| 218 |
numdiags set to 1. In order for the User to enable more than 1 two-dimensional diagnostic, |
numdiags set to 1. In order for the User to enable more than 1 two-dimensional diagnostic, |
| 219 |
the size of the diagnostics common must be expanded to accomodate the desired diagnostics. |
the size of the diagnostics common must be expanded to accomodate the desired diagnostics. |
| 220 |
This can be accomplished by manually changing the parameter numdiags in the |
This can be accomplished by manually changing the parameter numdiags in the |
| 221 |
file \filelink{pkg/diagnostics/diagnostics\_SIZE.h}{pkg-diagnostics-diagnostics_SIZE.h}. |
file \filelink{pkg/diagnostics/diagnostics\_SIZE.h}{pkg-diagnostics-diagnostics\_SIZE.h}. |
| 222 |
numdiags should be set greater than or equal to the sum of all the diagnostics activated |
numdiags should be set greater than or equal to the sum of all the diagnostics activated |
| 223 |
for output each multiplied by the number of levels defined for that diagnostic quantity. |
for output each multiplied by the number of levels defined for that diagnostic quantity. |
| 224 |
This is illustrated in the example below: |
This is illustrated in the example below: |
| 270 |
\subsubsection{GCM Diagnostic Menu} |
\subsubsection{GCM Diagnostic Menu} |
| 271 |
\label{sec:diagnostics:menu} |
\label{sec:diagnostics:menu} |
| 272 |
|
|
| 273 |
\begin{tabular}{lllll} |
\begin{tabular}{llll} |
| 274 |
\hline\hline |
\hline\hline |
| 275 |
N & NAME & UNITS & LEVELS & DESCRIPTION \\ |
NAME & UNITS & LEVELS & DESCRIPTION \\ |
| 276 |
\hline |
\hline |
| 277 |
|
|
| 278 |
&\\ |
&\\ |
| 279 |
84 & SDIAG1 & & 1 |
SDIAG1 & & 1 |
| 280 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 281 |
{User-Defined Surface Diagnostic-1} |
{User-Defined Surface Diagnostic-1} |
| 282 |
\end{minipage}\\ |
\end{minipage}\\ |
| 283 |
85 & SDIAG2 & & 1 |
SDIAG2 & & 1 |
| 284 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 285 |
{User-Defined Surface Diagnostic-2} |
{User-Defined Surface Diagnostic-2} |
| 286 |
\end{minipage}\\ |
\end{minipage}\\ |
| 287 |
86 & UDIAG1 & & Nrphys |
UDIAG1 & & Nrphys |
| 288 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 289 |
{User-Defined Upper-Air Diagnostic-1} |
{User-Defined Upper-Air Diagnostic-1} |
| 290 |
\end{minipage}\\ |
\end{minipage}\\ |
| 291 |
87 & UDIAG2 & & Nrphys |
UDIAG2 & & Nrphys |
| 292 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 293 |
{User-Defined Upper-Air Diagnostic-2} |
{User-Defined Upper-Air Diagnostic-2} |
| 294 |
\end{minipage}\\ |
\end{minipage}\\ |
| 295 |
124& SDIAG3 & & 1 |
SDIAG3 & & 1 |
| 296 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 297 |
{User-Defined Surface Diagnostic-3} |
{User-Defined Surface Diagnostic-3} |
| 298 |
\end{minipage}\\ |
\end{minipage}\\ |
| 299 |
125& SDIAG4 & & 1 |
