[85] | 1 | pro gravitwaveprof |
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| 2 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 3 | |
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| 4 | ; |
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| 5 | ; faire avant api avec kappa 3.9 |
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| 6 | ; |
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| 7 | |
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| 8 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 9 | path='../TESTGW/' |
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| 10 | path='/tmp7/aslmd/' |
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| 11 | experiment='mcd_lt16_rcpcst' |
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| 12 | ;experiment='mcd_lt16' |
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| 13 | ;experiment='short_mcd_lt16_rcpcst' |
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| 14 | ;experiment='short_mcd_lt16' |
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| 15 | ;experiment='short_mcd_lt16_calcprho' |
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| 16 | ;experiment='mcd_lt16_calcprho' |
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| 17 | ;experiment='short_mcd_lt16_calcprho_tot' |
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| 18 | ;experiment='colder_gcm_add_short' |
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| 19 | ;experiment='colder_gcm_add' |
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| 20 | experiment='' |
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| 21 | ;experiment='wind15' |
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| 22 | ;experiment='wind20c' |
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| 23 | ;experiment='colder_gcm_add_3.9_fine_rad_mountain' |
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| 24 | experiment='test' |
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| 25 | file=path+experiment+'_wrfout_d01_9999-09-09_09:00:00_z' |
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| 26 | charvar='W' & charvarc='W' |
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| 27 | charvar='tk' & charvarc='W' |
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| 28 | charvar='tk' & charvarc='W' & cond=1 |
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| 29 | charvar='tpot' & charvarc='tpot' |
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| 30 | ;charvar='PTOT' & charvarc='PTOT' |
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| 31 | charvar='tk' & charvarc='tk' |
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| 32 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 33 | nts=1 & nte=15 & nxs=0 & nxe=59 |
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| 34 | nts=3 & nte=nts & nxs=999 & nxe=999 ;; moyenne ;; attention a la montagne !!! |
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| 35 | nts=4 & nte=nts & nxs=31 & nxe=nxs ;; AU CENTRE ! sinon choisir le point en traçant de 0a 59 |
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| 36 | nts=1 & nte=nts & nxs=0 & nxe=59 |
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| 37 | nts=4 & nte=nts & nxs=0 & nxe=59 |
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| 38 | nts=1 & nte=15 & nxs=31 & nxe=31 |
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| 39 | nts=1 & nte=15 & nxs=45 & nxe=45 |
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| 40 | nts=9 & nte=9 & nxs=0 & nxe=59 |
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| 41 | nts=1 & nte=13 & nxs=59 & nxe=59 |
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| 42 | nts=8 & nte=8 & nxs=0 & nxe=121 |
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| 43 | nts=1 & nte=9 & nxs=59 & nxe=59 |
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| 44 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 45 | ; |
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| 46 | ; |
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| 47 | ; |
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| 48 | what_I_plot=0. & overcontour=0. |
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| 49 | ;SPAWN, '\rm param_plot.idl ; cp gravitwave_inc2.pro param_plot.idl' |
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| 50 | ; |
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| 51 | ; |
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| 52 | ; |
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| 53 | getcdf, $ |
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| 54 | file=file, $ |
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| 55 | charvar=charvar, $ |
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| 56 | invar=invar |
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| 57 | getcdf, $ |
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| 58 | file=file, $ |
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| 59 | charvar=charvarc, $ |
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| 60 | invar=invarc |
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| 61 | getcdf, $ |
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| 62 | file=file, $ |
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| 63 | charvar='vert', $ |
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| 64 | invar=vert |
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| 65 | getcdf, $ |
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| 66 | file=file, $ |
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| 67 | charvar='PTOT', $ |
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| 68 | invar=columnp |
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| 69 | ; |
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| 70 | ; |
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| 71 | ; |
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| 72 | for nt=nts,nte do begin |
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| 73 | for nx=nxs,nxe do begin |
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| 74 | ; |
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| 75 | zefile=experiment+'_'+charvar+'_'+string(nt+100,'(I0)')+'_'+string(nx+100,'(I0)') |
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| 76 | ; |
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| 77 | ; |
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| 78 | ; |
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| 79 | PS_Start, filename=zefile+'.ps' |
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| 80 | print, zefile+'.ps' |
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| 81 | !P.Charsize = 1.2 |
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| 82 | !p.charthick = 2.0 |
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| 83 | !p.thick = 2.0 |
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| 84 | !x.thick = 2.0 |
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| 85 | !y.thick = 2.0 |
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| 86 | ; |
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| 87 | ; |
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| 88 | ; |
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| 89 | ;what_I_plot = reform(invar(*,1,*,nt)) |
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| 90 | what_I_plot = reform(invar(*,59,*,nt)) |
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| 91 | |
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| 92 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 93 | file=path+experiment+'/input_sounding' & header='' & nlines_header=1 & ncol = 5 |
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| 94 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 95 | nlines = FILE_LINES(file)-nlines_header & data=FLTARR(ncol,nlines) |
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| 96 | OPENR, lun, file, /GET_LUN & READF, lun, header & READF, lun, data & CLOSE, lun & FREE_LUN, lun |
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| 97 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 98 | mcd_column = reform(data(0,*)) |
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| 99 | calc_tpot = reform(data(1,*)) |
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| 100 | |
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| 101 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 102 | file=path+experiment+'/input_therm' & ncol = 5 |
