2011年10月26日水曜日

chage_axcel1.sh

#! /bin/tcsh -f
#####################################
# cloud change 
# chage of axcel
#####################################
#####################################

filename1=change_cloud
filename2=read_data
filename3=output_data

ffilename1=psea
ffilename2=v
ffilename3=allcwc
ffilename4=rv #1e+4
ffilename5=rvsrf #1e+4

ofname1=output_axcel1
ofname2=output_axcel_rv

####################################
####################################
#model grid size
xgrid=418
ygrid=418
zgrid=16
#include +,=
f_lon=+129.88
f_lat=-45.12

####################################
# set grid for cal


#20km=1grid is 0.18
xgrid_a=56 #10=55.5 grid
ygrid_a=56 #10=55.5 grid
gsize1=20  # 20km or 5km
gsize2=0.18 #grid size 20km=0.18, 5km=0.045

#definition region
lon_l=10.00
lat_l=10.00
#for cal
lon_l2=15.00
lat_l2=15.00

#length from center
ll_km=1000 #[km]
ll_m=`expr $ll_km \* 1000` #[m]

####################################
####################################
#type yyyymmddhhhh start and end time
: ${start:=199201041200}
: ${end:=199201082100}
#: ${end:=199201041500}
year=`echo ${start} | cut -c 1-4`
month=`echo ${start} | cut -c 5-6`
day=`echo ${start} | cut -c 7-8`
hour=`echo ${start} |cut -c 9-10`
h=00

echo start time ${year} ${month} ${day} ${hour} ${h}
echo end   time ${end}

: ${time:=${start}}

#timestep
timestep=1
time_step=0

i=0
while [ ${time} -le ${end} ]
do
time_step=`expr ${timestep} \* ${i}`
echo time_step ${time_step}

##decide m
if [ ${month} -eq 01 ]; then
    m=JAN
elif  [ ${month} -eq 02 ]; then
    m=FEB
elif  [ ${month} -eq 03 ]; then
    m=MAR
elif  [ ${month} -eq 04 ]; then
    m=APR
elif  [ ${month} -eq 05 ]; then
    m=MAY
elif  [ ${month} -eq 06 ]; then
    m=JUN
elif  [ ${month} -eq 07 ]; then
    m=JUL
elif  [ ${month} -eq 08 ]; then
    m=AUG
elif  [ ${month} -eq 09 ]; then
    m=SEP
elif  [ ${month} -eq 10 ]; then
    m=OCT
elif  [ ${month} -eq 11 ]; then
    m=NOV
elif  [ ${month} -eq 12 ]; then
    m=DEC
fi

##decide m

#echo $hour
time=${year}${month}${day}${hour}${h}
#echo yoshiyoshi
echo time $time
echo month $m

    t=`expr ${day} \* 4 - 3`
    t=`expr ${hour} / 6 + ${t}`


##############################################
#read grads data

: ${prefix:=anl_p}    #want data

    cat > ${filename2}.gs <<EOF
'reinit'
'open _NHMMRPPFCSVSTD1_${time}.ctl'
'set gxout fwrite'
'set undef dfile'
'set fwrite ${ffilename1}.grd'
*'set t ${t}'
'set x 1 418'
'set y 1 418'
'd psea'
'disable fwrite'
'c'

'set gxout fwrite'
'set undef dfile'
'set fwrite ${ffilename2}.grd'
*'set t ${t}'
'set x 1 418'
'set y 1 418'
'd sqrt(u*u+v*v)'
'disable fwrite'
'c'

'set gxout fwrite'
'set undef dfile'
'set fwrite ${ffilename3}.grd'
*'set t ${t}'
'set x 1 418'
'set y 1 418'
'c=vint(lev(z=1), cwc, 100)'
'd c'
'disable fwrite'
'c'

'set gxout fwrite'
'set undef dfile'
'set fwrite ${ffilename4}.grd'
'set x 1 418'
'set y 1 418'
k=1
while (k<=${zgrid})
'set z 'k''
'a=hcurl(u,v)'
'd a*10000'
*say 'yoshiyoshi'
*say k
k=k+1
endwhile
'disable fwrite'
'c'

'set gxout fwrite'
'set undef dfile'
'set fwrite ${ffilename5}.grd'
*'set t ${t}'
'set x 1 418'
'set y 1 418'
'a=hcurl(usrf,vsrf)'
'd a*10000'
'disable fwrite'
'c'


*ffilename1=psea
*ffilename2=v
*ffilename3=allcwc
*ffilename4=rv
*ffilename5=rv_srf



'quit'


