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Commit 40a5f1f7 authored by WAUTELET Philippe's avatar WAUTELET Philippe
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Philippe 02/10/2017: IO: split NAM_OUTPUT in NAM_BACKUP and NAM_OUTPUT

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with 23 additions and 23 deletions
......@@ -16,4 +16,4 @@
/
&NAM_DYN XSEGLEN =1080., XASSELIN = 0.2, LCORIO = F,
XALKTOP = 0.005, XALZBOT = 12570., LNUMDIFU =.T. /
&NAM_OUTPUT XBAK_TIME(1,1) = 360., XBAK_TIME(1,2) = 720., XBAK_TIME(1,3) = 1080. /
&NAM_BACKUP XBAK_TIME(1,1) = 360., XBAK_TIME(1,2) = 720., XBAK_TIME(1,3) = 1080. /
......@@ -16,4 +16,4 @@
/
&NAM_DYN XSEGLEN =1080., XASSELIN = 0.2, LCORIO = F,
XALKTOP = 0.005, XALZBOT = 12570., LNUMDIFU =.T. /
&NAM_OUTPUT XBAK_TIME(1,1) = 360., XBAK_TIME(1,2) = 720., XBAK_TIME(1,3) = 1080. /
&NAM_BACKUP XBAK_TIME(1,1) = 360., XBAK_TIME(1,2) = 720., XBAK_TIME(1,3) = 1080. /
......@@ -16,4 +16,4 @@
/
&NAM_DYN XSEGLEN =1080., XASSELIN = 0.2, LCORIO = F,
XALKTOP = 0.005, XALZBOT = 12570., LNUMDIFU =.F. /
&NAM_OUTPUT XBAK_TIME(1,1) = 360., XBAK_TIME(1,2) = 720., XBAK_TIME(1,3) = 1080. /
&NAM_BACKUP XBAK_TIME(1,1) = 360., XBAK_TIME(1,2) = 720., XBAK_TIME(1,3) = 1080. /
......@@ -78,7 +78,7 @@ XALKTOP = 0.005 ; maximum value of the Rayleigh damping (in s-1)
XALZBOT = 12570. ; height (in meter) in the physical space of the upper absorbing layer base
LNUMDIFU =.T. ; switch to activate the numerical diffusion for momentum
&NAM_OUTPUT
&NAM_BACKUP
XBAK_TIME(1,1) = 360. ; an array of increments (in second) from the beginning of the segment
to the instant where the i-th fields output on FM-files is realized by model "m"
XBAK_TIME(1,2) = 720.
......
......@@ -18,5 +18,5 @@
&NAM_DYN XSEGLEN = 1000., XASSELIN = 0.2, LCORIO = F,
XALKTOP = 0.005, XALZBOT = 12570.,
LNUMDIFU =.F. /
&NAM_OUTPUT XBAK_TIME(1,1) = 500., XBAK_TIME(1,2) = 1000. /
&NAM_BACKUP XBAK_TIME(1,1) = 500., XBAK_TIME(1,2) = 1000. /
......@@ -18,5 +18,5 @@
&NAM_DYN XSEGLEN = 1000., XASSELIN = 0.2, LCORIO = F,
XALKTOP = 0.005, XALZBOT = 12570.,
LNUMDIFU =.F. /
&NAM_OUTPUT XBAK_TIME(1,1) = 500., XBAK_TIME(1,2) = 1000. /
&NAM_BACKUP XBAK_TIME(1,1) = 500., XBAK_TIME(1,2) = 1000. /
......@@ -18,5 +18,5 @@
&NAM_DYN XSEGLEN = 1000., XASSELIN = 0.2, LCORIO = F,
XALKTOP = 0.005, XALZBOT = 12570.,
LNUMDIFU =.F. /
&NAM_OUTPUT XBAK_TIME(1,1) = 500., XBAK_TIME(1,2) = 1000. /
&NAM_BACKUP XBAK_TIME(1,1) = 500., XBAK_TIME(1,2) = 1000. /
......@@ -69,7 +69,7 @@ XALKTOP = 0.005 ; maximum value of the Rayleigh damping (in s-1)
XALZBOT = 12570. ; height (in meter) in the physical space of the upper absorbing layer base
LNUMDIFU =.F. ; switch to activate the numerical diffusion for momentum
&NAM_OUTPUT
&NAM_BACKUP
XBAK_TIME(1,1) = 500. ; an array of increments (in second) from the beginning of the segment
to the instant where the i-th fields output on FM-files is realized by model "m"
XBAK_TIME(1,2) = 1000.
