5 XF_RF_DATA_NULL_MEAN=0,
9 XF_RF_DATA_TEMPERATURE=3,
10 XF_RF_DATA_ENTHALPY=4,
15 XF_RF_DATA_G_M1=0, /* never stored but symbol is required */
18 XF_RF_DATA_DPMS_MASS=10,
19 XF_RF_DATA_DPMS_MOM=11,
20 XF_RF_DATA_DPMS_ENERGY=12,
21 XF_RF_DATA_DPMS_SPECIES=13,
22 XF_RF_DATA_DVOLUME_DT=14,
23 XF_RF_DATA_BODY_FORCES=15,
26 XF_RF_DATA_MASS_FLUX=18,
27 XF_RF_DATA_WALL_SHEAR=19,
28 XF_RF_DATA_BOUNDARY_HEAT_FLUX=20,
29 XF_RF_DATA_BOUNDARY_RAD_HEAT_FLUX=21,
30 XF_RF_DATA_OLD_PRESSURE=22,
32 XF_RF_DATA_DPMS_P1_S=24,
33 XF_RF_DATA_DPMS_P1_AP=25,
34 XF_RF_DATA_WALL_GAS_TEMPERATURE=26,
35 XF_RF_DATA_DPMS_P1_DIFF=27,
36 XF_RF_DATA_DR_SURF=28,
38 /* conserved variables at n-1 and n-2 time levels (rampant) */
42 XF_RF_DATA_DPMS_BURNOUT=31,
43 XF_RF_DATA_DPMS_CONCENTRATION=32,
45 XF_RF_DATA_DPMS_WSWIRL=34,
47 XF_RF_DATA_YPLUS_UTAU=36,
48 XF_RF_DATA_WALL_SHEAR_SWIRL=37,
50 XF_RF_DATA_WALL_T_INNER=38,
51 XF_RF_DATA_POLLUT0=39,
52 XF_RF_DATA_POLLUT1=40,
53 XF_RF_DATA_WALL_G_INNER=41,
54 XF_RF_DATA_PREMIXC=42,
55 XF_RF_DATA_PREMIXC_T=43,
56 XF_RF_DATA_PREMIXC_RATE=44,
57 XF_RF_DATA_POLLUT2=45,
58 XF_RF_DATA_POLLUT3=46,
60 XF_RF_DATA_MASS_FLUX_M1=47,
61 XF_RF_DATA_MASS_FLUX_M2=48,
62 XF_RF_DATA_GRID_FLUX=49,
65 XF_RF_DATA_DO_RECON_I=51,
66 XF_RF_DATA_DO_ENERGY_SOURCE=52,
67 XF_RF_DATA_DO_IRRAD=53,
68 XF_RF_DATA_DO_QMINUS=54,
69 XF_RF_DATA_DO_IRRAD_OLD=55,
80 XF_RF_DATA_SDR=63, /* omega in the k-w model */
84 XF_RF_DATA_POLLUT4=66,
85 XF_RF_DATA_GRANULAR_TEMPERATURE = 67,
86 XF_RF_DATA_GRANULAR_TEMPERATURE_M1 = 68,
87 XF_RF_DATA_GRANULAR_TEMPERATURE_M2 = 69,
91 XF_RF_DATA_VFLUX_M1=80,
93 XF_RF_DATA_VFLUX_M2=90,
95 XF_RF_DATA_DO_QTRANS=92,
96 XF_RF_DATA_DO_QREFL=93,
97 XF_RF_DATA_DO_QABS=94,
99 XF_RF_DATA_DENSITY=101,
100 XF_RF_DATA_MU_LAM=102,
101 XF_RF_DATA_MU_TURB=103,
104 XF_RF_DATA_VGS_DTRM=106,
105 XF_RF_DATA_VGF_DTRM=107,
106 XF_RF_DATA_RSTRESS=108, /* V4 reynolds stress model */
107 XF_RF_DATA_THREAD_RAD_FLUX=109,
109 /* mass absorption term for absorbing porous media model */
110 XF_RF_DATA_SPE_Q=110,
112 XF_RF_DATA_X_VELOCITY=111,
113 XF_RF_DATA_Y_VELOCITY=112,
114 XF_RF_DATA_Z_VELOCITY=113,
115 XF_RF_DATA_WALL_VELOCITY=114,
117 XF_RF_DATA_PRESSURE_M1=0, /* never stored but symbol is required */
118 XF_RF_DATA_X_VELOCITY_M1=115,
119 XF_RF_DATA_Y_VELOCITY_M1=116,
120 XF_RF_DATA_Z_VELOCITY_M1=117,
122 XF_RF_DATA_PHASE_MASS=118, /* cavitation mass source */
123 XF_RF_DATA_TEMPERATURE_M1=0, /* never stored but symbol is required