EOF
    grads -blc ${filename2}.gs

########################################
####program read_data###################
########################################

if [ ${time} -eq ${start} ]; then
##start : make output file
cat <<EOF > start.f90
program start
 implicit none
open (unit=31, file='${ofname1}.txt', form='FORMATTED')
open (unit=32, file='${ofname2}.txt', form='FORMATTED')

write(31,*) '${ofilename1}'
write(31,*) 'time_step pn plonn platn v1n allarea_avcwc axcel_avcwc'
write(*,*) 'time_step pn plonn platn v1n allarea_avcwc axcel_avcwc'


write(32,*) '${ofilename2}'
write(32,*) 'time_step pn plonn platn v1n axcel_avcwc avrvsrf output_rv1000 output_rv800 output_rv600 output_rv400 output_rv200'
write(*,*) 'time_step pn plonn platn v1n axcel_avcwc avrvsrf output_rv1000 output_rv800 output_rv600 output_rv400 output_rv200'

close(31)
close(32)
end program start
EOF

##output data.txt by f90
f90 -o start.out start.f90
./start.out
##start
fi


####find min psea
cat <<EOF > ${filename2}.f90
program  ${filename2}
 implicit none
 integer, parameter :: xgrid=${xgrid}, ygrid=${ygrid}, zgrid=${zgrid}, rgrid=10
 real, parameter ::  gsize1=${gsize1}, gsize2=${gsize2}
 real, parameter :: ll_km=${ll_km}, ll_m=${ll_m}

 integer :: n, i, j, k, step, is, ie, js, je
 integer :: kxn, kyn, pkxn, pkyn
 integer :: ngrid2, ngrid3, size

!ffilename1=psea
!ffilename2=v
!ffilename3=allcwc
!ffilename4=rv #1e+4
!ffilename5=rv_srf #1e+4

 real(kind=4), dimension(xgrid,ygrid) :: ${ffilename1}
 real(kind=4), dimension(xgrid,ygrid) :: ${ffilename2}
 real(kind=4), dimension(xgrid,ygrid) :: ${ffilename3}
 real(kind=4), dimension(xgrid,ygrid,zgrid) :: ${ffilename4}
 real(kind=4), dimension(xgrid,ygrid) :: ${ffilename5}

 real(kind=4), dimension(zgrid) :: output_rv

 real(kind=4) :: pn, ppn, lonn, latn, plonn, platn, v1n, v2n, vlonn, vlatn, vmaxn, x
 real(kind=4) :: cwc_sum, avcwc, allarea_avcwc
 real(kind=4) :: p, axcel_avcwc, l_axcel
 real(kind=4) :: rv_sum, avrv, avrvsrf

ngrid2=xgrid*ygrid
ngrid3=xgrid*ygrid*zgrid

open (unit=11,file='${ffilename1}.grd',form='unformatted',access='direct',recl=ngrid2*4)
read (unit=11,rec=1) ${ffilename1}
open (unit=12,file='${ffilename2}.grd',form='unformatted',access='direct',recl=ngrid2*4)
read (unit=12,rec=1)  ${ffilename2}
open (unit=13,file='${ffilename3}.grd',form='unformatted',access='direct',recl=ngrid2*4)
read (unit=13,rec=1)  ${ffilename3}
open (unit=14,file='${ffilename4}.grd',form='unformatted',access='direct',recl=ngrid3*4)
read (unit=14,rec=1)  ${ffilename4}
open (unit=15,file='${ffilename5}.grd',form='unformatted',access='direct',recl=ngrid2*4)
read (unit=15,rec=1)  ${ffilename5}

open (unit=31, file='${ofname1}.txt', position='append', form='FORMATTED')
open (unit=32, file='${ofname2}.txt', position='append', form='FORMATTED')


!!!!!!!check
!do k = 1, ${zgrid}
!write(*,*) 'rv(100,100,k) ', rv(100,100,k)
!enddo

!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!find axcel pmin lon,lat
pn=2000
do i = 83, 277 !145~180
   do j = 255, 388 !1~25 @NH
    ppn= psea(i-1,j) + psea(i+1,j) + psea(i,j-1) + psea(i,j-1)
    ppn= ppn / 4
      if (psea(i,j) < ppn) then  
    if (psea(i,j) < pn) then
        pn=psea(i,j)
        kxn=i
        kyn=j
    endif
      endif  
   n=n+1 
   enddo
enddo
pkxn=kxn
pkyn=kyn

!pmin location
plonn=kxn*${gsize2}${f_lon}
platn=kyn*${gsize2}${f_lat}

!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!find axcel vmax vlon,vlat
v1n=1

is=kxn-10
js=kyn-10
ie=kxn+10
je=kyn+10

do  i = is, ie
    do j = js, je
    v2n= v(i-1,j) + v(i+1,j) + v(i,j-1) + v(i,j-1)
    v2n= v2n / 4
      if (v(i,j) > v2n) then  
    if (v(i,j) > v1n) then
        kxn=i
        kyn=j
        v1n=v(i,j)  
    endif
      endif  
    enddo
enddo

vlonn=kxn*${gsize2}${f_lon}
vlatn=kyn*${gsize2}${f_lat}

!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!!! cloud water content

allcwc(i,j)=allcwc(i,j)*1000
!change [kg/kg] to [g/kg]

