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revision 1.3 by heimbach, Fri Jul 15 20:08:42 2005 UTC revision 1.10 by heimbach, Tue Jan 15 21:37:14 2008 UTC
# Line 1  Line 1 
1  \section{EXF: The external forcing package  \subsection{EXF: The external forcing package
2  \label{sec:pkg:exf}}  \label{sec:pkg:exf}}
3  \begin{rawhtml}  \begin{rawhtml}
4  <!-- CMIREDIR:sectionexf: -->  <!-- CMIREDIR:sectionexf: -->
5  \end{rawhtml}  \end{rawhtml}
6    
7    Authors: Patrick Heimbach and Dimitris Menemenlis
8    
9  \subsection{Introduction  \subsubsection{Introduction
10  \label{sec:pkg:exf:intro}}  \label{sec:pkg:exf:intro}}
11    
12  The external forcing package, in conjunction with the  The external forcing package, in conjunction with the
# Line 31  output is listed in Section \ref{sec:pkg Line 32  output is listed in Section \ref{sec:pkg
32    
33  %----------------------------------------------------------------------  %----------------------------------------------------------------------
34    
35  \subsection{EXF configuration, compiling \& running}  \subsubsection{EXF configuration, compiling \& running}
36    
37  \subsubsection{Compile-time options  \paragraph{Compile-time options
38  \label{sec:pkg:exf:config}}  \label{sec:pkg:exf:config}}
39    ~
40    
41  As with all MITgcm packages, EXF can be turned on or off at compile time  As with all MITgcm packages, EXF can be turned on or off at compile time
42  using the \texttt{packages.conf} file or the \texttt{genmake2}  %
43  \texttt{-enable=exf} or \texttt{-disable=exf} switches.  \begin{itemize}
44    %
45    \item
46    using the \texttt{packages.conf} file by adding \texttt{exf} to it,
47    %
48    \item
49    or using \texttt{genmake2} adding
50    \texttt{-enable=exf} or \texttt{-disable=exf} switches
51    %
52    \item
53    \textit{required packages and CPP options}: \\
54    EXF requires the calendar package \texttt{cal} to be enabled;
55    no additional CPP options are required.
56    %
57    \end{itemize}
58    (see Section \ref{sect:buildingCode}).
59    
60  Parts of the exf code can be enabled or disabled at compile time  Parts of the EXF code can be enabled or disabled at compile time
61  via CPP preprocessor flags. These options are set in either  via CPP preprocessor flags. These options are set in either
62  \texttt{EXF\_OPTIONS.h} or in \texttt{ECCO\_CPPOPTIONS.h}.  \texttt{EXF\_OPTIONS.h} or in \texttt{ECCO\_CPPOPTIONS.h}.
63  Table \ref{tab:pkg:exf:cpp} summarizes these options.  Table \ref{tab:pkg:exf:cpp} summarizes these options.
64    
65  \begin{table}[b!]  \begin{table}[b!]