125 XF_RF_DATA_TKE_M1=119,
126 XF_RF_DATA_TED_M1=120,
128 XF_RF_DATA_PRESSURE_M2=0, /* never stored but symbol is required */
129 XF_RF_DATA_X_VELOCITY_M2=122,
130 XF_RF_DATA_Y_VELOCITY_M2=123,
131 XF_RF_DATA_Z_VELOCITY_M2=124,
132 XF_RF_DATA_TEMPERATURE_M2=0, /* never stored but symbol is required */
133 XF_RF_DATA_TKE_M2=126,
134 XF_RF_DATA_TED_M2=127,
136 XF_RF_DATA_RUU=128, /* V5 reynolds stress model */
137 XF_RF_DATA_RVV=129, /* V5 reynolds stress model */
138 XF_RF_DATA_RWW=130, /* V5 reynolds stress model */
139 XF_RF_DATA_RUV=131, /* V5 reynolds stress model */
140 XF_RF_DATA_RVW=132, /* V5 reynolds stress model */
141 XF_RF_DATA_RUW=133, /* V5 reynolds stress model */
143 XF_RF_DATA_DPMS_EROSION=134,
144 XF_RF_DATA_DPMS_ACCRETION=135,
146 XF_RF_DATA_FMEAN2=136,
147 XF_RF_DATA_FVAR2=137,
149 XF_RF_DATA_ENTHALPY_M1=138,
150 XF_RF_DATA_ENTHALPY_M2=139,
152 XF_RF_DATA_FMEAN_M1=140,
153 XF_RF_DATA_FMEAN_M2=141,
154 XF_RF_DATA_FVAR_M1=142,
155 XF_RF_DATA_FVAR_M2=143,
156 XF_RF_DATA_FMEAN2_M1=144,
157 XF_RF_DATA_FMEAN2_M2=145,
158 XF_RF_DATA_FVAR2_M1=146,
159 XF_RF_DATA_FVAR2_M2=147,
161 XF_RF_DATA_PREMIXC_M1=148,
162 XF_RF_DATA_PREMIXC_M2=149,
164 /*vof 1,2,3,4 kept for v5 compatibility */
165 XF_RF_DATA_VOF = 150,
166 XF_RF_DATA_VOF_1 = 151,
167 XF_RF_DATA_VOF_2 = 152,
168 XF_RF_DATA_VOF_3 = 153,
169 XF_RF_DATA_VOF_4 = 154,
171 XF_RF_DATA_VOF_M1 = 160 ,
172 XF_RF_DATA_VOF_1_M1 = 161 ,
173 XF_RF_DATA_VOF_2_M1 = 162 ,
174 XF_RF_DATA_VOF_3_M1 = 163 ,
175 XF_RF_DATA_VOF_4_M1 = 164 ,
177 XF_RF_DATA_VOF_M2 = 170 ,
178 XF_RF_DATA_VOF_1_M2 = 171 ,
179 XF_RF_DATA_VOF_2_M2 = 172 ,
180 XF_RF_DATA_VOF_3_M2 = 173 ,
181 XF_RF_DATA_VOF_4_M2 = 174 ,
184 XF_RF_DATA_VOLUME_M2 = 180 ,
185 XF_RF_DATA_WALL_GRID_VELOCITY = 181 ,
188 XF_RF_DATA_SV_T_AUX = 190 , /* auxilliary temperature
190 XF_RF_DATA_SV_T_AP_AUX = 191 , /* auxilliary ap
191 coefficient for particles */
192 XF_RF_DATA_TOTAL_PRESSURE=192,
193 XF_RF_DATA_TOTAL_TEMPERATURE=193,
194 XF_RF_DATA_NRBC_DC=194, /* change in char. var for
198 EXPAND_50_EQUAL(XF_RF_DATA_Y_, 200), /* species */
199 EXPAND_50(XF_RF_DATA_Y_,_M1=, 250), /* species at fist time
201 EXPAND_50(XF_RF_DATA_Y_,_M2=, 300), /* species at second time
203 EXPAND_50_EQUAL(XF_RF_DATA_DR_SURF_, 350), /* surface deposition rate
206 /* Please start next XF_RF_DATA_ subsection ids at 400 or above
207 * to allow room for the addition of more species ids if needed */