SDIAG4 & & 1 |
| 300 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 301 |
{User-Defined Surface Diagnostic-4} |
{User-Defined Surface Diagnostic-4} |
| 302 |
\end{minipage}\\ |
\end{minipage}\\ |
| 303 |
126& SDIAG5 & & 1 |
SDIAG5 & & 1 |
| 304 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 305 |
{User-Defined Surface Diagnostic-5} |
{User-Defined Surface Diagnostic-5} |
| 306 |
\end{minipage}\\ |
\end{minipage}\\ |
| 307 |
127& SDIAG6 & & 1 |
SDIAG6 & & 1 |
| 308 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 309 |
{User-Defined Surface Diagnostic-6} |
{User-Defined Surface Diagnostic-6} |
| 310 |
\end{minipage}\\ |
\end{minipage}\\ |
| 311 |
128& SDIAG7 & & 1 |
SDIAG7 & & 1 |
| 312 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 313 |
{User-Defined Surface Diagnostic-7} |
{User-Defined Surface Diagnostic-7} |
| 314 |
\end{minipage}\\ |
\end{minipage}\\ |
| 315 |
129& SDIAG8 & & 1 |
SDIAG8 & & 1 |
| 316 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 317 |
{User-Defined Surface Diagnostic-8} |
{User-Defined Surface Diagnostic-8} |
| 318 |
\end{minipage}\\ |
\end{minipage}\\ |
| 319 |
130& SDIAG9 & & 1 |
SDIAG9 & & 1 |
| 320 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 321 |
{User-Defined Surface Diagnostic-9} |
{User-Defined Surface Diagnostic-9} |
| 322 |
\end{minipage}\\ |
\end{minipage}\\ |
| 323 |
131& SDIAG10 & & 1 |
SDIAG10 & & 1 |
| 324 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 325 |
{User-Defined Surface Diagnostic-1-} |
{User-Defined Surface Diagnostic-1-} |
| 326 |
\end{minipage}\\ |
\end{minipage}\\ |
| 327 |
132& UDIAG3 & & Nrphys |
UDIAG3 & & Nrphys |
| 328 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 329 |
{User-Defined Multi-Level Diagnostic-3} |
{User-Defined Multi-Level Diagnostic-3} |
| 330 |
\end{minipage}\\ |
\end{minipage}\\ |
| 331 |
133& UDIAG4 & & Nrphys |
UDIAG4 & & Nrphys |
| 332 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 333 |
{User-Defined Multi-Level Diagnostic-4} |
{User-Defined Multi-Level Diagnostic-4} |
| 334 |
\end{minipage}\\ |
\end{minipage}\\ |
| 335 |
134& UDIAG5 & & Nrphys |
UDIAG5 & & Nrphys |
| 336 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 337 |
{User-Defined Multi-Level Diagnostic-5} |
{User-Defined Multi-Level Diagnostic-5} |
| 338 |
\end{minipage}\\ |
\end{minipage}\\ |
| 339 |
135& UDIAG6 & & Nrphys |
UDIAG6 & & Nrphys |
| 340 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 341 |
{User-Defined Multi-Level Diagnostic-6} |
{User-Defined Multi-Level Diagnostic-6} |
| 342 |
\end{minipage}\\ |
\end{minipage}\\ |
| 343 |
136& UDIAG7 & & Nrphys |
UDIAG7 & & Nrphys |
| 344 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 345 |
{User-Defined Multi-Level Diagnostic-7} |
{User-Defined Multi-Level Diagnostic-7} |
| 346 |
\end{minipage}\\ |
\end{minipage}\\ |
| 347 |
