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CoreMetadata
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INVENTORYMETADATA
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GROUPTYPE:
MASTERGROUP
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GRANULE
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GRANULEID
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NUM_VAL:
1
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VALUE:
"L2_LIDAR"
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QA
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QAFLAG
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NUM_VAL:
1
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VALUE:
"Passed"
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GEOMINMAX
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MINLAT
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NUM_VAL:
1
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VALUE:
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MINLON
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NUM_VAL:
1
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VALUE:
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MAXLAT
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NUM_VAL:
1
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VALUE:
55.4018821716309
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MAXLON
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NUM_VAL:
1
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VALUE:
177.153610229492
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GRING
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GRINGCONTAINER
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CLASS:
"1"
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GRINGLATITUDE
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CLASS:
"1"
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NUM_VAL:
21
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VALUE:
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GRINGLONGITUDE
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CLASS:
"1"
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NUM_VAL:
21
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VALUE:
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Spacecraft_Position_dim_0
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Spacecraft_Position_dim_1
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Tropopause_Temperature_dim_0
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Tropopause_Temperature_dim_1
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Snow_Ice_Surface_Type_dim_0
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DEM_Surface_Elevation_dim_1
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Number_Layers_Found_dim_0
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Number_Layers_Found_dim_1
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Layer_Base_Altitude_dim_0
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Layer_Base_Altitude_dim_1
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Layer_Base_Pressure_dim_0
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Layer_Top_Temperature_dim_1
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Layer_Centroid_Temperature_dim_1
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Midlayer_Temperature_dim_1
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Volume_Depolarization_Ratio_Statistics_dim_0
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Volume_Depolarization_Ratio_Statistics_dim_1
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metadata
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Vdata_field_Product_ID:
L2_LIDAR
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Vdata_field_Date_Time_at_Granule_Start:
2017-06-20T13:04:38.501000Z
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Vdata_field_Date_Time_at_Granule_End:
2017-06-20T13:51:12.022400Z
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Vdata_field_Date_Time_of_Production:
2023-06-02T07:42:52Z
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Vdata_field_Number_of_Good_Profiles:
56160
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Vdata_field_Number_of_Bad_Profiles:
0
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Vdata_field_Initial_Subsatellite_Latitude:
55.56220245
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Vdata_field_Initial_Subsatellite_Longitude:
-158.0101471
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Vdata_field_Final_Subsatellite_Latitude:
-65.68601990
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Vdata_field_Final_Subsatellite_Longitude:
16.78602219
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Vdata_field_Orbit_Number_at_Granule_Start:
59287
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Vdata_field_Orbit_Number_at_Granule_End:
59287
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Vdata_field_Orbit_Number_Change_Time:
-999999.99999998999
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Vdata_field_Path_Number_at_Granule_Start:
72
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Vdata_field_Path_Number_at_Granule_End:
72
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Vdata_field_Path_Number_Change_Time:
-999999.99999998999
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Vdata_field_Lidar_L1_Production_Date_Time:
2022-07-01T23:18:14Z
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Vdata_field_Number_of_Single_Shot_Records_in_File:
56160
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Vdata_field_Number_of_Average_Records_in_File:
18720
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Vdata_field_Number_of_Features_Found:
113137
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Vdata_field_Number_of_Cloud_Features_Found:
52637
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Vdata_field_Number_of_Aerosol_Features_Found:
4439
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Vdata_field_Number_of_Indeterminate_Features_Found:
0
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Vdata_field_Ocean_Fresnel_Reflection_Coefficient_532:
0.021299999999999999
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Vdata_field_MERRA2_Wind_Uncertainty:
0.15060000000000001
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Vdata_field_AMSR_Wind_Correction_Uncertainty:
0.25369999999999998
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Vdata_field_Lidar_Data_Altitudes:
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-
Vdata_field_GEOS_Version:
CLM
-
Vdata_field_Classifier_Coefficients_Version_Number:
4.10
-
Vdata_field_Classifier_Coefficients_Version_Date:
150331
-
Vdata_field_Production_Script:
START_LOG
// Extinction Goodies
// --------------------------------------------------------------
// analysis algorithm: 1 = reserved for future use; 2 = iterative
//
SET EXT_IALG 2
// solver direction for features: 1 = forward; 2 = hybrid
//
SET EXT_DIR 1
// solver direction for clear air:
// 0 = DO NOT SOLVE!; 1 = forward; 2 = backward
//
SET EXT_DIRWC 0
// no signal threshold for clear air regions, specified in terms of
// the number of horizontal range bins averaged (note: WC = \"wash
// coat\", and is a bit of terminology left over from the very first
// version of the extinction algorithm)
//
SET EXT_NWCTHR 10
// max iterations allowed for a constrained clear air solution
//
SET EXT_ITWC 1
// max iterations to match the constraint condition (i.e., to match the
// measured optical depth) for lidar ratio retrievals in simple features
//
SET EXT_ITVAR 50
// max iterations for the Newton's method solver at each step
// (i.e., range bin) of the extinction retrieval engine
//
SET EXT_MAXITNS 100
// Max number of Uncertainty iterations for dbetaP(j) convergence in SOLVE_IT
//
SET EXT_MaxUncIterations 1000
// Max number of Corrections to Sp to prevent divergence high or low in SOLVE_IT
//
SET EXT_MaxSPCorrections 1600
// 0 = extinction error calculations are OFF; 1 = error calculations ON
//
SET EXT_IERRORS 1
// if true, assume 1064 optical depth is identical to the 532 optical
// depth; use the 1064 optical depth as a constraint to iterate the
// solution at 1064 (not implemented in the Fortran library!)