......@@ -22,6 +22,6 @@
&NAM_DYN XSEGLEN = 1800.,
XASSELIN = 0.2, LCORIO = F,
LNUMDIFU = T /
&NAM_OUTPUT XBAK_TIME(1,1) = 450., XBAK_TIME(1,2) = 900.,
&NAM_BACKUP XBAK_TIME(1,1) = 450., XBAK_TIME(1,2) = 900.,
XBAK_TIME(1,3) = 1350., XBAK_TIME(1,4) = 1800. /
......@@ -22,6 +22,6 @@
&NAM_DYN XSEGLEN = 1800.,
XASSELIN = 0.2, LCORIO = F,
LNUMDIFU = T /
&NAM_OUTPUT XBAK_TIME(1,1) = 450., XBAK_TIME(1,2) = 900.,
&NAM_BACKUP XBAK_TIME(1,1) = 450., XBAK_TIME(1,2) = 900.,
XBAK_TIME(1,3) = 1350., XBAK_TIME(1,4) = 1800. /
......@@ -23,6 +23,6 @@
&NAM_DYN XSEGLEN = 1800.,
XASSELIN = 0.2, LCORIO = F,
LNUMDIFU = T /
&NAM_OUTPUT XBAK_TIME(1,1) = 450., XBAK_TIME(1,2) = 900.,
&NAM_BACKUP XBAK_TIME(1,1) = 450., XBAK_TIME(1,2) = 900.,
XBAK_TIME(1,3) = 1350., XBAK_TIME(1,4) = 1800. /
......@@ -87,7 +87,7 @@ LCORIO = F ; switch for the Coriolis parameters
.TRUE. the Earth rotation is taken into account )
LNUMDIFU =.T. ; switch to activate the numerical diffusion for momentum
&NAM_OUTPUT
&NAM_BACKUP
XBAK_TIME(1,1) = 450. ; an array of increments (in second) from the beginning of the segment
to the instant where the i-th fields output on FM-files is realized by model "m"
XBAK_TIME(1,2) = 900.
......
......@@ -26,7 +26,7 @@
&NAM_DYN XSEGLEN = 40.,
LCORIO = F, LNUMDIFU = F,
XALKTOP = 0.01, XALZBOT = 14000. /
&NAM_OUTPUT
&NAM_BACKUP
XBAK_TIME(1,1) = 40., XBAK_TIME(1,2) = 10.,
XBAK_TIME(1,3) = 20., XBAK_TIME(1,4) = 30. /
&NAM_BUDGET CBUTYPE='CART', XBULEN=200.,
......
......@@ -25,7 +25,7 @@
&NAM_DYN XSEGLEN = 40.,
LCORIO = F, LNUMDIFU = T,
XALKTOP = 0.01, XALZBOT = 14000. /
&NAM_OUTPUT XBAK_TIME(1,1) = 10., XBAK_TIME(1,2) = 20.,
&NAM_BACKUP XBAK_TIME(1,1) = 10., XBAK_TIME(1,2) = 20.,
XBAK_TIME(1,3) = 30., XBAK_TIME(1,4) = 40. /
&NAM_BUDGET CBUTYPE='CART', XBULEN=200.,
NBUKL=2, NBUKH=51, NBUIL=15, NBUIH=64, NBUJL=15, NBUJH=68,
......
......@@ -25,7 +25,7 @@
&NAM_DYN XSEGLEN = 40.,
LCORIO = F, LNUMDIFU = F,
XALKTOP = 0.01, XALZBOT = 14000. /
&NAM_OUTPUT XBAK_TIME(1,1) = 10., XBAK_TIME(1,2) = 20.,
&NAM_BACKUP XBAK_TIME(1,1) = 10., XBAK_TIME(1,2) = 20.,
XBAK_TIME(1,3) = 30., XBAK_TIME(1,4) = 40. /
&NAM_BUDGET CBUTYPE='CART', XBULEN=200.,
NBUKL=2, NBUKH=51, NBUIL=15, NBUIH=64, NBUJL=15, NBUJH=68,
......
......@@ -121,7 +121,7 @@ LCORIO = F ; switch for the Coriolis parameters
.TRUE. the Earth rotation is taken into account )
LNUMDIFU =.T. ; switch to activate the numerical diffusion for momentum
&NAM_OUTPUT
&NAM_BACKUP
XBAK_TIME(1,1) = 10. ; an array of increments (in second) from the beginning of the segment
to the instant where the i-th fields output on FM-files is realized by model "m"
XBAK_TIME(1,2) = 20.
......