137& UDIAG8 & & Nrphys |
UDIAG8 & & Nrphys |
| 348 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 349 |
{User-Defined Multi-Level Diagnostic-8} |
{User-Defined Multi-Level Diagnostic-8} |
| 350 |
\end{minipage}\\ |
\end{minipage}\\ |
| 351 |
138& UDIAG9 & & Nrphys |
UDIAG9 & & Nrphys |
| 352 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 353 |
{User-Defined Multi-Level Diagnostic-9} |
{User-Defined Multi-Level Diagnostic-9} |
| 354 |
\end{minipage}\\ |
\end{minipage}\\ |
| 355 |
139& UDIAG10 & & Nrphys |
UDIAG10 & & Nrphys |
| 356 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 357 |
{User-Defined Multi-Level Diagnostic-10} |
{User-Defined Multi-Level Diagnostic-10} |
| 358 |
\end{minipage}\\ |
\end{minipage}\\ |
| 359 |
|
SDIAGC & & 1 |
| 360 |
|
&\begin{minipage}[t]{3in} |
| 361 |
|
{User-Defined Counted Surface Diagnostic} |
| 362 |
|
\end{minipage}\\ |
| 363 |
|
SDIAGCC & & 1 |
| 364 |
|
&\begin{minipage}[t]{3in} |
| 365 |
|
{User-Defined Counted Surface Diagnostic Counter} |
| 366 |
|
\end{minipage}\\ |
| 367 |
|
ETAN & $(hPa,m)$ & 1 |
| 368 |
|
&\begin{minipage}[t]{3in} |
| 369 |
|
{Perturbation of Surface (pressure, height)} |
| 370 |
|
\end{minipage}\\ |
| 371 |
|
ETANSQ & $(hPa^2,m^2)$ & 1 |
| 372 |
|
&\begin{minipage}[t]{3in} |
| 373 |
|
{Square of Perturbation of Surface (pressure, height)} |
| 374 |
|
\end{minipage}\\ |
| 375 |
|
DETADT2 & ${r-unit}^2/s^2$ & 1 |
| 376 |
|
&\begin{minipage}[t]{3in} |
| 377 |
|
{Square of Eta (Surf.P,SSH) Tendency} |
| 378 |
|
\end{minipage}\\ |
| 379 |
|
THETA & $deg K$ & Nr |
| 380 |
|
&\begin{minipage}[t]{3in} |
| 381 |
|
{Potential Temperature} |
| 382 |
|
\end{minipage}\\ |
| 383 |
|
SST & $deg K$ & 1 |
| 384 |
|
&\begin{minipage}[t]{3in} |
| 385 |
|
{Sea Surface Temperature} |
| 386 |
|
\end{minipage}\\ |
| 387 |
|
SALT & $g/kg$ & Nr |
| 388 |
|
&\begin{minipage}[t]{3in} |
| 389 |
|
{Salt (or Water Vapor Mixing Ratio)} |
| 390 |
|
\end{minipage}\\ |
| 391 |
|
SSS & $g/kg$ & 1 |
| 392 |
|
&\begin{minipage}[t]{3in} |
| 393 |
|
{Sea Surface Salinity} |
| 394 |
|
\end{minipage}\\ |
| 395 |
|
SALTanom & $g/kg$ & Nr |
| 396 |
|
&\begin{minipage}[t]{3in} |
| 397 |
|
{Salt anomaly (=SALT-35)} |
| 398 |
|
\end{minipage}\\ |
| 399 |
\end{tabular} |
\end{tabular} |
| 400 |
\vspace{1.5in} |
\vspace{1.5in} |
| 401 |
\vfill |
\vfill |
| 402 |
|
|
| 403 |
\newpage |
\newpage |
| 404 |
\vspace*{\fill} |
\vspace*{\fill} |
| 405 |
\begin{tabular}{lllll} |
\begin{tabular}{llll} |
| 406 |
\hline\hline |
\hline\hline |
| 407 |
N & NAME & UNITS & LEVELS & DESCRIPTION \\ |
NAME & UNITS & LEVELS & DESCRIPTION \\ |
| 408 |
\hline |
\hline |
| 409 |
|
|
| 410 |
&\\ |
&\\ |
| 411 |
238& ETAN & $(hPa,m)$ & 1 |
UVEL & $m/sec$ & Nr |
|
&\begin{minipage}[t]{3in} |
|
|
{Perturbation of Surface (pressure, height)} |
|
|
\end{minipage}\\ |
|
|
239& ETANSQ & $(hPa^2,m^2)$ & 1 |