66    \centering
67    \label{tab:pkg:exf:cpp}    \label{tab:pkg:exf:cpp}
68    {\footnotesize    {\footnotesize
69      \begin{tabular}{|l|l|}      \begin{tabular}{|l|l|}
# Line 68  Table \ref{tab:pkg:exf:cpp} summarizes t Line 86  Table \ref{tab:pkg:exf:cpp} summarizes t
86        \hline        \hline
87           \multicolumn{2}{|c|}{\textit{used in conjunction with relaxation to prescribed (climatological) fields}} \\           \multicolumn{2}{|c|}{\textit{used in conjunction with relaxation to prescribed (climatological) fields}} \\
88           \hline           \hline
         \texttt{ALLOW\_CLIMTEMP\_RELAXATION} &  
           relaxation to 3-D temperature climatology \\  
         \texttt{ALLOW\_CLIMSALT\_RELAXATION} &  
           relaxation to 3-D salinity climatology \\  
89          \texttt{ALLOW\_CLIMSST\_RELAXATION} &          \texttt{ALLOW\_CLIMSST\_RELAXATION} &
90            relaxation to 2-D SST climatology \\            relaxation to 2-D SST climatology \\
91          \texttt{ALLOW\_CLIMSSS\_RELAXATION} &          \texttt{ALLOW\_CLIMSSS\_RELAXATION} &
# Line 93  Table \ref{tab:pkg:exf:cpp} summarizes t Line 107  Table \ref{tab:pkg:exf:cpp} summarizes t
107  \subsubsection{Run-time parameters  \subsubsection{Run-time parameters
108  \label{sec:pkg:exf:runtime}}  \label{sec:pkg:exf:runtime}}
109    
110  Run-time parameters are set in files \texttt{data.pkg},  Run-time parameters are set in files
111  and \texttt{data.pkg\_clim} (for relaxation/climatological fields)  \texttt{data.pkg}, \texttt{data.exf}, and
112    \texttt{data.exf\_clim} (for relaxation/climatological fields)
113  which are read in \texttt{exf\_readparms.F}.  which are read in \texttt{exf\_readparms.F}.
114  Run-time parameters may be broken into 2 categories:  Run-time parameters may be broken into 3 categories:
115  (i) general flags and parameters, and  (i) switching on/off the package at runtime,
116  (ii) attributes for each forcing and climatological field.  (ii) general flags and parameters, and
117    (iii) attributes for each forcing and climatological field.
118    
119  \paragraph{General flags and parameters}  \paragraph{Enabling the package}
120    ~ \\
121  ~  %
122    A package is usually switched on/off at runtime by setting
123    (e.g. for EXF) \texttt{useEXF = .TRUE.} in \texttt{data.pkg}.
124    For EXF this flag is omitted, i.e. EXF is always ON if it is compiled.
125    
126    \paragraph{General flags and parameters}
127    ~ \\
128    %
129  \begin{table}[h!]  \begin{table}[h!]
130    \centering
131    \label{tab:pkg:exf:runtime_flags}    \label{tab:pkg:exf:runtime_flags}
132    {\footnotesize    {\footnotesize
133      \begin{tabular}{|l|c|l|}      \begin{tabular}{|l|c|l|}
# Line 126  Run-time parameters may be broken into 2 Line 149  Run-time parameters may be broken into 2
149             max. allowed wind stress $N/m^2$ \\             max. allowed wind stress $N/m^2$ \\
150          exf\_albedo & \texttt{0.1} &          exf\_albedo & \texttt{0.1} &
151            surface albedo used to compute downward vs. net radiative fluxes \\            surface albedo used to compute downward vs. net radiative fluxes \\
152            climtempfreeze & \texttt{-1.9} &
153              ??? \\
154            ocean\_emissivity & \texttt{} &
155              longwave ocean-surface emissivity \\
156            ice\_emissivity & \texttt{} &
157              longwave seaice emissivity \\
158            snow\_emissivity & \texttt{} &
159              longwave  snow  emissivity \\
160            exf\_iceCd & \texttt{1.63E-3} &
161              drag coefficient over sea-ice \\
162            exf\_iceCe & \texttt{1.63E-3} &
163              evaporation transfer coeff. over sea-ice \\
164            exf\_iceCh & \texttt{1.63E-3} &
165              sensible heat transfer coeff. over sea-ice \\
166            exf\_scal\_BulkCdn & \texttt{1.} &
167              overall scaling of neutral drag coeff. \\
168            useStabilityFct\_overIce  & \texttt{.FALSE.} &
169              compute turbulent transfer coeff. over sea-ice \\
170            readStressOnAgrid & \texttt{.FALSE.} &
171              read wind-streess located on model-grid, A-grid point \\