&NAM_CONFIO LCDF4=T, LLFIOUT=T, LLFIREAD=F /
&NAM_CONFIO LCDF4=T, LLFIOUT=F, LLFIREAD=F, NIO_VERB=5, NGEN_VERB=5 /
&NAM_CONFZ
! NZ_VERB=5 , NZ_PROC=0 , NB_PROCIO_R=1 , NB_PROCIO_W=8
/
......@@ -11,7 +11,7 @@
&NAM_ADVn CUVW_ADV_SCHEME="CEN4TH",CMET_ADV_SCHEME = "PPM_01", CSV_ADV_SCHEME = "PPM_01" CTEMP_SCHEME="LEFR"/
&NAM_PARAMn CCLOUD = "KESS", CTURB = "TKEL", CRAD = "ECMW",
CDCONV = "KAFR",CSCONV="KAFR" /
&NAM_PARAM_RADn XDTRAD = 3600., XDTRAD_CLONLY = 3600., NRAD_COLNBR = 400 /
&NAM_PARAM_RADn XDTRAD = 300., XDTRAD_CLONLY = 300., NRAD_COLNBR = 400 NRAD_DIAG=5 /
&NAM_PARAM_KAFRn XDTCONV = 300., NICE = 1 LREFRESH_ALL = T,LDOWN = T /
&NAM_LBCn CLBCX = 2*"OPEN", CLBCY = 2*"OPEN" /
&NAM_TURBn CTURBLEN = "BL89", CTURBDIM = "1DIM", LSUBG_COND = F /
......@@ -24,7 +24,7 @@
&NAM_DYN XSEGLEN = 300., LCORIO = T, LNUMDIFU = T,
XALKTOP = 0.001, XALZBOT = 14500. /
&NAM_NESTING NDAD(2) = 1, NDTRATIO(2) = 4, XWAY(2) = 2. /
&NAM_OUTPUT XBAK_TIME(1,1) = 300. /
&NAM_BACKUP XBAK_TIME(1,1) = 300. /
&NAM_DIAG_SURFn /
&NAM_ISBAn CSCOND="NP89", CALBEDO="DRY",CROUGH='NONE',
CC1DRY='DEF', CSOILFRZ='DEF', CDIFSFCOND='DEF', CSNOWRES='DEF' /
......
......@@ -25,7 +25,7 @@
&NAM_DYN XSEGLEN = 300., LCORIO = T, LNUMDIFU = T,
XALKTOP = 0.001, XALZBOT = 14500. /
&NAM_NESTING NDAD(2) = 1, NDTRATIO(2) = 4, XWAY(2) = 2. /
&NAM_OUTPUT XBAK_TIME(1,1) = 300. /
&NAM_BACKUP XBAK_TIME(1,1) = 300. /
&NAM_DIAG_SURFn /
&NAM_ISBAn CSCOND="NP89", CALBEDO="DRY",CROUGH='NONE',
CC1DRY='DEF', CSOILFRZ='DEF', CDIFSFCOND='DEF', CSNOWRES='DEF' /
......
......@@ -26,7 +26,7 @@
&NAM_DYN XSEGLEN = 300., LCORIO = T, LNUMDIFU = F,
XALKTOP = 0.001, XALZBOT = 14500. /
&NAM_NESTING NDAD(2) = 1, NDTRATIO(2) = 3, XWAY(2) = 2. /
&NAM_OUTPUT XBAK_TIME(1,1) = 300. /
&NAM_BACKUP XBAK_TIME(1,1) = 300. /
&NAM_DIAG_SURFn /
&NAM_ISBAn CSCOND="NP89", CALBEDO="DRY",CROUGH='NONE',
CC1DRY='DEF', CSOILFRZ='DEF', CDIFSFCOND='DEF', CSNOWRES='DEF' /
......
......@@ -5,8 +5,8 @@
NRIMX = 0, NRIMY = 0, LVE_RELAX = T, XT4DIFU = 1500. /
&NAM_ADVn CUVW_ADV_SCHEME="CEN4TH",CMET_ADV_SCHEME = "PPM_01", CSV_ADV_SCHEME = "PPM_01" CTEMP_SCHEME="LEFR"/
&NAM_PARAMn CCLOUD = "KESS", CTURB = "TKEL", CRAD = "ECMW", CDCONV = "KAFR" /
&NAM_PARAM_RADn XDTRAD = 1800., XDTRAD_CLONLY = 1800., LCLEAR_SKY = F,
NRAD_COLNBR = 400 /
&NAM_PARAM_RADn XDTRAD = 300., XDTRAD_CLONLY = 300., LCLEAR_SKY = F,
NRAD_COLNBR = 400 NRAD_DIAG=5 /
&NAM_PARAM_KAFRn XDTCONV = 300., NICE = 1, LREFRESH_ALL = T,
LDOWN = T /
&NAM_LBCn CLBCX = 2*"OPEN", CLBCY = 2*"OPEN", XCPHASE = 20. /
......
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