|
| 412 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 413 |
{Square of Perturbation of Surface (pressure, height)} |
{U-Velocity} |
|
\end{minipage}\\ |
|
|
240& THETA & $deg K$ & Nr |
|
|
&\begin{minipage}[t]{3in} |
|
|
{Potential Temperature} |
|
| 414 |
\end{minipage}\\ |
\end{minipage}\\ |
| 415 |
241& SALT & $g/kg$ & Nr |
VVEL & $m/sec$ & Nr |
| 416 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 417 |
{Salt (or Water Vapor Mixing Ratio)} |
{V-Velocity} |
| 418 |
\end{minipage}\\ |
\end{minipage}\\ |
| 419 |
242& UVEL & $m/sec$ & Nr |
UVEL\_k2 & $m/sec$ & 1 |
| 420 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 421 |
{U-Velocity} |
{U-Velocity} |
| 422 |
\end{minipage}\\ |
\end{minipage}\\ |
| 423 |
243& VVEL & $m/sec$ & Nr |
VVEL\_k2 & $m/sec$ & 1 |
| 424 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 425 |
{V-Velocity} |
{V-Velocity} |
| 426 |
\end{minipage}\\ |
\end{minipage}\\ |
| 427 |
244& WVEL & $m/sec$ & Nr |
WVEL & $m/sec$ & Nr |
| 428 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 429 |
{Vertical-Velocity} |
{Vertical-Velocity} |
| 430 |
\end{minipage}\\ |
\end{minipage}\\ |
| 431 |
245& THETASQ & $deg^2$ & Nr |
THETASQ & $deg^2$ & Nr |
| 432 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 433 |
{Square of Potential Temperature} |
{Square of Potential Temperature} |
| 434 |
\end{minipage}\\ |
\end{minipage}\\ |
| 435 |
246& SALTSQ & $g^2/{kg}^2$ & Nr |
SALTSQ & $g^2/{kg}^2$ & Nr |
| 436 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 437 |
{Square of Salt (or Water Vapor Mixing Ratio)} |
{Square of Salt (or Water Vapor Mixing Ratio)} |
| 438 |
\end{minipage}\\ |
\end{minipage}\\ |
| 439 |
247& UVELSQ & $m^2/sec^2$ & Nr |
SALTSQan & $g^2/{kg}^2$ & Nr |
| 440 |
|
&\begin{minipage}[t]{3in} |
| 441 |
|
{Square of Salt anomaly (=SALT-35)} |
| 442 |
|
\end{minipage}\\ |
| 443 |
|
UVELSQ & $m^2/sec^2$ & Nr |
| 444 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 445 |
{Square of U-Velocity} |
{Square of U-Velocity} |
| 446 |
\end{minipage}\\ |
\end{minipage}\\ |
| 447 |
248& VVELSQ & $m^2/sec^2$ & Nr |
VVELSQ & $m^2/sec^2$ & Nr |
| 448 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 449 |
{Square of V-Velocity} |
{Square of V-Velocity} |
| 450 |
\end{minipage}\\ |
\end{minipage}\\ |
| 451 |
249& WVELSQ & $m^2/sec^2$ & Nr |
WVELSQ & $m^2/sec^2$ & Nr |
| 452 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 453 |
{Square of Vertical-Velocity} |
{Square of Vertical-Velocity} |
| 454 |
\end{minipage}\\ |
\end{minipage}\\ |
| 455 |
250& UVELVVEL & $m^2/sec^2$ & Nr |
UV\_VEL\_C & $m^2/sec^2$ & Nr |
| 456 |
|
&\begin{minipage}[t]{3in} |
| 457 |
|
{Meridional Transport of Zonal Momentum (cell center)} |
| 458 |
|
\end{minipage}\\ |
| 459 |
|
UV\_VEL\_Z & $m^2/sec^2$ & Nr |
| 460 |
|
&\begin{minipage}[t]{3in} |
| 461 |
|