172            readStressOnCgrid & \texttt{.FALSE.} &
173              read wind-streess located on model-grid, C-grid point \\
174            useRelativeWind & \texttt{.FALSE.} &
175              subtract [U/V]VEL or [U/VICE from U/V]WIND before \\
176            ~ & ~ &  computing [U/V]STRESS \\
177            zref & \texttt{10.} &
178              reference height \\
179            hu & \texttt{10.} &
180              height of mean wind \\
181            ht & \texttt{2.} &
182              height of mean temperature and rel. humidity \\
183            umin & \texttt{0.5} &
184              minimum absolute wind speed for computing Cd \\
185            atmrho & \texttt{1.2} &
186              mean atmospheric density [kg/m\^3] \\
187            atmcp & \texttt{1005.} &
188              mean atmospheric specific heat [J/kg/K] \\
189            cdrag\_[n] & \texttt{???} &
190              n = 1,2,3; parameters for drag coeff. function \\
191            cstanton\_[n] & \texttt{???} &
192              n = 1,2; parameters for Stanton number function \\
193            cdalton & \texttt{???} &
194              parameter for Dalton number function \\
195            flamb & \texttt{2500000.} &
196              latent heat of evaporation [J/kg] \\
197            flami & \texttt{334000.} &
198              latent heat of melting of pure ice [J/kg] \\
199            zolmin & \texttt{-100.} &
200              minimum stability parameter \\
201            cvapor\_fac & \texttt{640380.} &
202              ~ \\
203            cvapor\_exp & \texttt{5107.4} &
204              ~ \\
205            cvapor\_fac\_ice & \texttt{11637800.} &
206              ~ \\
207            cvapor\_fac\_ice & \texttt{5897.8} &
208              ~ \\
209            humid\_fac & \texttt{0.606} &
210              parameter for virtual temperature calculation \\
211            gamma\_blk & \texttt{0.010} &
212              adiabatic lapse rate \\
213            saltsat & \texttt{0.980} &
214              reduction of saturation vapor pressure over salt-water \\          
215            psim\_fac & \texttt{5.} &
216              ~ \\          
217            exf\_monFreq & \texttt{monitorFreq} &
218              output frequency [s] \\
219          exf\_iprec  & \texttt{32} &          exf\_iprec  & \texttt{32} &
220            precision of input fields (32-bit or 64-bit) \\            precision of input fields (32-bit or 64-bit) \\
221          exf\_yftype & \texttt{'RL'} &          exf\_yftype & \texttt{'RL'} &
# Line 137  Run-time parameters may be broken into 2 Line 227  Run-time parameters may be broken into 2
227  \end{table}  \end{table}
228    
229    
230  \paragraph{Field attributes} ~ \\  \paragraph{Field attributes}
231    ~ \\
232  %  %
233  All EXF fields are listed in Section \ref{sec:pkg:exf:fields_units}.  All EXF fields are listed in Section \ref{sec:pkg:exf:fields_units}.
234  Each field has a number of attributes which can be customized.  Each field has a number of attributes which can be customized.
# Line 156  prepend the field name to the listed att Line 247  prepend the field name to the listed att
247  %  %
248    
249  \begin{table}[h!]  \begin{table}[h!]
250    \centering
251    \label{tab:pkg:exf:runtime_attributes}    \label{tab:pkg:exf:runtime_attributes}
252    {\footnotesize    {\footnotesize
253      \begin{tabular}{|l|c|l|}      \begin{tabular}{|l|c|l|}
# Line 231  supplied as well. Line 323  supplied as well.
323    
324  %----------------------------------------------------------------------  %----------------------------------------------------------------------
325    
326  \subsection{EXF input fields and units  \subsubsection{EXF bulk formulae
327    \label{sec:pkg:exf:bulk_formulae}}
328    
329    T.B.D. (cross-ref. to parameter list table)
330    
331    %----------------------------------------------------------------------
332    
333    \subsubsection{EXF input fields and units
334  \label{sec:pkg:exf:fields_units}}  \label{sec:pkg:exf:fields_units}}
335    
336  The following list is taken from the header file \texttt{exf\_fields.h}.  The following list is taken from the header file \texttt{exf\_fields.h}.
