modified projxyzt: added window function and corrected the case iplane=2

This commit is contained in:
Alberto Mariani 2013-05-29 13:46:25 +00:00
parent 892947b1de
commit d7ced56519

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@ -5714,9 +5714,11 @@ c gg=F(u)/u with F(u) as in Cohen paper
dimension pvett(3),pvettn(3),dery0(3),dery0n(3)
dimension avn(3,jmx,kmx)
dimension aplane(3,jmx,kmx),asip(jmx,kmx),asrp(jmx,kmx),
dimension aplane(3,jmx,kmx),ak0sip(jmx,kmx),asrp(jmx,kmx),
. taup(jmx,kmx)
dimension gri(3,jmx,kmx)
dimension dxspv(jmx,kmx),dyspv(jmx,kmx),dzspv(jmx,kmx)
dimension zwjvv(jmx,kmx),zwjspvv(jmx,kmx)
c parameter(nxmax=2*jmx-1)
parameter(nxmax=2*kmx)
@ -5782,7 +5784,7 @@ c initialize grid dimension for spline interpolation
do ll=1,3
aplane(ll,j,k)=ywrk(ll,j,k)
enddo
asip(j,k)=(dble(j-1)*rwmax/dble(nrayr-1))**2
ak0sip(j,k)=(dble(j-1)*rwmax/dble(nrayr-1))**2
asrp(j,k)=0
enddo
enddo
@ -5814,7 +5816,7 @@ c prjection parallel to vg on the plane perpendicular to n0 passing through
kktx=nrayth
if(j.eq.1) kktx=1
do k=1,kktx
asip(j,k)=(dble(j-1)*rwmax/dble(nrayr-1))**2
ak0sip(j,k)=(dble(j-1)*rwmax/dble(nrayr-1))**2
asrp(j,k)=ywrk(4,j,k)*(aplane(1,j,k)-ywrk(1,j,k))+
. ywrk(5,j,k)*(aplane(2,j,k)-ywrk(2,j,k))+
. ywrk(6,j,k)*(aplane(3,j,k)-ywrk(3,j,k))
@ -5849,7 +5851,7 @@ c Si evaluation on the projection plane(Taylor, first order)
kktx=nrayth
if(j.eq.1) kktx=1
do k=1,kktx
asip(j,k)=(dble(j-1)*rwmax/dble(nrayr-1))**2
ak0sip(j,k)=(dble(j-1)*rwmax/dble(nrayr-1))**2
. +gri(1,j,k)*(aplane(1,j,k)-ywrk(1,j,k))
. +gri(2,j,k)*(aplane(2,j,k)-ywrk(2,j,k))
. +gri(3,j,k)*(aplane(3,j,k)-ywrk(3,j,k))
@ -5873,9 +5875,50 @@ c
kktx=nrayth
if(j.eq.1) kktx=1
do k=1,kktx
zwj=(dble(j-1)*rwmax/dble(nrayr-1))**2
zwjsp=asip(j,k)
zwjspvv(j,k)=ak0sip(j,k)
c . +0.5*taup(j,k)
dxspv(j,k)=aplane(1,j,k)-aplane(1,1,1)
dyspv(j,k)=aplane(2,j,k)-aplane(2,1,1)
dzspv(j,k)=aplane(3,j,k)-aplane(3,1,1)
enddo
enddo
c
if(iplane.eq.2) then
do j=2,nrayr
do k=1,nrayth
deltaxdotn0=(ywrk(1,1,1)-ywrk(1,j,k))*ywrk(4,1,1)+
. (ywrk(2,1,1)-ywrk(2,j,k))*ywrk(5,1,1)+
. (ywrk(3,1,1)-ywrk(3,j,k))*ywrk(6,1,1)
an02=ywrk(4,1,1)**2+ywrk(5,1,1)**2+ywrk(6,1,1)**2
aalpha=deltaxdotn0/an02
do ll=1,3
aplane(ll,j,k)=ywrk(ll,j,k)+aalpha*ywrk(ll+3,1,1)
enddo
enddo
enddo
do ll=1,3
aplane(ll,1,1)=ywrk(ll,1,1)
enddo
zwjvv(j,k)=(dble(j-1)*rwmax/dble(nrayr-1))**2
. +gri(1,j,k)*(aplane(1,j,k)-ywrk(1,j,k))
. +gri(2,j,k)*(aplane(2,j,k)-ywrk(2,j,k))
. +gri(3,j,k)*(aplane(3,j,k)-ywrk(3,j,k))
else
do j=1,nrayr
kktx=nrayth
if(j.eq.1) kktx=1
do k=1,kktx
zwjvv(j,k)=zwjspvv(j,k)
enddo
enddo
endif
c
do j=1,nrayr
kktx=nrayth
if(j.eq.1) kktx=1
do k=1,kktx
zwj=zwjvv(j,k)
zwjsp=zwjspvv(j,k)
c
dx=ywrk(1,j,k)-ywrk(1,1,1)
dy=ywrk(2,j,k)-ywrk(2,1,1)
@ -5900,10 +5943,18 @@ c
yti=(dx*snps1+dy*csps1)*csth1-dz*snth1
zti=(dx*snps1+dy*csps1)*snth1+dz*csth1
rti=sqrt(xti**2+yti**2)
c
dxsp=dxspv(j,k)
dysp=dyspv(j,k)
dzsp=dzspv(j,k)
xspti=dxsp*csps1-dysp*snps1
yspti=(dxsp*snps1+dysp*csps1)*csth1-dzsp*snth1
zspti=(dxsp*snps1+dysp*csps1)*snth1+dzsp*csth1
rspti=sqrt(xspti**2+yspti**2)
c store x,y,z values for spline interpolation
iray=iray+1
xtiv(iray)=xti
ytiv(iray)=yti
xtiv(iray)=xspti
ytiv(iray)=yspti
zwjv(iray)=zwjsp
srv(iray)=asrp(j,k)
c initialize grid dimension for spline interpolation