{Meridional Transport of Zonal Momentum (corner)} |
| 462 |
|
\end{minipage}\\ |
| 463 |
|
WU\_VEL & $m^2/sec^2$ & Nr |
| 464 |
|
&\begin{minipage}[t]{3in} |
| 465 |
|
{Vertical Transport of Zonal Momentum (cell center)} |
| 466 |
|
\end{minipage}\\ |
| 467 |
|
WV\_VEL & $m^2/sec^2$ & Nr |
| 468 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 469 |
{Meridional Transport of Zonal Momentum} |
{Vertical Transport of Meridional Momentum (cell center)} |
| 470 |
\end{minipage}\\ |
\end{minipage}\\ |
| 471 |
251& UVELMASS & $m/sec$ & Nr |
UVELMASS & $m/sec$ & Nr |
| 472 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 473 |
{Zonal Mass-Weighted Component of Velocity} |
{Zonal Mass-Weighted Component of Velocity} |
| 474 |
\end{minipage}\\ |
\end{minipage}\\ |
| 475 |
252& VVELMASS & $m/sec$ & Nr |
VVELMASS & $m/sec$ & Nr |
| 476 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 477 |
{Meridional Mass-Weighted Component of Velocity} |
{Meridional Mass-Weighted Component of Velocity} |
| 478 |
\end{minipage}\\ |
\end{minipage}\\ |
| 479 |
253& WVELMASS & $m/sec$ & Nr |
WVELMASS & $m/sec$ & Nr |
| 480 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 481 |
{Vertical Mass-Weighted Component of Velocity} |
{Vertical Mass-Weighted Component of Velocity} |
| 482 |
\end{minipage}\\ |
\end{minipage}\\ |
| 483 |
254& UTHMASS & $m-deg/sec$ & Nr |
UTHMASS & $m-deg/sec$ & Nr |
| 484 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 485 |
{Zonal Mass-Weight Transp of Pot Temp} |
{Zonal Mass-Weight Transp of Pot Temp} |
| 486 |
\end{minipage}\\ |
\end{minipage}\\ |
| 487 |
255& VTHMASS & $m-deg/sec$ & Nr |
VTHMASS & $m-deg/sec$ & Nr |
| 488 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 489 |
{Meridional Mass-Weight Transp of Pot Temp} |
{Meridional Mass-Weight Transp of Pot Temp} |
| 490 |
\end{minipage}\\ |
\end{minipage}\\ |
| 491 |
256& WTHMASS & $m-deg/sec$ & Nr |
WTHMASS & $m-deg/sec$ & Nr |
| 492 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 493 |
{Vertical Mass-Weight Transp of Pot Temp} |
{Vertical Mass-Weight Transp of Pot Temp} |
| 494 |
\end{minipage}\\ |
\end{minipage}\\ |
| 495 |
257& USLTMASS & $m-kg/sec-kg$ & Nr |
USLTMASS & $m-kg/sec-kg$ & Nr |
| 496 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 497 |
{Zonal Mass-Weight Transp of Salt (or W.Vap Mix Rat.)} |
{Zonal Mass-Weight Transp of Salt (or W.Vap Mix Rat.)} |
| 498 |
\end{minipage}\\ |
\end{minipage}\\ |
| 499 |
258& VSLTMASS & $m-kg/sec-kg$ & Nr |
VSLTMASS & $m-kg/sec-kg$ & Nr |
| 500 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 501 |
{Meridional Mass-Weight Transp of Salt (or W.Vap Mix Rat.)} |
{Meridional Mass-Weight Transp of Salt (or W.Vap Mix Rat.)} |
| 502 |
\end{minipage}\\ |
\end{minipage}\\ |
| 503 |
259& WSLTMASS & $m-kg/sec-kg$ & Nr |
WSLTMASS & $m-kg/sec-kg$ & Nr |