# Line 241  Output fields which EXF provides to the Line 340  Output fields which EXF provides to the
340  \textbf{fu}, \textbf{fv}, \textbf{Qnet}, \textbf{Qsw}, \textbf{EmPmR},  \textbf{fu}, \textbf{fv}, \textbf{Qnet}, \textbf{Qsw}, \textbf{EmPmR},
341  and \textbf{pload}. They are defined in \texttt{FFIELDS.h}.  and \textbf{pload}. They are defined in \texttt{FFIELDS.h}.
342    
343  {\scriptsize  {\footnotesize
344  \begin{verbatim}  \begin{verbatim}
345    
346  c----------------------------------------------------------------------  c----------------------------------------------------------------------
# Line 263  c               |  Typical range: -0.5 < Line 362  c               |  Typical range: -0.5 <
362  c               |  Southwest C-grid V point  c               |  Southwest C-grid V point
363  c               |  Input field  c               |  Input field
364  c----------------------------------------------------------------------  c----------------------------------------------------------------------
365    c     hs        :: sensible heat flux into ocean in W/m^2
366    c               |  > 0 for increase in theta (ocean warming)
367    c----------------------------------------------------------------------
368    c     hl        :: latent   heat flux into ocean in W/m^2
369    c               |  > 0 for increase in theta (ocean warming)
370    c----------------------------------------------------------------------
371  c     hflux     :: Net upward surface heat flux in W/m^2  c     hflux     :: Net upward surface heat flux in W/m^2
372  c               |  excluding shortwave (on input)  c               |  excluding shortwave (on input)
373  c               |  hflux = latent + sensible + lwflux  c               |  hflux = latent + sensible + lwflux
# Line 299  c               |  Typical range: -10 < Line 404  c               |  Typical range: -10 <
404  c               |  Southwest C-grid V point  c               |  Southwest C-grid V point
405  c               |  Input or input/output field  c               |  Input or input/output field
406  c----------------------------------------------------------------------  c----------------------------------------------------------------------
407    c     wspeed    :: Surface (10-m) wind speed in m/s
408    c               |  >= 0 sqrt(u^2+v^2)
409    c               |  Typical range: 0 < wspeed < 10
410    c               |  Input or input/output field
411    c----------------------------------------------------------------------
412  c     atemp     :: Surface (2-m) air temperature in deg K  c     atemp     :: Surface (2-m) air temperature in deg K
413  c               |  Typical range: 200 < atemp < 300  c               |  Typical range: 200 < atemp < 300
414  c               |  Southwest C-grid tracer point  c               |  Southwest C-grid tracer point
# Line 328  c               |  Typical range: 0 < pr Line 438  c               |  Typical range: 0 < pr
438  c               |  Southwest C-grid tracer point  c               |  Southwest C-grid tracer point
439  c               |  Input or input/output field  c               |  Input or input/output field
440  c----------------------------------------------------------------------  c----------------------------------------------------------------------
441    c    snowprecip :: snow in m/s
442    c               |  > 0 for decrease in salt (ocean salinity)
443    c               |  Typical range: 0 < precip < 5e-7
444    c               |  Input or input/output field
445    c----------------------------------------------------------------------
446  c     runoff    :: River and glacier runoff in m/s  c     runoff    :: River and glacier runoff in m/s
447  c               |  > 0 for decrease in salt (ocean salinity)  c               |  > 0 for decrease in salt (ocean salinity)
448  c               |  Typical range: 0 < runoff < ????  c               |  Typical range: 0 < runoff < ????