//
SET EXT_MATCH532 0
// if FALSE, will output diagnostic information from the Fortran module
// to the computer screen
//
SET EXT_AU 1
// maximum allowed backscatter coefficient; exceeding this limit will
// terminate the profile solver
//
SET EXT_BETAMAX 100.0;
// convergence tolerance (relative difference) in profile solving engine
//
SET EXT_TOLNCE 0.000001
//
SET EXT_TAUFWD 10.0
// maximum allowed optical depth within the profile solver; exceeding this
// limit will terminate the profile solver
//
SET EXT_TAUMAX 40.0
// optical depth at which a feature is considered to be totally attenuating;
// exceeding this limit will terminate the solver
//
SET EXT_TAUATTN 40.0
// maximum absolute (not relative!) uncertainty allowed within the profile
// solver; exceeding this limit will terminate the solver
SET EXT_DTAUMAX 100.0
// scaling factor controlling opaque layer lidar ratio iterations
//
SET EXT_T2FACT 5.0
// minimum acceptable value of lidar ratio enforced by the profile solver
//
SET EXT_SPMIN 0.05
// maximum acceptable value of lidar ratio enforced by the profile solver
//
SET EXT_SPMAX 250.0
// default value if S > EXT_SPMAX or S < EXT_SPMIN
//
SET EXT_SPDEF 30.0
// default value for the uncertainty in the lidar ratio
//
SET EXT_DSPDEF 7.5
// maximum relative uncertainty in the complex feature optical depth;
// exceeding this value means that a constrained/consistent solution
// for a complex feature will *not* be attempted
//
SET EXT_RTAUCFLIM 0.0
// max iterations allowed for converging to a 'consistent solution' when
// solving complex features
//
SET EXT_maxComplexFeatureIterations 5
// max iterations allowed for converging to a 'consistent solution' when
// solving embedded features
//
SET EXT_maxEmbeddedFeatureIterations 3
// optical depth convergence tolerance for lidar ratio retrievals in simple features
//
SET EXT_lidarRatioConvergenceTolerance 0.0001
// optical depth convergence tolerance for the solution of complex features
//
SET EXT_complexFeatureConvergenceTolerance 0.001
// optical depth convergence tolerance for the solution of embedded features
//
SET EXT_embeddedFeatureConvergenceTolerance 0.001
// SCA Goodies
// ----------------------------
SET SCA_DEFAULT_CIRRUS_CLOUD_ETA 0.60
SET SCA_CIRRUS_CLOUD_LIDAR_RATIO 28.3
SET SCA_CIRRUS_CLOUD_LIDAR_RATIO_RELATIVE_ERROR 0.25
SET SCA_DEFAULT_WATER_CLOUD_ETA 0.60
SET SCA_WATER_CLOUD_LIDAR_RATIO 17.7
SET SCA_WATER_CLOUD_LIDAR_RATIO_RELATIVE_ERROR 0.15
SET SCA_MIN_CLOUD_TEMP -45.0
SET SCA_MAX_CLOUD_TEMP -15.0
SET SCA_polarIntBetaThreshold 0.0015
SET SCA_depolThresholdMain 0.075
SET SCA_depolThresholdSec 0.2
SET SCA_landIntBetaThreshold 0.0005
SET SCA_oceanIntBetaThreshold 0.0015
SET SCA_oceanDepolarizationThreshold 0.05
SET SCA_elevatedLayerPBLthreshold_Ocean 2.5
SET SCA_elevatedLayerPBLthreshold_Land 2.5
SET SCA_dustyMarineMaxBaseAltitude 2.5
SET SCA_aerosolConfidenceThreshold 1.0
SET SCA_intBetaUncWeight532 1.0
SET SCA_intBetaUncWeight1064 1.0
SET SCA_depolUncWeight 1.0
SET SCA_validFeatureGammaPrimeThreshold 0.27
SET SCA_CONFIDENCE_INTERVAL 0.0 0.2 0.5 0.7
