |
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| 48 | REAL mx_grpl_ls(npoints,ncol,nlev) |
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| 49 | REAL mx_rain_cv(npoints,ncol,nlev),mx_snow_cv(npoints,ncol,nlev) |
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| 50 | REAL p(npoints,nlev),t(npoints,nlev) |
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| 51 | REAL ar,as,ag,br,bs,bg,nr,ns,ng,rho0,rhor,rhos,rhog,rho |
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| 52 | REAL term1r,term1s,term1g,term2r,term2s,term2g,term3 |
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| 53 | REAL term4r_ls,term4s_ls,term4g_ls,term4r_cv,term4s_cv |
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| 54 | REAL term1x2r,term1x2s,term1x2g,t123r,t123s,t123g |
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| 55 | |
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| 56 | ! method from Khairoutdinov and Randall (2003 JAS) |
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| 57 | |
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| 58 | ! --- List of constants from Appendix B |
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| 59 | ! Constant in fall speed formula |
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| 60 | ar=842. |
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| 61 | as=4.84 |
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| 62 | ag=94.5 |
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| 63 | ! Exponent in fall speed formula |
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| 64 | br=0.8 |
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| 65 | bs=0.25 |
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| 66 | bg=0.5 |
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| 67 | ! Intercept parameter |
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| 68 | nr=8.*1000.*1000. |
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| 69 | ns=3.*1000.*1000. |
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| 70 | ng=4.*1000.*1000. |
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| 71 | ! Densities for air and hydrometeors |
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| 72 | rho0=1.29 |
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| 73 | rhor=1000. |
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| 74 | rhos=100. |
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| 75 | rhog=400. |
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| 76 | ! Term 1 of Eq. (A19). |
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| 77 | term1r=ar*17.8379/6. |
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| 78 | term1s=as*8.28508/6. |
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| 79 | term1g=ag*11.6317/6. |
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| 80 | ! Term 2 of Eq. (A19). |
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| 81 | term2r=(3.14159265*rhor*nr)**(-br/4.) |
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| 82 | term2s=(3.14159265*rhos*ns)**(-bs/4.) |
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| 83 | term2g=(3.14159265*rhog*ng)**(-bg/4.) |
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| 84 | |
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| 85 | term1x2r=term1r*term2r |
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| 86 | term1x2s=term1s*term2s |
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| 87 | term1x2g=term1g*term2g |
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| 88 | do ilev=1,nlev |
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| 89 | do j=1,npoints |
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| 90 | rho=p(j,ilev)/(287.05*t(j,ilev)) |
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| 91 | term3=(rho0/rho)**0.5 |
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| 92 | ! Term 4 of Eq. (A19). |
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| 93 | t123r=term1x2r*term3 |
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| 94 | t123s=term1x2s*term3 |
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| 95 | t123g=term1x2g*term3 |
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| 96 | term4r_ls=rain_ls(j,ilev)/(t123r) |
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| 97 | term4s_ls=snow_ls(j,ilev)/(t123s) |
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| 98 | term4g_ls=grpl_ls(j,ilev)/(t123g) |
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| 99 | term4r_cv=rain_cv(j,ilev)/(t123r) |
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| 100 | term4s_cv=snow_cv(j,ilev)/(t123s) |
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| 101 | do ibox=1,ncol |
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| 102 | mx_rain_ls(j,ibox,ilev)=0. |
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| 103 | mx_snow_ls(j,ibox,ilev)=0. |
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| 104 | mx_grpl_ls(j,ibox,ilev)=0. |
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| 105 | mx_rain_cv(j,ibox,ilev)=0. |
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| 106 | mx_snow_cv(j,ibox,ilev)=0. |
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| 107 | if ((prec_frac(j,ibox,ilev) .eq. 1.) .or. |
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| 108 | & (prec_frac(j,ibox,ilev) .eq. 3.)) then |
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| 109 | mx_rain_ls(j,ibox,ilev)= |
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| 110 | & (term4r_ls**(1./(1.+br/4.)))/rho |
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| 111 | mx_snow_ls(j,ibox,ilev)= |
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| 112 | & (term4s_ls**(1./(1.+bs/4.)))/rho |
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| 113 | mx_grpl_ls(j,ibox,ilev)= |
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| 114 | & (term4g_ls**(1./(1.+bg/4.)))/rho |
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| 115 | endif |
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| 116 | if ((prec_frac(j,ibox,ilev) .eq. 2.) .or. |
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| 117 | & (prec_frac(j,ibox,ilev) .eq. 3.)) then |
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| 118 | mx_rain_cv(j,ibox,ilev)= |
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| 119 | & (term4r_cv**(1./(1.+br/4.)))/rho |
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| 120 | mx_snow_cv(j,ibox,ilev)= |
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| 121 | & (term4s_cv**(1./(1.+bs/4.)))/rho |
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| 122 | endif |
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| 123 | enddo ! loop over ncol |
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| 124 | enddo ! loop over npoints |
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| 125 | enddo ! loop over nlev |
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| 126 | |
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| 127 | end |
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| 128 | |
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