# Line 360  c--------------------------------------- Line 475  c---------------------------------------
475    
476  %----------------------------------------------------------------------  %----------------------------------------------------------------------
477    
478  \subsection{Key subroutines  \subsubsection{Key subroutines
479  \label{sec:pkg:exf:subroutines}}  \label{sec:pkg:exf:subroutines}}
480    
481  \subsubsection{Top-level routine: \texttt{exf\_getforcing.F}}  Top-level routine: \texttt{exf\_getforcing.F}
482    
483  {\scriptsize  {\footnotesize
484  \begin{verbatim}  \begin{verbatim}
485    
486  C     !CALLING SEQUENCE:  C     !CALLING SEQUENCE:
# Line 373  c ... Line 488  c ...
488  c  exf_getforcing (TOP LEVEL ROUTINE)  c  exf_getforcing (TOP LEVEL ROUTINE)
489  c  |  c  |
490  c  |-- exf_getclim (get climatological fields used e.g. for relax.)  c  |-- exf_getclim (get climatological fields used e.g. for relax.)
 c  |   |--- exf_set_climtemp (relax. to 3-D temperature field)  
 c  |   |--- exf_set_climsalt (relax. to 3-D salinity field)  
491  c  |   |--- exf_set_climsst  (relax. to 2-D SST field)  c  |   |--- exf_set_climsst  (relax. to 2-D SST field)
492  c  |   |--- exf_set_climsss  (relax. to 2-D SSS field)  c  |   |--- exf_set_climsss  (relax. to 2-D SSS field)
493  c  |   o  c  |   o
# Line 385  c  |   |      depending on CPP options ( Line 498  c  |   |      depending on CPP options (
498  c  |   |      consecutive in time are read in and interpolated onto  c  |   |      consecutive in time are read in and interpolated onto
499  c  |   |      current time step).  c  |   |      current time step).
500  c  |   |   2. If forcing is atmos. state and control is atmos. state,  c  |   |   2. If forcing is atmos. state and control is atmos. state,
501  c  |   |      then the control variable anomalies are read here  c  |   |      then the control variable anomalies are read here via ctrl_get_gen
502  c  |   |          * ctrl_getatemp  c  |   |      (atemp, aqh, precip, swflux, swdown, uwind, vwind).
 c  |   |          * ctrl_getaqh  
 c  |   |          * ctrl_getuwind  
 c  |   |          * ctrl_getvwind  
503  c  |   |      If forcing and control are fluxes, then  c  |   |      If forcing and control are fluxes, then
504  c  |   |      controls are added later.  c  |   |      controls are added later.
505  c  |   o  c  |   o
506  c  |  c  |
507  c  |-- exf_check_range  c  |-- exf_radiation
508  c  |   |   1. Check whether read fields are within assumed range  c  |   |    Compute net or downwelling radiative fluxes via
509  c  |   |      (may capture mismatches in units)  c  |   |    Stefan-Boltzmann law in case only one is known.
510    c  |   o
511    c  |-- exf_wind
512    c  |   |   Computes wind speed and stresses, if required.
513  c  |   o  c  |   o
514  c  |  c  |
515  c  |-- exf_bulkformulae  c  |-- exf_bulkformulae
516  c  |   |   1. Compute net or downwelling radiative fluxes via  c  |   |   Compute air-sea buoyancy fluxes from
517  c  |   |      Stefan-Boltzmann law in case only one is known.  c  |   |   atmospheric state following Large and Pond, JPO, 1981/82
 c  |   |   2. Compute air-sea momentum and buoyancy fluxes from  
 c  |   |      atmospheric state following Large and Pond, JPO, 1981/82  
518  c  |   o  c  |   o
519  c  |  c  |
520  c  |-- < add time-mean river runoff here, if available >  c  |-- < hflux is sum of sensible, latent, longwave rad. >
521    c  |-- < sflux is sum of evap. minus precip. minus runoff  >
522    c  |
523    c  |-- exf_getsurfacefluxes
524    c  |   If forcing and control is flux, then the
525    c  |   control vector anomalies are read here via ctrl_get_gen
526    c  |   (hflux, sflux, ustress, vstress)
527  c  |  c  |
528  c  |-- < update tile edges here >  c  |-- < update tile edges here >
529  c  |  c  |
530  c  |-- exf_getsurfacefluxes  c  |-- exf_check_range
531  c  |   |   1. If forcing and control are fluxes, then  c  |   |   Check whether read fields are within assumed range
532  c  |   |      controls are added here.  c  |   |   (may capture mismatches in units)
533  c  |   o  c  |   o
534  c  |  c  |
535  c  |-- < treatment of hflux w.r.t. swflux >  c  |-- < add shortwave to hflux for diagnostics >
536  c  |  c  |
537  c  |-- exf_diagnostics_fill  c  |-- exf_diagnostics_fill
538  c  |   |   1. Do EXF-related diagnostics output here.  c  |   |   Do EXF-related diagnostics output here.
