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MODULE case_dependent
!
! Author: Jacopo Canton
! E-mail: jcanton@mech.kth.se
! Last revision: 13/6/2014
!
! This module contains routines which are case dependent and can be adapted
! to suit the needs of a particular flow analysis.
! The idea is to have here ALL what is case dependent so that it's more
! difficult to make stupid memory mistakes to the core of the program.
!
USE global_variables
USE miscellaneous_subroutines
USE axisym_boundary_values
USE Gauss_points
USE Gauss_points_L
USE vorticity_stream
USE vtk_plot
!------------------------------------------------------------------------------
IMPLICIT NONE
!***torus
REAL(KIND=8), DIMENSION(:,:), ALLOCATABLE, SAVE :: rr0, rr0_L
REAL(KIND=8), SAVE :: deform0, deform1
INTEGER, SAVE :: maxRloc
LOGICAL, SAVE :: rr0init=.FALSE.
CONTAINS
!------------------------------------------------------------------------------
SUBROUTINE case_problemset()
!
! Author: Jacopo Canton
! E-mail: jcanton@mech.kth.se
! Last revision: 13/6/2014
!
! This routine is executed after reading the 'problem_data.in' file
IMPLICIT NONE
! input variables
! output variables
! local variables
REAL(KIND=8) :: Rt, Rp=0.5d0
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_problemset'
WRITE(*,*) ' done: case_problemset'
WRITE(*,*)
END SUBROUTINE case_problemset
!------------------------------------------------------------------------------
SUBROUTINE case_preprocess()
!
! Author:
! E-mail:
! Last revision:
!
! This routine is executed before the analysis starts but after the program
! initialization
IMPLICIT NONE
! input variables
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_preprocess'
WRITE(*,*) ' done: case_preprocess'
WRITE(*,*)
END SUBROUTINE case_preprocess
!++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
SUBROUTINE case_newton_iteprocess(ite, continuation_converged)
!
! Author: Jacopo Canton
! E-mail: jcanton@mech.kth.se
! Last revision: 13/6/2014
!
! This routine is called inside the nonlinear solver (Newton's method) before
! the generation of the right-hand side and Jacobian matrix
IMPLICIT NONE
! input variables
INTEGER, INTENT(IN) :: ite
! output variables
INTEGER :: continuation_converged
! local variables
REAL(KIND=8) :: Ub, Ub_tol
REAL(KIND=8), DIMENSION(velCmpnnts) :: u_avg
REAL(KIND=8), SAVE :: fn1, Ubn1, fn2, Ubn2
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_newton_iteprocess'
WRITE(*,*) ' done: case_newton_iteprocess'
WRITE(*,*)
END SUBROUTINE case_newton_iteprocess
!------------------------------------------------------------------------------
SUBROUTINE case_newton_postprocess()
!
! Author:
! E-mail:
! Last revision:
!
! This routine is called after Newton's method has reached convergence
IMPLICIT NONE
! input variables
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_newton_postprocess'
WRITE(*,*) ' done: case_newton_postprocess'
WRITE(*,*)
END SUBROUTINE case_newton_postprocess
!++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
SUBROUTINE case_postprocess_analysis0()
!
! Author: Jacopo Canton
! E-mail: jcanton@mech.kth.se
! Last revision: 18/12/2014
!
! This routine is executed after analysis 0:
! Steady state computation
IMPLICIT NONE
! input variables
! output variables
! local variables
INTEGER :: fid = 23
REAL(KIND=8), DIMENSION(velCmpnnts) :: u_avg
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_postprocess_analysis0'
WRITE(*,*) ' done: case_postprocess_analysis0'
WRITE(*,*)
END SUBROUTINE case_postprocess_analysis0
!------------------------------------------------------------------------------
SUBROUTINE case_postprocess_analysis1()
!
! Author: Jacopo Canton
! E-mail: jcanton@mech.kth.se
! Last revision: 13/6/2014
!
! This routine is executed after analysis 1:
! Steady state computation
IMPLICIT NONE
! input variables
! output variables
! local variables
INTEGER :: fid = 23
REAL(KIND=8), DIMENSION(velCmpnnts) :: u_avg
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_postprocess_analysis1'
WRITE(*,*) ' done: case_postprocess_analysis1'
WRITE(*,*)
END SUBROUTINE case_postprocess_analysis1
!------------------------------------------------------------------------------
SUBROUTINE case_postprocess_analysis3()
!
! Author:
! E-mail:
! Last revision:
!
! This routine is executed after analysis 3:
! Eigenvalue computation on an already computed base flow
IMPLICIT NONE
! input variables
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_postprocess_analysis3'
WRITE(*,*) ' done: case_postprocess_analysis3'
WRITE(*,*)
END SUBROUTINE case_postprocess_analysis3
!------------------------------------------------------------------------------
SUBROUTINE case_postprocess_analysis4()
!