209 XF_RF_DATA_PRESSURE_MEAN=400,
210 XF_RF_DATA_PRESSURE_RMS=401,
211 XF_RF_DATA_X_VELOCITY_MEAN=402,
212 XF_RF_DATA_X_VELOCITY_RMS=403,
213 XF_RF_DATA_Y_VELOCITY_MEAN=404,
214 XF_RF_DATA_Y_VELOCITY_RMS=405,
215 XF_RF_DATA_Z_VELOCITY_MEAN=406,
216 XF_RF_DATA_Z_VELOCITY_RMS=407,
217 XF_RF_DATA_TEMPERATURE_MEAN=408,
218 XF_RF_DATA_TEMPERATURE_RMS=409,
219 XF_RF_DATA_VOF_MEAN=410,
220 XF_RF_DATA_VOF_RMS=411,
221 EXPAND_50_EQUAL(XF_RF_DATA_DPMS_Y_,450),
223 /* Don't add section ids here unless you need a large contiguous
225 * Use id's 40-100 first! */
227 XF_RF_DATA_NUT_M1=501,
228 XF_RF_DATA_NUT_M2=502,
230 XF_RF_DATA_RUU_M1=503,
231 XF_RF_DATA_RVV_M1=504,
232 XF_RF_DATA_RWW_M1=505,
233 XF_RF_DATA_RUV_M1=506,
234 XF_RF_DATA_RVW_M1=507,
235 XF_RF_DATA_RUW_M1=508,
237 XF_RF_DATA_RUU_M2=509,
238 XF_RF_DATA_RVV_M2=510,
239 XF_RF_DATA_RWW_M2=511,
240 XF_RF_DATA_RUV_M2=512,
241 XF_RF_DATA_RVW_M2=513,
242 XF_RF_DATA_RUW_M2=514,
244 XF_RF_DATA_ENERGY_M1=515,
245 XF_RF_DATA_ENERGY_M2=516,
247 XF_RF_DATA_DENSITY_M1=517,
248 XF_RF_DATA_DENSITY_M2=518,
250 XF_RF_DATA_DPMS_PDF_1=519,
251 XF_RF_DATA_DPMS_PDF_2=520,
253 /* shell: using 530->539 */
254 XF_RF_DATA_SHELL_CELL_T=530,
255 XF_RF_DATA_SHELL_FACE_T=531,
257 XF_RF_DATA_DELH=600, /* obsolete for >= v6.0*/
258 XF_RF_DATA_DPMS_MOM_AP=601,
259 XF_RF_DATA_DPMS_WSWIRL_AP=602,
260 XF_RF_DATA_X_PULL=603,
261 XF_RF_DATA_Y_PULL=604,
262 XF_RF_DATA_Z_PULL=605,
266 XF_RF_DATA_PDFT_QBAR=610,
267 XF_RF_DATA_PDFT_PHI=611,
268 XF_RF_DATA_PDFT_Q_TA=612,
269 XF_RF_DATA_PDFT_SVOL_TA=613,
270 XF_RF_DATA_PDFT_MASS_TA=614,
272 EXPAND_50_EQUAL(XF_RF_DATA_UDS_,700), /* user defined scalar */
273 EXPAND_50(XF_RF_DATA_UDS_,_M1=, 750), /* user defined scalar
274 * at fist time level */
275 EXPAND_50(XF_RF_DATA_UDS_,_M2=, 800), /* user defined scalar
276 * at second time level */
277 XF_RF_DATA_GRANULAR_PRESSURE=910,
278 XF_RF_DATA_GRANULAR_PRESSURE_M1=0,/* never stored but symbol is
280 XF_RF_DATA_GRANULAR_PRESSURE_M2=0,/* never stored but symbol is
283 XF_RF_DATA_UDM_I=970,
285 /* Don't add section ids here unless you need a large contiguous
287 * Use id's 40-100 and 128-200 first! */
290 EXPAND_50(XF_RF_DATA_Y_,_MEAN=, 1000), /* time average species */
291 EXPAND_50(XF_RF_DATA_Y_,_RMS=, 1050), /* RMS species */
293 EXPAND_50_EQUAL(XF_RF_DATA_Y_EDC_, 1100), /* EDC species */
294 EXPAND_50_EQUAL(XF_RF_DATA_DPMS_SURFACE_SPECIES_, 1150) /* particle