00001 subroutine update_parameter_triaxial_peos(convf)
00002 use phys_constant, only : long
00003 use grid_parameter, only : nrg, ntg, npg, nrf_deform, nrf, &
00004 & ntgpolp, ntgeq, ntgxy, npgxzp, npgyzp
00005 use def_metric, only : psi, alph, bvxd, bvyd, bvzd, tfkij, tfkijkij
00006 use def_matter_parameter
00007 use coordinate_grav_r, only : rg
00008 use trigonometry_grav_theta, only : sinthg, costhg
00009 use trigonometry_grav_phi, only : sinphig, cosphig
00010 use def_vector_phi, only : vec_phig
00011 use interface_minv
00012 implicit none
00013 real(long), intent(in) :: convf
00014 real(long) :: sgg(1:4), gg(1:4,1:4)
00015 real(long) :: bin, bmid, bout
00016
00017 real(long) :: ain, amid, aout
00018
00019 real(long) :: pain, pamid, paout
00020
00021 real(long) :: ovin, ovmid, ovout
00022
00023 real(long) :: ov2in, ov2mid, ov2out
00024
00025 real(long) :: termin, termmid, termout
00026 real(long) :: dtermdoin, dtermdomid, dtermdoout
00027 real(long) :: dtermdrin, dtermdrmid, dtermdrout
00028 real(long) :: vphixin, vphiymid, vphiyout
00029 real(long) :: loghc
00030 real(long) :: radiold, berold, omeold
00031 real(long) :: ddradi, ddber, ddome
00032 real(long) :: facfac, numero, error, hc, pre, rho, ene
00033 integer :: nin
00034
00035
00036 real(long) :: ut, hh, emdtest
00037
00038 nin = nrf_deform
00039
00040 sgg = 0.0d0
00041 gg = 0.0d0
00042
00043 call peos_q2hprho(emdc, hc, pre, rho, ene)
00044 loghc = dlog(hc)
00045 vphixin = vec_phig(nin,ntgeq,npgyzp,1)
00046 vphiymid = vec_phig(0,0,0,2)
00047 vphiyout = vec_phig(nrf,ntgeq,0,2)
00048 omeold = ome
00049 berold = ber
00050 radiold = radi
00051 numero = 1
00052
00053 ain = dlog(alph(nin,ntgeq,npgyzp)**(1.d0/radi**2))
00054 pain= (psi(nin,ntgeq,npgyzp)**2/alph(nin,ntgeq,npgyzp))**(1.d0/radi**2)
00055 bin = bvxd(nin,ntgeq,npgyzp)
00056
00057 amid = dlog(alph(0,0,0)**(1.d0/radi**2))
00058 pamid= (psi(0,0,0)**2/alph(0,0,0))**(1.d0/radi**2)
00059 bmid = bvyd(0,0,0)
00060
00061 aout = dlog(alph(nrf,ntgeq,0)**(1.d0/radi**2))
00062 paout= (psi(nrf,ntgeq,0)**2/alph(nrf,ntgeq,0))**(1.d0/radi**2)
00063 bout = bvyd(nrf,ntgeq,0)
00064
00065 do
00066 ovin = bin + ome*vphixin
00067 ovmid = bmid + ome*vphiymid
00068 ovout = bout + ome*vphiyout
00069
00070 ov2in = ovin**2
00071 ov2mid = ovmid**2
00072 ov2out = ovout**2
00073 termin = 1.0d0 - pain**( 2.d0*radi**2)*ov2in
00074 termmid = 1.0d0 - pamid**(2.d0*radi**2)*ov2mid
00075 termout = 1.0d0 - paout**(2.d0*radi**2)*ov2out
00076
00077 dtermdoin = - pain**(2.d0*radi**2)*2.0d0*ovin*vphixin
00078 dtermdomid= - pamid**(2.d0*radi**2)*2.0d0*ovmid*vphiymid
00079 dtermdoout= - paout**(2.d0*radi**2)*2.0d0*ovout*vphiyout
00080 dtermdrin =-dlog(pain)*4.d0*radi*pain**(2.d0*radi**2)*ov2in
00081 dtermdrmid=-dlog(pamid)*4.d0*radi*pamid**(2.d0*radi**2)*ov2mid
00082 dtermdrout=-dlog(paout)*4.d0*radi*paout**(2.d0*radi**2)*ov2out
00083
00084 sgg(1) = -(radi**2*ain + 0.5d0*dlog(termin) - dlog(ber))
00085 sgg(2) = -(radi**2*aout + 0.5d0*dlog(termout) - dlog(ber))
00086 sgg(3) = -(radi**2*amid + 0.5d0*dlog(termmid) - dlog(ber) + loghc)
00087
00088
00089 gg(1,1) = 0.5d0*dtermdoin/termin
00090 gg(1,2) = - 1.0d0/ber
00091 gg(1,3) = 2.0d0*radi*ain + 0.5d0*dtermdrin/termin
00092
00093 gg(2,1) = 0.5d0*dtermdoout/termout
00094 gg(2,2) = - 1.0d0/ber
00095 gg(2,3) = 2.0d0*radi*aout + 0.5d0*dtermdrout/termout
00096
00097 gg(3,1) = 0.5d0*dtermdomid/termmid
00098 gg(3,2) = - 1.0d0/ber
00099 gg(3,3) = 2.0d0*radi*amid + 0.5d0*dtermdrmid/termmid
00100
00101
00102
00103
00104
00105
00106
00107
00108
00109
00110
00111 call minv(gg,sgg,3,4)
00112 ddome = sgg(1)
00113 ddber = sgg(2)
00114 ddradi = sgg(3)
00115 facfac = dmin1(dble(numero)/5.0d0,1.0d0)
00116 ome = ome + ddome*facfac
00117 ber = ber + ddber*facfac
00118 radi = radi + ddradi*facfac
00119 error = dmax1(dabs(ddome/ome),dabs(ddber/ber),dabs(ddradi/radi))
00120 numero = numero + 1
00121 if (numero>1000) then
00122 write(6,*)' numero = ', numero, ' error =',error
00123 end if
00124
00125 if (numero>1010) exit
00126 if (dabs(error)<1.0d-08) exit
00127 end do
00128
00129
00130
00131
00132
00133
00134
00135 if (radi < 0.d0) write(6,*) ' ### radi minus ###'
00136 if (radi < 0.d0) radi = - radi
00137 if (ome < 0.d0) write(6,*) ' ### ome minus ###'
00138 if (ome < 0.d0) ome = - ome
00139 if (ber < 0.d0) write(6,*) ' ### ber minus ###'
00140 if (ber < 0.d0) ber = - ber
00141 ome = convf*ome + (1.d0-convf)*omeold
00142 ber = convf*ber + (1.d0-convf)*berold
00143 radi = convf*radi + (1.d0-convf)*radiold
00144
00145
00146
00147 alph = alph**((radi/radiold)**2)
00148 psi = psi**((radi/radiold)**2)
00149
00150 end subroutine update_parameter_triaxial_peos