! Author:
! E-mail:
! Last revision:
!
! This routine is executed after analysis 4:
! Structural sensitivity analysis on an already computed base flow, and already
! computed both direct and adjoint eigenvectors
IMPLICIT NONE
! input variables
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_postprocess_analysis4'
WRITE(*,*) ' done: case_postprocess_analysis4'
WRITE(*,*)
END SUBROUTINE case_postprocess_analysis4
!------------------------------------------------------------------------------
SUBROUTINE case_postprocess_analysis5()
!
! Author:
! E-mail:
! Last revision:
!
! This routine is executed after analysis 5:
! Transient growth computation on an already computed base flow
IMPLICIT NONE
! input variables
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_postprocess_analysis5'
WRITE(*,*) ' done: case_postprocess_analysis5'
WRITE(*,*)
END SUBROUTINE case_postprocess_analysis5
!------------------------------------------------------------------------------
SUBROUTINE case_postprocess_analysis6()
!
! Author:
! E-mail:
! Last revision:
!
! This routine is executed after analysis 6
! DNS
IMPLICIT NONE
! input variables
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_postprocess_analysis6'
WRITE(*,*) ' done: case_postprocess_analysis6'
WRITE(*,*)
END SUBROUTINE case_postprocess_analysis6
!------------------------------------------------------------------------------
SUBROUTINE case_postprocess_analysis7()
!
! Author:
! E-mail:
! Last revision:
!
! This routine is executed after analysis 7
! Evolution of optimal linear perturbations an already computed base flow
IMPLICIT NONE
! input variables
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_postprocess_analysis7'
WRITE(*,*) ' done: case_postprocess_analysis7'
WRITE(*,*)
END SUBROUTINE case_postprocess_analysis7
!++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
SUBROUTINE case_loca_solution_output(x_vec, filenm)
!
! Author: Jacopo Canton
! E-mail: jcanton@mech.kth.se
! Last revision: 24/11/2014
!
! This routine is executed when LOCA has converged on a steady solution
! and saves the results
IMPLICIT NONE
! input variables
REAL(KIND=8), DIMENSION(Nx) :: x_vec
CHARACTER(*) :: filenm
! output variables
! local variables
REAL(KIND=8), DIMENSION(velCmpnnts,np) :: u_zzpsi
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_loca_solution_output'
WRITE(*,*) ' done: case_loca_solution_output'
WRITE(*,*)
END SUBROUTINE case_loca_solution_output
!------------------------------------------------------------------------------
SUBROUTINE case_loca_paramout()
!
! Author: Jacopo Canton
! E-mail: jcanton@mech.kth.se
! Last revision: 13/6/2014
!
! This routine is executed when LOCA has converged on a steady solution
! and saves the results
IMPLICIT NONE
! input variables
! output variables
! local variables
INTEGER :: fid = 23
REAL(KIND=8), DIMENSION(velCmpnnts) :: u_avg
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_loca_paramout'
WRITE(*,*) ' done: case_loca_paramout'
WRITE(*,*)
END SUBROUTINE case_loca_paramout
!------------------------------------------------------------------------------
SUBROUTINE case_loca_changeOscar(oscar)
!
! Author: Jacopo Canton
! E-mail: jcanton@mech.kth.se
! Last revision: 13/6/2014
!
! This routine is executed when LOCA needs to change parameter Oscar
IMPLICIT NONE
! input variables
REAL(KIND=8), INTENT(IN) :: oscar
! output variables
! local variables
REAL(KIND=8) :: Rt, Rp=0.5d0
REAL(KIND=8) :: deform, deformRel
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_loca_changeOscar'
WRITE(*,*) ' done: case_loca_changeOscar'
WRITE(*,*)
END SUBROUTINE case_loca_changeOscar
!------------------------------------------------------------------------------
SUBROUTINE case_loca_changeRomeo(romeo)
!
! Author:
! E-mail:
! Last revision:
!
! This routine is executed when LOCA needs to change parameter Romeo
IMPLICIT NONE
! input variables
REAL(KIND=8), INTENT(IN) :: romeo
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_loca_changeRomeo'
WRITE(*,*) ' done: case_loca_changeRomeo'
WRITE(*,*)
END SUBROUTINE case_loca_changeRomeo
!------------------------------------------------------------------------------
SUBROUTINE case_loca_changeWhisky(whisky)
!
! Author:
! E-mail:
! Last revision:
!
! This routine is executed when LOCA needs to change parameter Whisky
IMPLICIT NONE
! input variables
REAL(KIND=8), INTENT(IN) :: whisky
! output variables
! local variables
! executable statements
WRITE(*,*)
WRITE(*,*) '--> call to: case_loca_changeWhisky'
WRITE(*,*) ' done: case_loca_changeWhisky'
WRITE(*,*)
END SUBROUTINE case_loca_changeWhisky
!==============================================================================
END MODULE case_dependent