539  c  |   o  c  |   o
540  c  |  c  |
541  c  |-- exf_mapfields  c  |-- exf_mapfields
542  c  |   |   1. Map the EXF variables onto the core MITgcm  c  |   |   Forcing fields from exf package are mapped onto
543  c  |   |      forcing fields.  c  |   |   mitgcm forcing arrays.
544    c  |   |   Mapping enables a runtime rescaling of fields
545  c  |   o  c  |   o
546  c  |  C  o
 c  |-- exf_bulkformulae  
 c  |   If ALLOW_BULKFORMULAE, compute fluxes via bulkformulae  
 c  |  
 c  |-- exf_getsurfacefluxes  
 c  |   If forcing and control is flux, then the  
 c  |   control vector anomalies are read here  
 c  |      * ctrl_getheatflux  
 c  |      * ctrl_getsaltflux  
 c  |      * ctrl_getzonstress  
 c  |      * call ctrl_getmerstress  
 c  |  
 c  |-- exf_mapfields  
 c  |   Forcing fields from exf package are mapped onto  
 c  |   mitgcm forcing arrays.  
 c  |   Mapping enables a runtime rescaling of fields  
   
547  \end{verbatim}  \end{verbatim}
548  }  }
549    
550  \subsubsection{Bulk formula routine: \texttt{exf\_bulkformulae.F}}  Radiation calculation: \texttt{exf\_radiation.F}
551    
552    Wind speed and stress calculation: \texttt{exf\_wind.F}
553    
554  \subsubsection{Generic I/O routine: \texttt{exf\_set\_gen.F}}  Bulk formula: \texttt{exf\_bulkformulae.F}
555    
556  \subsubsection{Interpolation routine: \texttt{exf\_interp.F}}  Generic I/O: \texttt{exf\_set\_gen.F}
557    
558  \subsubsection{Header routines}  Interpolation: \texttt{exf\_interp.F}
559    
560    Header routines
561    
562  %----------------------------------------------------------------------  %----------------------------------------------------------------------
563    
564  \subsection{EXF diagnostics  \subsubsection{EXF diagnostics
565  \label{sec:pkg:exf:diagnostics}}  \label{sec:pkg:exf:diagnostics}}
566    
567  Diagnostics output is available via the diagnostics package  Diagnostics output is available via the diagnostics package
# Line 464  Available output fields are summarized i Line 570  Available output fields are summarized i
570  Table \ref{tab:pkg:exf:diagnostics}.  Table \ref{tab:pkg:exf:diagnostics}.
571    
572  \begin{table}[h!]  \begin{table}[h!]
