[1] | 1 | SUBROUTINE init_rankine |
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| 2 | |
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| 3 | !------------------------------------------------------------------------------! |
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[484] | 4 | ! Current revisions: |
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[1] | 5 | ! ----------------- |
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[110] | 6 | ! |
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[1] | 7 | ! |
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| 8 | ! Former revisions: |
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| 9 | ! ----------------- |
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[3] | 10 | ! $Id: init_rankine.f90 484 2010-02-05 07:36:54Z raasch $ |
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[77] | 11 | ! |
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[110] | 12 | ! 107 2007-08-17 13:54:45Z raasch |
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| 13 | ! Initial profiles are reset to constant profiles |
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| 14 | ! |
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[77] | 15 | ! 75 2007-03-22 09:54:05Z raasch |
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| 16 | ! uxrp, vynp eliminated, 2nd+3rd argument removed from exchange horiz |
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| 17 | ! |
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[3] | 18 | ! RCS Log replace by Id keyword, revision history cleaned up |
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| 19 | ! |
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[1] | 20 | ! Revision 1.11 2005/03/26 20:38:49 raasch |
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| 21 | ! Arguments for non-cyclic boundary conditions added to argument list of |
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| 22 | ! routine exchange_horiz |
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| 23 | ! |
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| 24 | ! Revision 1.1 1997/08/11 06:18:43 raasch |
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| 25 | ! Initial revision |
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| 26 | ! |
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| 27 | ! |
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| 28 | ! Description: |
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| 29 | ! ------------ |
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| 30 | ! Initialize a (nondivergent) Rankine eddy with a vertical axis in order to test |
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| 31 | ! the advection terms and the pressure solver. |
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| 32 | !------------------------------------------------------------------------------! |
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| 33 | |
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| 34 | USE arrays_3d |
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| 35 | USE constants |
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| 36 | USE grid_variables |
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| 37 | USE indices |
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| 38 | USE control_parameters |
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| 39 | |
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| 40 | IMPLICIT NONE |
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| 41 | |
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| 42 | INTEGER :: i, ic, j, jc, k, kc1, kc2 |
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| 43 | REAL :: alpha, betrag, radius, rc, uw, vw, x, y |
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| 44 | |
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| 45 | ! |
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| 46 | !-- Default: eddy radius rc, eddy strength z, |
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| 47 | !-- position of eddy centre: ic, jc, kc1, kc2 |
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| 48 | rc = 4.0 * dx |
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| 49 | ic = ( nx+1 ) / 2 |
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| 50 | jc = ic |
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| 51 | kc1 = nzb |
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| 52 | kc2 = nzt+1 |
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| 53 | |
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| 54 | ! |
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[107] | 55 | !-- Reset initial profiles to constant profiles |
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| 56 | IF ( INDEX(initializing_actions, 'set_constant_profiles') /= 0 ) THEN |
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| 57 | DO i = nxl-1, nxr+1 |
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| 58 | DO j = nys-1, nyn+1 |
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| 59 | pt(:,j,i) = pt_init |
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| 60 | u(:,j,i) = u_init |
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| 61 | v(:,j,i) = v_init |
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| 62 | ENDDO |
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| 63 | ENDDO |
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| 64 | ENDIF |
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| 65 | |
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| 66 | ! |
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[1] | 67 | !-- Compute the u-component. |
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| 68 | DO i = nxl, nxr |
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| 69 | DO j = nys, nyn |
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| 70 | x = ( i - ic - 0.5 ) * dx |
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| 71 | y = ( j - jc ) * dy |
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| 72 | radius = SQRT( x**2 + y**2 ) |
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| 73 | IF ( radius <= 2.0 * rc ) THEN |
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| 74 | betrag = radius / ( 2.0 * rc ) * 0.08 |
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| 75 | ELSEIF ( radius > 2.0 * rc .AND. radius < 8.0 * rc ) THEN |
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| 76 | betrag = 0.08 * EXP( -( radius - 2.0 * rc ) / 2.0 ) |
