Variables: Difference between revisions
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=='''T'''== | =='''T'''== | ||
;<span id="t"></span>'''t''' | |||
:Tracer-type variables, <math>\,T(\xi,\eta,s,t,itrc)</math>. | |||
:'''dimension =''' '''t'''(LBi:UBi,LBj:UBj,N,3,NT) | |||
:'''pointer =''' OCEAN(ng)%'''t''' | |||
:'''tangent =''' <span style="color:red">tl_t</span> | |||
:'''adjoint =''' <span style="color:purple">ad_t</span> | |||
:'''grid =''' ρ-points | |||
:This array contains all the tracer fields. They are classified as active (potential temperature, salinity), inert (dyes, pollutants, oil spills, etc), passive (sediment, biology). There is a index identifier for each tracer field (see table below). Notice that salinity does not have physical units. Usually PSU is used to indicate that the practical salinity scale was used to determine conductivity. | |||
{| border="1" cellspacing="0" cellpadding="5" align="center" | |||
! Index | |||
! Field | |||
! Units | |||
|- | |||
| '''itemp''' | |||
| Potential temperature | |||
| Celsius | |||
|- | |||
| '''isalt''' | |||
| Salinity | |||
| None | |||
|- | |||
| '''inert'''(1:NPT) | |||
| NPT inert tracers | |||
| kilogram meter<sup>-3</sup> | |||
|- | |||
| '''idsed'''(1:NST) | |||
| NST sediment tracers | |||
| kilogram meter<sup>-3</sup> | |||
|- | |||
| '''idbio'''(1:NBT) | |||
| NBT biology tracers | |||
| millimole meter<sup>-3</sup> | |||
|- | |||
|} | |||
=='''U'''== | =='''U'''== | ||
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;<span id="ubar"></span>'''ubar''' | ;<span id="ubar"></span>'''ubar''' | ||
:Vertically-integrated momentum component in the ξ-direction, <math>\bar u(\xi,\eta,t)</math>. | :Vertically-integrated momentum component in the ξ-direction, <math>\bar u(\xi,\eta,t)</math>. | ||
::<math>\bar u = \frac{1}{D} \int_{-h}^{\zeta} u\,H_z\,dz</math> | |||
:'''dimension =''' '''ubar'''(LBi:UBi,LBj:UBj,3) | :'''dimension =''' '''ubar'''(LBi:UBi,LBj:UBj,3) | ||
:'''pointer =''' OCEAN(ng)%'''ubar''' | :'''pointer =''' OCEAN(ng)%'''ubar''' | ||
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;<span id="vbar"></span>'''vbar''' | ;<span id="vbar"></span>'''vbar''' | ||
:Vertically-integrated momentum component in the η-direction, <math>\bar v(\xi,\eta,t)</math>. | :Vertically-integrated momentum component in the η-direction, <math>\bar v(\xi,\eta,t)</math>. | ||
::<math>\bar v = \frac{1}{D} \int_{-h}^{\zeta} v\,H_z\,dz</math> | |||
:'''dimension =''' '''vbar'''(LBi:UBi,LBj:UBj,3) | :'''dimension =''' '''vbar'''(LBi:UBi,LBj:UBj,3) | ||
:'''pointer =''' OCEAN(ng)%'''vbar''' | :'''pointer =''' OCEAN(ng)%'''vbar''' |
Revision as of 03:50, 15 November 2006
A
B
C
D
E
F
G
H
- Hz
- Vertical level thicknesses, . The thicknesses are time-dependent and computed in routine set_depths.
- dimension = Hz(LBi:UBi,LBj:UBj,N)
- pointer = GRID(ng)%Hz
- tangent = tl_Hz
- adjoint = ad_Hz
- units = meter
- grid = ρ-points
I
J
K
L
M
N
O
P
Q
R
S
T
- t
- Tracer-type variables, .
- dimension = t(LBi:UBi,LBj:UBj,N,3,NT)
- pointer = OCEAN(ng)%t
- tangent = tl_t
- adjoint = ad_t
- grid = ρ-points
- This array contains all the tracer fields. They are classified as active (potential temperature, salinity), inert (dyes, pollutants, oil spills, etc), passive (sediment, biology). There is a index identifier for each tracer field (see table below). Notice that salinity does not have physical units. Usually PSU is used to indicate that the practical salinity scale was used to determine conductivity.
Index | Field | Units |
---|---|---|
itemp | Potential temperature | Celsius |
isalt | Salinity | None |
inert(1:NPT) | NPT inert tracers | kilogram meter-3 |
idsed(1:NST) | NST sediment tracers | kilogram meter-3 |
idbio(1:NBT) | NBT biology tracers | millimole meter-3 |
U
- u
- Total momentum component in the ξ-direction, .
- dimension = u(LBi:UBi,LBj:UBj,N,2)
- pointer = OCEAN(ng)%u
- tangent = tl_u
- adjoint = ad_u
- units = meter second-1
- grid = u-points
- ubar
- Vertically-integrated momentum component in the ξ-direction, .
- dimension = ubar(LBi:UBi,LBj:UBj,3)
- pointer = OCEAN(ng)%ubar
- tangent = tl_ubar
- adjoint = ad_ubar
- units = meter second-1
- grid = u-points
V
- v
- 3D momentum component in the η-direction, .
- dimension = v(LBi:UBi,LBj:UBj,N,2)
- pointer = OCEAN(ng)%v
- tangent = tl_u
- adjoint = ad_u
- units = meter second-1
- grid = v-points
- vbar
- Vertically-integrated momentum component in the η-direction, .
- dimension = vbar(LBi:UBi,LBj:UBj,3)
- pointer = OCEAN(ng)%vbar
- tangent = tl_vbar
- adjoint = ad_vbar
- units = meter second-1
- grid = v-points
W
- W
- Terrain-following, vertical velocity component, .
- dimension = W(LBi:UBi,LBj:UBj,0:N)
- pointer = OCEAN(ng)%W
- tangent = tl_W
- adjoint = ad_W
- units = meter3 second-1
- grid = w-points
X
Y
Z
- zeta
- Free-surface, .
- dimension = zeta(LBi:UBi,LBj:UBj,3)
- pointer = OCEAN(ng)%zeta
- tangent = tl_zeta
- adjoint = ad_zeta
- units = meter
- grid = ρ-points