!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!allarea_avcwc area1:-25~20,150~200(160E)
cwc_sum=0
step=0

do i = 111, 388
    do j= 111, 361
!do i = 1, ${xgrid}
!    do j= 1, ${ygrid}
    cwc_sum = cwc_sum + allcwc(i,j)
    step= step + 1
    enddo
enddo

allarea_avcwc = cwc_sum / step
!write(*,*) 'step allarea_avcwc ', step, allarea_avcwc


!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
! a axcel_avcwc
cwc_sum=0
step=0

do i = 1 , ${xgrid}
    do j = 1 , ${ygrid}
    l_axcel=(i-pkxn)**2+(j-pkyn)**2
        l_axcel=(l_axcel)**0.5
        l_axcel=l_axcel*${gsize1} !between axcel(pmin) and point
        if (l_axcel < ${ll_km}) then
        cwc_sum=cwc_sum+ allcwc(i,j)
        step = step + 1
!write(*,*) pkxn, pkyn, 'step', 'cwc_sum', step, cwc_sum, l_axcel, i, j
        endif  
    l_axcel=0  
    enddo
enddo
axcel_avcwc = cwc_sum / step

write(*,*) 'step axcel_avcwc ', step, axcel_avcwc

!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
! cal rv
!rv 1~zgrid
step=0
rv_sum=0

do k = 1, ${zgrid}
do i = 1, ${xgrid}
    do j = 1, ${ygrid}
    l_axcel=(i-pkxn)**2+(j-pkyn)**2
        l_axcel=(l_axcel)**0.5
        l_axcel=l_axcel*${gsize1} !between axcel(pmin) and point
        if (l_axcel < ${ll_km}) then
        rv_sum = rv_sum + rv(i,j,k)
        step = step + 1
!write(*,*) 'output_rv(k) rv(i,j,k) step i j k', output_rv(k), rv(i,j,k), step, i, j, k
!write(*,*) pkxn, pkyn, 'step', 'rv_sum', step, rv_sum, l_axcel, i, j
        endif  
    l_axcel=0  
    enddo
enddo
output_rv(k) = rv_sum / step
!write(*,*) 'output_rv(k) k', output_rv(k), step, k
step=0
rv_sum=0
enddo

!!!!!!
do k = 1, ${zgrid}
write(*,*) 'output_rv(k) step k', output_rv(k), step, k
enddo


!rvsrf
step=0
rv_sum=0
avrv=0

do i = 1, ${xgrid}
    do j = 1, ${ygrid}
    l_axcel=(i-pkxn)**2+(j-pkyn)**2
        l_axcel=(l_axcel)**0.5
        l_axcel=l_axcel*${gsize1} !between axcel(pmin) and point
        if (l_axcel < ${ll_km}) then
        rv_sum=rv_sum + rvsrf(i,j)
        step = step + 1
!write(*,*) pkxn, pkyn, 'step', 'rv_sum', step, rv_sum, l_axcel, i, j
        endif  
    l_axcel=0  
    enddo
enddo

avrvsrf = rv_sum / step
!write(*,*) 'step avrvsrf', rv_sum, avrvsrf




!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!!!! output data
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!

write(31,*) ${time_step}, pn, plonn, platn, v1n, allarea_avcwc, axcel_avcwc
write(*,*) ${time_step}, pn, plonn, platn, v1n, allarea_avcwc, axcel_avcwc

write(32,*) ${time_step}, pn, plonn, platn, v1n, axcel_avcwc, avrvsrf, output_rv(1), output_rv(7), output_rv(9), output_rv(11), output_rv(14)
write(*,*) ${time_step}, pn, plonn, platn, v1n, axcel_avcwc, avrvsrf, output_rv(1), output_rv(7), output_rv(9), output_rv(11), output_rv(14)

close(11)
close(12)
close(13)
close(14)
close(15)

close(31)
close(32)

end program
EOF



##output data.txt by f90
f90 -o ${filename2}.out ${filename2}.f90
./${filename2}.out




#echo ${day}
#echo "yoshiyoshi"
i=`expr $i + 1`
#echo $i

#hour=`expr $hour + 1`
hour=`expr $hour + $timestep`
hour=`echo ${hour} | awk '{printf("%02d",$1)}'`


if [ $hour -eq 24 ]; then
    hour=00
#    day=`expr $day + 1`
        day=`echo ${day} | awk '{printf("%02d",$1+1)}'`
  
    if [ $day -ge 32 ];then
        day=01
#        month=`expr $month + 1`
        month=`echo ${month} | awk '{printf("%02d",$1+1)}'`
  
        if [ $month -ge 13 ];then
            month=01
            year=`expr $year + 1`

        fi  
    fi  
fi
time=${year}${month}${day}${hour}${h}


done

cp ${ofname1}.txt ${ofname1}.dat
cp ${ofname2}.txt ${ofname2}.dat

0 件のコメント:

コメントを投稿