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cafagna |
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* Subroutine inter_B.f (from tracker software analysis) |
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* |
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* it computes the magnetic field in a chosen point x,y,z inside or |
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* outside the magnetic cavity, using a trilinear interpolation of |
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* B field measurements (read before by means of ./read_B.f) |
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* if the point falls outside the interpolation volume, set the field to 0 |
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* |
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* needs: |
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* - ../common/common_B_inner.f common file for the inner magnetic field map |
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* - ./inter_B_inner.f common file for the inner magnetic field map |
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* |
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* to be called after ./read_B.f (magnetic field map reading subroutine) |
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* |
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* input: coordinates in m |
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* output: magnetic field in T |
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* |
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subroutine inter_B(x,y,z,res) !coordinates in m, magnetic field in T |
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IMPLICIT DOUBLE PRECISION (A-H,O-Z) |
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#include "gpfield.inc" |
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c------------------------------------------------------------------------ |
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c |
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c local variables |
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c |
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c------------------------------------------------------------------------ |
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real*8 x,y,z !point of interest |
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real*8 res(3) !interpolated B components: res = (Bx, By, Bz) |
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c------------------------------------------------------------------------ |
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c |
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c set the field outside the interpolation volume to be 0 |
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c |
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c------------------------------------------------------------------------ |
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do ip=1,3 |
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res(ip)=0. |
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enddo |
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c------------------------------------------------------------------------ |
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c |
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c check if the point falls inside the interpolation volume |
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c |
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c------------------------------------------------------------------------ |
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if((x.ge.edgexmin).and.(x.le.edgexmax) |
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$ .and.(y.ge.edgeymin).and.(y.le.edgeymax) |
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$ .and.(z.ge.edgezmin).and.(z.le.edgezmax)) then |
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call inter_B_inner(x,y,z,res) |
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endif |
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c TODO: add inter_B_outer subroutine(s) for the external magnetic field map |
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return |
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end |
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