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| 103 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 104 | nlines = FILE_LINES(file) & data=FLTARR(ncol,nlines) |
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| 105 | OPENR, lun, file, /GET_LUN & READF, lun, data & CLOSE, lun & FREE_LUN, lun |
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| 106 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; |
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| 107 | pressure = reform(data(2,*)) |
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| 108 | mcd_tpot = reform(data(4,*)) |
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| 109 | |
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| 110 | if (nx lt 999) then begin |
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| 111 | what_I_plot = reform(what_I_plot(nx,*)) |
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| 112 | endif else begin |
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| 113 | what_I_plot = TOTAL(what_I_plot,1) / n_elements(reform(what_I_plot(*,0))) |
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| 114 | endelse |
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| 115 | ;;;;;;;;;;; |
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| 116 | ;;;;;;;;;;; |
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| 117 | ;;;;;;;;;;; |
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| 118 | column = vert/1000. |
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| 119 | overplot_column = mcd_column/1000. |
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| 120 | alt = [20.,150.] |
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| 121 | alt = [40.,100.] |
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| 122 | alt = [40.,80.] |
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| 123 | ;hache = 8. |
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| 124 | ;column = -hache*alog(reform(columnp(nx,1,*,nt))/610.) |
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| 125 | ;overplot_column = -hache*alog(pressure/610.) |
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| 126 | ;column = reform(columnp(nx,1,*,nt)) |
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| 127 | ;overplot_column = pressure |
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| 128 | ;alt = [1.e2,1.e-3] |
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| 129 | ;;;; mettre profile en log |
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| 130 | ;;;;;;;;;;; |
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| 131 | ;;;;;;;;;;; |
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| 132 | mention = '' |
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| 133 | SPAWN, '\rm param_plot.idl' |
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| 134 | minfield_init = 80. ;100. |
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| 135 | maxfield_init = 190. ;250. |
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| 136 | title_axis = ['Temperature (K)','Altitude (km)'] |
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| 137 | ;title_axis = ['Temperature (K)','Pressure (Pa)'] |
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| 138 | overplot = mcd_tpot |
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| 139 | ;;;;;;;;;;; |
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| 140 | |
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| 141 | ;; calculer la CAPE ? Tsat - Tenv / Tenv |
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| 142 | |
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| 143 | |
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| 144 | ;what_I_plot = pressure |
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| 145 | ; what_I_plot = calc_tpot |
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| 146 | ;overplot = alog(overplot) / alog(10.) |
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| 147 | ;overplot = overplot[where(overplot lt 35.)] ;; evite les valeurs impossibles |
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| 148 | ;what_I_plot = alog(what_I_plot) / alog(10.) |
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| 149 | ;minfield_init = -5. |
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| 150 | ;maxfield_init = 3. |
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| 151 | ; ;;tpot |
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| 152 | ; minfield_init = 2. |
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| 153 | ; maxfield_init = 4. |
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| 154 | ;what_I_plot = 100. * abs(calc_tpot - overplot) / overplot |
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| 155 | ;minfield_init = 0.000001 |
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| 156 | ;maxfield_init = 100. |
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| 157 | |
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| 158 | profile, $ |
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| 159 | what_I_plot, $ ; 1D vertical profile |
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| 160 | column, $ ; altitudes |
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| 161 | alt=alt, $ ; altitude range [altmin, altmax] |
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| 162 | minfield=minfield_init, $ ; minimum value of plotted field (=0: calculate) |
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| 163 | maxfield=maxfield_init, $ ; maximum value of plotted field (=0: calculate) |
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| 164 | inprofile=overplot, $ ; another vertical profile to overplot |
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| 165 | incolumn=overplot_column, $ ; altitudes of the other vertical profile (in case /= column) |
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| 166 | ; discrete=discrete, $ ; show the profile points (= type of points in !psym) |
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| 167 | ; title_plot=title_user, $ ; title of the plot ('Profile' is default) |
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| 168 | title_axis=title_axis, $ ; title of the [x,y] axis (['Field','Altitude'] is default) |
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| 169 | mention=mention ; add text precision within the plot window (default is nothing or '') |
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| 170 | |
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| 171 | ;;; sponge layer |
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| 172 | ;w=where(FINITE(overplot) ne 0) |
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| 173 | ;oplot, [minfield_init,maxfield_init], [max(overplot_column[w])-50.,max(overplot_column[w])-50.], linestyle=1 |
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| 174 | |
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| 175 | ;column = columnp |
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| 176 | ;@tempcond.inc |
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| 177 | ;yeye = reform(overplot(nx,1,*,nt)) |
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| 178 | ;;w = where(yeye le 0.) & yeye[w] = !VALUES.F_NAN |
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| 179 | ;;oplot, yeye, vert/1000., linestyle=1 |
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| 180 | |
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| 181 | @tempcond.inc |
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| 182 | overplot = reform(overplot(nx,1,*,nt)) |
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| 183 | oplot, overplot, overplot_column, linestyle=1 |
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| 184 | |
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| 185 | ;calc_tk = calc_tpot * (pressure/610.)^(1/4.4) |
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| 186 | ;oplot, calc_tk, column, linestyle=3 |
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| 187 | |
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| 188 | PS_End, /PNG |
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| 189 | endfor |
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| 190 | endfor |
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| 191 | end |
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