| 504 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 505 |
{Vertical Mass-Weight Transp of Salt (or W.Vap Mix Rat.)} |
{Vertical Mass-Weight Transp of Salt (or W.Vap Mix Rat.)} |
| 506 |
\end{minipage}\\ |
\end{minipage}\\ |
| 507 |
260& UVELTH & $m-deg/sec$ & Nr |
UVELTH & $m-deg/sec$ & Nr |
| 508 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 509 |
{Zonal Transp of Pot Temp} |
{Zonal Transp of Pot Temp} |
| 510 |
\end{minipage}\\ |
\end{minipage}\\ |
| 511 |
261& VVELTH & $m-deg/sec$ & Nr |
VVELTH & $m-deg/sec$ & Nr |
| 512 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 513 |
{Meridional Transp of Pot Temp} |
{Meridional Transp of Pot Temp} |
| 514 |
\end{minipage}\\ |
\end{minipage}\\ |
| 515 |
262& WVELTH & $m-deg/sec$ & Nr |
WVELTH & $m-deg/sec$ & Nr |
| 516 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 517 |
{Vertical Transp of Pot Temp} |
{Vertical Transp of Pot Temp} |
| 518 |
\end{minipage}\\ |
\end{minipage}\\ |
| 519 |
263& UVELSLT & $m-kg/sec-kg$ & Nr |
UVELSLT & $m-kg/sec-kg$ & Nr |
| 520 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 521 |
{Zonal Transp of Salt (or W.Vap Mix Rat.)} |
{Zonal Transp of Salt (or W.Vap Mix Rat.)} |
| 522 |
\end{minipage}\\ |
\end{minipage}\\ |
| 523 |
264& VVELSLT & $m-kg/sec-kg$ & Nr |
VVELSLT & $m-kg/sec-kg$ & Nr |
| 524 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 525 |
{Meridional Transp of Salt (or W.Vap Mix Rat.)} |
{Meridional Transp of Salt (or W.Vap Mix Rat.)} |
| 526 |
\end{minipage}\\ |
\end{minipage}\\ |
| 527 |
265& WVELSLT & $m-kg/sec-kg$ & Nr |
WVELSLT & $m-kg/sec-kg$ & Nr |
| 528 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 529 |
{Vertical Transp of Salt (or W.Vap Mix Rat.)} |
{Vertical Transp of Salt (or W.Vap Mix Rat.)} |
| 530 |
\end{minipage}\\ |
\end{minipage}\\ |
| 531 |
275& WSLTMASS & $m-kg/sec-kg$ & Nr |
\end{tabular} |
| 532 |
|
\vspace{1.5in} |
| 533 |
|
\vfill |
| 534 |
|
|
| 535 |
|
\newpage |
| 536 |
|
\vspace*{\fill} |
| 537 |
|
\begin{tabular}{llll} |
| 538 |
|
\hline\hline |
| 539 |
|
NAME & UNITS & LEVELS & DESCRIPTION \\ |
| 540 |
|
\hline |
| 541 |
|
|
| 542 |
|
&\\ |
| 543 |
|
RHOAnoma & $kg/m^3 $ & Nr |
| 544 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 545 |
{Vertical Mass-Weight Transp of Salt (or W.Vap Mix Rat.)} |
{Density Anomaly (=Rho-rhoConst)} |
| 546 |
|
\end{minipage}\\ |
| 547 |
|
RHOANOSQ & $kg^2/m^6$ & Nr |
| 548 |
|
&\begin{minipage}[t]{3in} |
| 549 |
|
{Square of Density Anomaly (=(Rho-rhoConst))} |
| 550 |
\end{minipage}\\ |
\end{minipage}\\ |
| 551 |
298& VISCA4 & $m^4/sec$ & 1 |
URHOMASS & $kg/m^2/s$ & Nr |
| 552 |
|
&\begin{minipage}[t]{3in} |
| 553 |
|
{Zonal Transport of Density} |
| 554 |
|
\end{minipage}\\ |
| 555 |
|
VRHOMASS & $kg/m^2/s$ & Nr |
| 556 |
|
&\begin{minipage}[t]{3in} |
| 557 |
|
{Meridional Transport of Density} |
| 558 |
|
\end{minipage}\\ |