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| 77 | ELSE |
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| 78 | betrag = 0.0 |
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| 79 | ENDIF |
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| 80 | |
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| 81 | IF ( x == 0.0 ) THEN |
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| 82 | IF ( y > 0.0 ) THEN |
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| 83 | alpha = pi / 2.0 |
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| 84 | ELSEIF ( y < 0.0 ) THEN |
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| 85 | alpha = 3.0 * pi / 2.0 |
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| 86 | ENDIF |
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| 87 | ELSE |
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| 88 | IF ( x < 0.0 ) THEN |
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| 89 | alpha = ATAN( y / x ) + pi |
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| 90 | ELSE |
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| 91 | IF ( y < 0.0 ) THEN |
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| 92 | alpha = ATAN( y / x ) + 2.0 * pi |
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| 93 | ELSE |
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| 94 | alpha = ATAN( y / x ) |
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| 95 | ENDIF |
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| 96 | ENDIF |
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| 97 | ENDIF |
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| 98 | |
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| 99 | uw = -SIN( alpha ) * betrag |
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| 100 | |
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| 101 | DO k = kc1, kc2 |
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| 102 | u(k,j,i) = u(k,j,i) + uw |
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| 103 | ENDDO |
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| 104 | ENDDO |
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| 105 | ENDDO |
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| 106 | |
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| 107 | ! |
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| 108 | !-- Compute the v-component. |
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| 109 | DO i = nxl, nxr |
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| 110 | DO j = nys, nyn |
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| 111 | x = ( i - ic ) * dx |
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| 112 | y = ( j - jc - 0.5) * dy |
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| 113 | radius = SQRT( x**2 + y**2 ) |
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| 114 | IF ( radius <= 2.0 * rc ) THEN |
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| 115 | betrag = radius / ( 2.0 * rc ) * 0.08 |
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| 116 | ELSEIF ( radius > 2.0 * rc .AND. radius < 8.0 * rc ) THEN |
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| 117 | betrag = 0.08 * EXP( -( radius - 2.0 * rc ) / 2.0 ) |
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| 118 | ELSE |
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| 119 | betrag = 0.0 |
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| 120 | ENDIF |
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| 121 | |
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| 122 | IF ( x == 0.0 ) THEN |
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| 123 | IF ( y > 0.0 ) THEN |
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| 124 | alpha = pi / 2.0 |
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| 125 | ELSEIF ( y < 0.0 ) THEN |
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| 126 | alpha = 3.0 * pi / 2.0 |
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| 127 | ENDIF |
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| 128 | ELSE |
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| 129 | IF ( x < 0.0 ) THEN |
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| 130 | alpha = ATAN( y / x ) + pi |
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| 131 | ELSE |
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| 132 | IF ( y < 0.0 ) THEN |
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| 133 | alpha = ATAN( y / x ) + 2.0 * pi |
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| 134 | ELSE |
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| 135 | alpha = ATAN( y / x ) |
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| 136 | ENDIF |
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| 137 | ENDIF |
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| 138 | ENDIF |
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| 139 | |
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| 140 | vw = COS( alpha ) * betrag |
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| 141 | |
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| 142 | DO k = kc1, kc2 |
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| 143 | v(k,j,i) = v(k,j,i) + vw |
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| 144 | ENDDO |
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| 145 | ENDDO |
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| 146 | ENDDO |
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| 147 | |
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| 148 | ! |
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| 149 | !-- Exchange of boundary values for the velocities. |
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[75] | 150 | CALL exchange_horiz( u ) |
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| 151 | CALL exchange_horiz( v ) |
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[1] | 152 | ! |
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| 153 | !-- Make velocity field nondivergent. |
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| 154 | n_sor = nsor_ini |
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| 155 | CALL pres |
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| 156 | n_sor = nsor |
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| 157 | |
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| 158 | END SUBROUTINE init_rankine |
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