/[MITgcm]/MITgcm_contrib/gmaze_pv/Contents.m
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Revision 1.5 - (hide annotations) (download)
Fri Oct 6 18:54:35 2006 UTC (18 years, 9 months ago) by gmaze
Branch: MAIN
Changes since 1.4: +7 -1 lines
update

1 gmaze 1.4 % CLIMODE: potential vorticity toolbox
2 gmaze 1.3 %
3 gmaze 1.4 % This package tries to provide some useful and simple routines to compute, visualize and
4     % analyze Potential Vorticity from the global high resolution (1/8deg) simulation of the
5     % MITgcm.
6     % Routines are as general as possible for extended applications, but note that they were
7     % developped to focus on the Western Atlantic region for the CLIMODE project.
8 gmaze 1.3 % Enjoy !
9 gmaze 1.1 %
10     % gmaze@mit.edu
11 gmaze 1.5 % Last update: 10/06/06
12 gmaze 1.1 %
13 gmaze 1.4 % ---------------------------------------------------------------------------------------------
14     % PROGRAMS LIST (NOT A FUNCTIONS):
15 gmaze 1.3 %
16 gmaze 1.4 % main_getPV_eg
17     % This program is an exemple of how to define global setup and
18     % to launch the PV computing.
19     %
20     % ---------------------------------------------------------------------------------------------
21     % FUNCTIONS LIST 1: NETCDF FILES DIAGNOSTICS
22     % From netcdf files contained into SNAPSHOT sub-directory of the
23     % ./netcdf-files/ home folder, these functions ...
24     %
25     % A_compute_potential_density(SNAPSHOT)
26     % Computes potential density SIGMATHETA from potential
27     % temperature THETA and anomalous salinity SALTanom.
28     % B_compute_relative_vorticity(SNAPSHOT)
29     % Computes the 3 components of the relative vorticity from the
30     % horizontal flow.
31     % C_compute_potential_vorticity(SNAPSHOT,[WANT_SPL_PV])
32     % Computes the potential vorticity field from the relative
33     % vorticity components and the potential density. Option
34     % WANT_SPL_PV turned 1 (0 by default) makes the function only
35     % computing the PV based on the planetary vorticity.
36     % D_compute_potential_vorticity(SNAPSHOT,[WANT_SPL_PV])
37     % Multiplies the potential vorticity computed with
38     % C_COMPUTE_POTENTIAL_VORTICITY by the coefficient: -1/RHO
39     % Optional flag WANTSPLPV is turned to 0 by default. Turn it to 1
40     % if the PV computed was the simple one (f.dSIGMATHETA/dz). It's
41     % needed for the output netcdf file informations.
42     % compute_JBz(SNAPSHOT)
43     % Computes the surface PV flux due to diabatic processes.
44     % compute_JFz(SNAPSHOT)
45     % Computes the surface PV flux due to frictionnal forces.
46     % compute_density(SNAPSHOT)
47     % Computes density RHO from potential temperature THETA
48     % and anomalous salinity SALTanom.
49     % compute_alpha(SNAPSHOT)
50     % Computes the thermal expansion coefficient ALPHA from potential
51     % temperature THETA and salinity anomaly SALTanom.
52     % compute_QEk(SNAPSHOT)
53     % Computes QEk, the lateral heat flux induced by Ekman currents
54     % from JFz, the PV flux induced by frictional forces.
55 gmaze 1.5 % compute_EKL(SNAPSHOT)
56     % Compute the Ekman Layer Depth from the wind stress and the density
57     % fields.
58     % compute_MLD(SNAPSHOT)
59     % Compute the Mixed Layer Depth from the SST, SSS and potential
60     % density fields.
61 gmaze 1.4 %
62     % ---------------------------------------------------------------------------------------------
63     % FUNCTIONS LIST 2: ANALYSIS FUNCTIONS
64     %
65     % volbet2iso(TRACER,LIMITS,DEPTH,LAT,LONG)
66     % This function computes the volume embedded between two
67     % iso-TRACER values and limited eastward, westward and southward
68     % by fixed limits.
69     % surfbet2outcrops(TRACER,LIMITS,LAT,LONG)
70     % This function computes the horizontal surface limited
71     % by two outcrops of a tracer.
72     % intbet2outcrops(TRACER,LIMITS,LAT,LONG)
73     % This function computes the horizontal surface integral
74     % of the field TRACER on the area limited by two outcrops.
75     % subfct_getisoS(TRACER,ISO)
76     % This function determines the iso-surface ISO of the
77     % 3D field TRACER(Z,Y,X).
78     %
79     % ---------------------------------------------------------------------------------------------
80     % LOWER LEVEL AND SUB-FUNCTIONS LIST:
81     %
82     % pv_checkpath
83     % This function, systematicaly called by the others, ensures that
84     % all needed sub-directories of the package are in the path.
85 gmaze 1.2 %
86 gmaze 1.4 % ---------------------------------------------------------------------------------------------
87 gmaze 1.2 % PS:
88 gmaze 1.3 %
89 gmaze 1.4 % > Functions name are case sensitive.
90     % > See sub-directory "subfct" for further functions.
91     % > Following packages are required:
92     % M_MAP: http://www.eos.ubc.ca/~rich/map.html
93     % SEAWATER: http://www.marine.csiro.au/datacentre/processing.htm
94 gmaze 1.3 %
95 gmaze 1.4 % ---------------------------------------------------------------------------------------------
96 gmaze 1.1 %

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