| 559 |
|
WRHOMASS & $kg/m^2/s$ & Nr |
| 560 |
|
&\begin{minipage}[t]{3in} |
| 561 |
|
{Vertical Transport of Potential Density} |
| 562 |
|
\end{minipage}\\ |
| 563 |
|
PHIHYD & $m^2/s^2 $ & Nr |
| 564 |
|
&\begin{minipage}[t]{3in} |
| 565 |
|
{Hydrostatic (ocean) pressure / (atmos) geo-Potential} |
| 566 |
|
\end{minipage}\\ |
| 567 |
|
PHIHYDSQ & $m^4/s^4 $ & Nr |
| 568 |
|
&\begin{minipage}[t]{3in} |
| 569 |
|
{Square of Hyd. (ocean) press / (atmos) geoPotential} |
| 570 |
|
\end{minipage}\\ |
| 571 |
|
PHIBOT & $m^2/s^2 $ & Nr |
| 572 |
|
&\begin{minipage}[t]{3in} |
| 573 |
|
{ocean bottom pressure / top. atmos geo-Potential} |
| 574 |
|
\end{minipage}\\ |
| 575 |
|
PHIBOTSQ & $m^4/s^4 $ & Nr |
| 576 |
|
&\begin{minipage}[t]{3in} |
| 577 |
|
{Square of ocean bottom pressure / top. geo-Potential} |
| 578 |
|
\end{minipage}\\ |
| 579 |
|
DRHODR & $kg/m^3/{r-unit}$ & Nr |
| 580 |
|
&\begin{minipage}[t]{3in} |
| 581 |
|
{Stratification: d.Sigma/dr} |
| 582 |
|
\end{minipage}\\ |
| 583 |
|
VISCA4 & $m^4/sec$ & 1 |
| 584 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 585 |
{Biharmonic Viscosity Coefficient} |
{Biharmonic Viscosity Coefficient} |
| 586 |
\end{minipage}\\ |
\end{minipage}\\ |
| 587 |
299& VISCAH & $m^2/sec$ & 1 |
VISCAH & $m^2/sec$ & 1 |
| 588 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 589 |
{Harmonic Viscosity Coefficient} |
{Harmonic Viscosity Coefficient} |
| 590 |
\end{minipage}\\ |
\end{minipage}\\ |
| 591 |
300& DRHODR & $kg/m^3/{r-unit}$ & Nr |
TAUX & $N/m^2 $ & 1 |
| 592 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 593 |
{Stratification: d.Sigma/dr} |
{zonal surface wind stress, >0 increases uVel} |
| 594 |
\end{minipage}\\ |
\end{minipage}\\ |
| 595 |
301& DETADT2 & ${r-unit}^2/s^2$ & 1 |
TAUY & $N/m^2 $ & 1 |
| 596 |
&\begin{minipage}[t]{3in} |
&\begin{minipage}[t]{3in} |
| 597 |
{Square of Eta (Surf.P,SSH) Tendency} |
{meridional surf. wind stress, >0 increases vVel} |
| 598 |
|
\end{minipage}\\ |
| 599 |
|
TFLUX & $W/m^2 $ & 1 |
| 600 |
|
&\begin{minipage}[t]{3in} |
| 601 |
|
{net surface heat flux, >0 increases theta} |
| 602 |
|
\end{minipage}\\ |
| 603 |
|
TRELAX & $W/m^2 $ & 1 |
| 604 |
|
&\begin{minipage}[t]{3in} |
| 605 |
|
{surface temperature relaxation, >0 increases theta} |
| 606 |
|
\end{minipage}\\ |
| 607 |
|
TICE & $W/m^2 $ & 1 |
| 608 |
|
&\begin{minipage}[t]{3in} |
| 609 |
|
{heat from melt/freeze of sea-ice, >0 increases theta} |
| 610 |
|
\end{minipage}\\ |
| 611 |
|
SFLUX & $g/m^2/s $ & 1 |
| 612 |
|
&\begin{minipage}[t]{3in} |
| 613 |
|
{net surface salt flux, >0 increases salt} |
| 614 |
|
\end{minipage}\\ |
| 615 |
|
SRELAX & $g/m^2/s $ & 1 |
| 616 |
|
&\begin{minipage}[t]{3in} |
| 617 |
|
{surface salinity relaxation, >0 increases salt} |
| 618 |
|
\end{minipage}\\ |
| 619 |
|
PRESSURE & $Pa $ & Nr |
| 620 |
|
