490 nZonePlsFrqEval = -1;
493 ExtinguishConvertColDen2OptDepth = (
realnum)6.22e-18;
495 ExtinguishEnergyPowerLow = (
realnum)-2.43;
502 for(
long i=0; i <
LIMSPC; i++ )
503 lgContMalloc[i] =
false;
510 trans_coef_total = ptr;
514 for (
long i=0; i<
nupper; ++i)
515 trans_coef_total[i] = 1.0;
516 trans_coef_total_stale =
true;
realnum ** ConSourceFcnLocal
realnum * ConOTS_local_OTS_rate
long int fine_opac_nresolv
double opac_mag_B_extended
long int ipEnergyBremsThin
realnum * flux_beam_const_save
realnum * DiffuseLineEmission
realnum ** flux_total_incident
realnum fine_opac_velocity_width
realnum * OccNumbContEmitOut
void rfield_opac_zero(long lo, long ihi)
vector< Energy > tNu[LIMSPC]
vector< realnum > tFluxLog[LIMSPC]
vector< realnum > tslop[LIMSPC]
realnum * ConOTS_local_photons
realnum time_continuum_scale
realnum ExtinguishEnergyPowerLow
void resetCoarseTransCoef()
realnum ExtinguishConvertColDen2OptDepth
const realnum * getCoarseTransCoef()
realnum ExtinguishLeakage
bool trans_coef_total_stale
realnum * flux_time_beam_save
Illuminate::IlluminationType Illumination[LIMSPC]
long int ipFineConVelShift
realnum * OccNumbIncidCont
double extin_mag_V_extended
double opac_mag_V_extended
realnum * flux_isotropic_save
realnum ExtinguishColumnDensity
realnum * OccNumbDiffCont
long int * ipnt_coarse_2_fine
double extin_mag_B_extended
void setCoarseTransCoefPtr(realnum *ptr)
realnum * ExtinguishFactor
realnum OpticalDepthScaleFactor[LIMSPC]
realnum * trans_coef_total
realnum * OccNumbBremsCont
realnum * flux_beam_const
bool lgContMalloc[LIMSPC]
realnum ExtinguishLowEnergyLimit