SET SCA_PHASE_CONFIDENCE_INTERVAL 0.0 0.2 0.5 0.7
// cloud subtyping constants
SET LOW_OVERCAST_THRESH 0.98
SET LOW_BROKEN_THRESH 0.40
SET SCA_HIGH_CLOUD_PRESS_THRESH 440.0
SET SCA_MID_CLOUD_PRESS_THRESH 680.0
//
// Tropospheric Aerosol
//
// 0 = UNKNOWN_AEROSOL
// 1 = MARINE
// 2 = DESERT_DUST
// 3 = POLLUTED_CONTINENTAL
// 4 = CLEAN_CONTINENTAL (background)
// 5 = POLLUTED_DUST
// 6 = BIOMASS_BURNING
// 7 = DUSTY_MARINE
//
// default = type 4
//
// 0 1 2 3 4 5 6 7
// -------------------------------------------------------------------------
SET SCA_lidar_ratio_532 35.0 23.0 44.0 70.0 53.0 55.0 70.0 37.0
SET SCA_lidar_ratio_1064 35.0 23.0 44.0 30.0 30.0 48.0 30.0 37.0
// 0 1 2 3 4 5 6 7
// -----------------------------------------------------------------------------------------------
SET SCA_AEROSOL_LIDAR_RATIO_532_RELATIVE_ERROR 0.40 0.22 0.20 0.35 0.45 0.40 0.23 0.40
SET SCA_AEROSOL_LIDAR_RATIO_1064_RELATIVE_ERROR 0.40 0.22 0.30 0.45 0.55 0.50 0.60 0.40
//
// Stratospheric Aerosol
//
// 0 = UNDETERMINED
// 1 = PSC_AEROSOL
// 2 = VOLCANIC_ASH
// 3 = SULFATE
// 4 = SMOKE
// 5 = UNCLASSIFIED
//
// -------------------------------------------------------------------------------
SET SCA_stratos_aerosol_lidar_ratio_532 50.0 50.0 61.0 50.0 70.0 50.0
SET SCA_stratos_aerosol_lidar_ratio_1064 50.0 25.0 44.0 30.0 30.0 30.0
// 0 1 2 3 4 5
// --------------------------------------------------------------------------------------
SET SCA_STRATOS_AEROSOL_LIDAR_RATIO_532_RELATIVE_ERROR 0.40 0.40 0.28 0.35 0.23 0.35
SET SCA_STRATOS_AEROSOL_LIDAR_RATIO_1064_RELATIVE_ERROR 0.40 0.40 0.30 0.45 0.60 0.45
// Stratospheric SCA Parameters
//
SET SCA_PSC_TemperatureThreshold -70.0
SET SCA_PSC_LatitudeThreshold 50.0
SET SCA_StratosphericAerosolLowIABThreshold 0.00025
SET SCA_VolcanicAshDepolarizationThreshold 0.25
SET SCA_StratosphericSmokeDepolarizationThreshold 0.075
// PSC Seasons beginning month, ending month. Months numbered from 1 through 12
// ----------------------------------------------------------------------------
SET SCA_PSC_ArcticSeason 12 2
SET SCA_PSC_AntarcticSeason 5 10
// SCAARF Parameters: factional coverage, min elevation above surface
//
SET SCAARF_Parameters 0.5 0.24
//
// parameters defining the clear air search region beneath transparent features
//
SET DeltaZOffset 0.24
SET DeltaZRegionSize 12.0
SET DeltaZMinRegion 2.0
SET FEATURE_REMOVED_FLAG -9999.0
SET MAX_NUMBER_OF_FEATURES 15
SET NUMBER_OF_REGIONS 5
SET NUMBER_OF_LIGHTINGS 2
SET DAY 0
SET NIGHT 1
SET EXT_ZERO 33
SET MIN_T2_DISTANCE 1.50
SET MAX_T2_DISTANCE 5.00
SET MAX_GAP_DISTANCE_CA 9.00
//
// SET some_variable <day value> <night value>
//
SET S_REASONABLE 12.0 25.0
SET T0 1.5 1.5
SET T1 1.5 1.5
SET T2 1.0 1.0
// SET BETA_MAX_AEROSOL <day value> <night value>
SET BETA_MAX_AEROSOL 0.0125 0.0075
SET CLEAR_AIR_WINDOW_SIZE 1.5 1.0
SET CLEAR_AIR_SLOPE_WEIGHT 1.0 1.0
SET CLEAR_AIR_NSR_WEIGHT 0.0 0.25
SET CLEAR_AIR_MEAN_WEIGHT 0.0 0.0
//
// SET some_variable <20-30km> <8-20km> <8-20km> <-0.5-8km> <below -0.5km>
//
SET SPIKE_THRESHOLD_FACTOR 50.0 10.0 10.0 10.0 100.0