&\begin{minipage}[t]{3in} |
| 621 |
|
{Atmospheric Pressure (Pa)} |
| 622 |
|
\end{minipage}\\ |
| 623 |
|
ADVr\_TH & $K.Pa.m^2/s $ & Nr |
| 624 |
|
&\begin{minipage}[t]{3in} |
| 625 |
|
{Vertical Advective Flux of Pot.Temperature} |
| 626 |
|
\end{minipage}\\ |
| 627 |
|
ADVx\_TH & $K.Pa.m^2/s $ & Nr |
| 628 |
|
&\begin{minipage}[t]{3in} |
| 629 |
|
{Zonal Advective Flux of Pot.Temperature} |
| 630 |
|
\end{minipage}\\ |
| 631 |
|
ADVy\_TH & $K.Pa.m^2/s $ & Nr |
| 632 |
|
&\begin{minipage}[t]{3in} |
| 633 |
|
{Meridional Advective Flux of Pot.Temperature} |
| 634 |
|
\end{minipage}\\ |
| 635 |
|
DFrE\_TH & $K.Pa.m^2/s $ & Nr |
| 636 |
|
&\begin{minipage}[t]{3in} |
| 637 |
|
{Vertical Diffusive Flux of Pot.Temperature (Explicit part)} |
| 638 |
|
\end{minipage}\\ |
| 639 |
|
DIFx\_TH & $K.Pa.m^2/s $ & Nr |
| 640 |
|
&\begin{minipage}[t]{3in} |
| 641 |
|
{Zonal Diffusive Flux of Pot.Temperature} |
| 642 |
|
\end{minipage}\\ |
| 643 |
|
DIFy\_TH & $K.Pa.m^2/s $ & Nr |
| 644 |
|
&\begin{minipage}[t]{3in} |
| 645 |
|
{Meridional Diffusive Flux of Pot.Temperature} |
| 646 |
|
\end{minipage}\\ |
| 647 |
|
DFrI\_TH & $K.Pa.m^2/s $ & Nr |
| 648 |
|
&\begin{minipage}[t]{3in} |
| 649 |
|
{Vertical Diffusive Flux of Pot.Temperature (Implicit part)} |
| 650 |
|
\end{minipage}\\ |
| 651 |
|
ADVr\_SLT & $g/kg.Pa.m^2/s$ & Nr |
| 652 |
|
&\begin{minipage}[t]{3in} |
| 653 |
|
{Vertical Advective Flux of Water-Vapor} |
| 654 |
|
\end{minipage}\\ |
| 655 |
|
ADVx\_SLT & $g/kg.Pa.m^2/s$ & Nr |
| 656 |
|
&\begin{minipage}[t]{3in} |
| 657 |
|
{Zonal Advective Flux of Water-Vapor} |
| 658 |
|
\end{minipage}\\ |
| 659 |
|
ADVy\_SLT & $g/kg.Pa.m^2/s$ & Nr |
| 660 |
|
&\begin{minipage}[t]{3in} |
| 661 |
|
{Meridional Advective Flux of Water-Vapor} |
| 662 |
|
\end{minipage}\\ |
| 663 |
|
\end{tabular} |
| 664 |
|
\vspace{1.5in} |
| 665 |
|
\vfill |
| 666 |
|
|
| 667 |
|
\newpage |
| 668 |
|
\vspace*{\fill} |
| 669 |
|
\begin{tabular}{llll} |
| 670 |
|
\hline\hline |
| 671 |
|
NAME & UNITS & LEVELS & DESCRIPTION \\ |
| 672 |
|
\hline |
| 673 |
|
|
| 674 |
|
&\\ |
| 675 |
|
DFrE\_SLT & $g/kg.Pa.m^2/s$ & Nr |
| 676 |
|
&\begin{minipage}[t]{3in} |
| 677 |
|
{Vertical Diffusive Flux of Water-Vapor (Explicit part)} |
| 678 |
|
\end{minipage}\\ |
| 679 |
|
DIFx\_SLT & $g/kg.Pa.m^2/s$ & Nr |
| 680 |
|
&\begin{minipage}[t]{3in} |
| 681 |
|
{Zonal Diffusive Flux of Water-Vapor} |
| 682 |
|
\end{minipage}\\ |
| 683 |
|
DIFy\_SLT & $g/kg.Pa.m^2/s$ & Nr |
| 684 |
|
&\begin{minipage}[t]{3in} |
| 685 |
|
{Meridional Diffusive Flux of Water-Vapor} |
| 686 |
|
\end{minipage}\\ |
| 687 |
|
DFrI\_SLT & $g/kg.Pa.m^2/s$ & Nr |
| 688 |
|
&\begin{minipage}[t]{3in} |
| 689 |
|
{Vertical Diffusive Flux of Water-Vapor (Implicit part)} |
| 690 |
\end{minipage}\\ |
\end{minipage}\\ |
| 691 |
\end{tabular} |
\end{tabular} |
| 692 |
\vspace{1.5in} |
\vspace{1.5in} |