573    \centering
574  \label{tab:pkg:exf:diagnostics}  \label{tab:pkg:exf:diagnostics}
575  {\footnotesize  {\footnotesize
576  \begin{verbatim}  \begin{verbatim}
577  ------------------------------------------------------  ------------------------------------------------------
578   <-Name->|Levs|grid|<--  Units   -->|<- Tile (max=80c)   <-Name->|Levs|grid|<--  Units   -->|<- Tile (max=80c)
579  ------------------------------------------------------  ------------------------------------------------------
580     EXFhs   |  1 | SM | W/m^2          | Sensible heat flux into ocean, >0 increases theta
581     EXFhl   |  1 | SM | W/m^2          | Latent heat flux into ocean, >0 increases theta
582     EXFlwnet|  1 | SM | W/m^2          | Net upward longwave radiation, >0 decreases theta
583     EXFswnet|  1 | SM | W/m^2          | Net upward shortwave radiation, >0 decreases theta
584   EXFlwdn |  1 | SM | W/m^2          | Downward longwave radiation, >0 increases theta   EXFlwdn |  1 | SM | W/m^2          | Downward longwave radiation, >0 increases theta
585   EXFswdn |  1 | SM | W/m^2          | Downward shortwave radiation, >0 increases theta   EXFswdn |  1 | SM | W/m^2          | Downward shortwave radiation, >0 increases theta
586   EXFqnet |  1 | SM | W/m^2          | Net upward heat flux (turb+rad), >0 decreases theta   EXFqnet |  1 | SM | W/m^2          | Net upward heat flux (turb+rad), >0 decreases theta
# Line 477  Table \ref{tab:pkg:exf:diagnostics}. Line 588  Table \ref{tab:pkg:exf:diagnostics}.
588   EXFtauy |  1 | SV | N/m^2          | meridional surface wind stress, >0 increases vVel   EXFtauy |  1 | SV | N/m^2          | meridional surface wind stress, >0 increases vVel
589   EXFuwind|  1 | SM | m/s            | zonal 10-m wind speed, >0 increases uVel   EXFuwind|  1 | SM | m/s            | zonal 10-m wind speed, >0 increases uVel
590   EXFvwind|  1 | SM | m/s            | meridional 10-m wind speed, >0 increases uVel   EXFvwind|  1 | SM | m/s            | meridional 10-m wind speed, >0 increases uVel
591     EXFwspee|  1 | SM | m/s            | 10-m wind speed modulus ( >= 0 )
592   EXFatemp|  1 | SM | degK           | surface (2-m) air temperature   EXFatemp|  1 | SM | degK           | surface (2-m) air temperature
593   EXFaqh  |  1 | SM | kg/kg          | surface (2-m) specific humidity   EXFaqh  |  1 | SM | kg/kg          | surface (2-m) specific humidity
594   EXFevap |  1 | SM | m/s            | evaporation, > 0 increases salinity   EXFevap |  1 | SM | m/s            | evaporation, > 0 increases salinity
595   EXFpreci|  1 | SM | m/s            | evaporation, > 0 decreases salinity   EXFpreci|  1 | SM | m/s            | evaporation, > 0 decreases salinity
596     EXFsnow |  1 | SM | m/s            | snow precipitation, > 0 decreases salinity
597   EXFempmr|  1 | SM | m/s            | net upward freshwater flux, > 0 increases salinity   EXFempmr|  1 | SM | m/s            | net upward freshwater flux, > 0 increases salinity
598   EXFpress|  1 | SM | N/m^2          | atmospheric pressure field   EXFpress|  1 | SM | N/m^2          | atmospheric pressure field
599  \end{verbatim}  \end{verbatim}
# Line 490  Table \ref{tab:pkg:exf:diagnostics}. Line 603  Table \ref{tab:pkg:exf:diagnostics}.
603    
604  %----------------------------------------------------------------------  %----------------------------------------------------------------------
605    
606  \subsection{Reference experiments}  \subsubsection{Experiments and tutorials that use exf}
607    \label{sec:pkg:exf:experiments}
 \subsubsection{global\_with\_exf}  
608    
609  \subsubsection{lab\_sea}  \begin{itemize}
610    \item{Global Ocean experiment, in global\_with\_exf verification directory }
611    \item{Labrador Sea experiment, in lab\_sea verification directory }
612    \end{itemize}
613    
614  %----------------------------------------------------------------------  %----------------------------------------------------------------------
615    
616  \subsection{References}  \subsubsection{References}

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