SET MIN_SPIKE_THICKNESS 0.6 0.36 0.18 0.09 0.15
SET MIN_FEATURE_THICKNESS 1.5 0.54 0.30 0.15 0.60
SET MIN_CLEAR_AIR_DISTANCE 0.6 0.54 0.48 0.42 0.36
SET MAX_GAP_DISTANCE 1.0 1.0 1.0 0.5 0.5
SET REGION_UPPER_BOUND_ALTITUDE 40.0 30.1 20.2 8.2 -0.5
SET REGION_LOWER_BOUND_ALTITUDE 30.1 20.2 8.2 -0.5 -2.0
SET ALTITUDE_CORRECTION_ARRAY_532 1.0 1.2909944 2.236068 3.1622777 1.0
SET ALTITUDE_CORRECTION_ARRAY_1064 1.0 1.2909944 2.236068 3.1622777 1.0
DEFINE_RESOLUTION single_shot 1 -1 1
DEFINE_RESOLUTION 1_km 2 1 3
DEFINE_RESOLUTION 5_km 3 1 15
DEFINE_RESOLUTION 20_km 4 3 4
DEFINE_RESOLUTION 80_km 5 4 4
SET EXTINCTION_RESOLUTIONS 3 4 5
BUILD_COLUMN_IAB_VALUES
// set scanner flags for each resolution
//
// SET SCANNER_FLAGS <resolution> <look_ahead> <thick> <refinetop> <refinebase> <gap>
//
// Each of the five flags ( <look_ahead>, <thick>, <refinetop>, <refinebase>, <gap> )
// can be set to either 0 (off) or 1 (on), independent of each other. Each flag controls
// a single scanner operation, as follows....
// -o- <resolution> is the resolution to set the flags for. Flags are set independently
// for each reosolution.
// -o- <look_ahead> controls whether the look-ahead region is processed. For more information
// on the look-ahead region, please see the reference for the system variables,
// LOOK_AHEAD_PERCENTAGE and LOOK_AHEAD_DISTANCE.
// -o- <thick> controls the operation of the minimum thickness checker. If this is turned
// off, any 'spike' will be considered a feature, regardless of thickness. For more
// information, please see the system variable reference for MIN_FEATURE_THICKNESS and
// MIN_SPIKE_THICKNESS.
// -o- <refinetop> controls top refinement for the feature. Note that the current refine_top
// algorithm contains only a simple check to make sure that no points above the current
// feature top exceed the threshold.
// -o- <refinebase> controls the base refinement for the feature.
// -o- <gap> controls the gap 'stitching' algorithm. When on, this sub-functor joins spatially
// close features into a single feature using values stored in the system variable
// MAX_GAP_DISTANCE.
SET SCANNER_FLAGS 1 0 1 0 0 0
SET SCANNER_FLAGS 2 0 1 0 0 0
SET SCANNER_FLAGS 3 1 1 0 1 1
SET SCANNER_FLAGS 4 1 1 0 1 1
SET SCANNER_FLAGS 5 1 1 0 1 1
// turn the false positive filter OFF for the full resolution scan!!
SET FALSE_POSITIVE_THRESHOLD 1 0.0000
SET FALSE_POSITIVE_THRESHOLD 2 0.0008
SET FALSE_POSITIVE_THRESHOLD 3 0.0016
SET FALSE_POSITIVE_THRESHOLD 4 0.0004
SET FALSE_POSITIVE_THRESHOLD 5 0.0001
SET LOOK_AHEAD_PERCENTAGE 1 0.60
SET LOOK_AHEAD_PERCENTAGE 2 0.60
SET LOOK_AHEAD_PERCENTAGE 3 0.60
SET LOOK_AHEAD_PERCENTAGE 4 0.85
SET LOOK_AHEAD_PERCENTAGE 5 0.85
AVERAGE_ALL_DATA 1 0 582
AVERAGE_ALL_DATA 2 0 582
AVERAGE_ALL_DATA 3 0 582
//
// Surface detection runtime parameters
//
SET DEMOffsetWater 4
SET DEMOffsetLand 9
SET SFCRMSMultiplier0532 24.0
SET SFCRMSMultiplier1064 8.0
SET MaxNumberBinRange532 2
SET MaxNumberBinRange1064 4
SET MaxBinDifference 2
SET MinColorRatioValue -9.999E19
SET RefineTopDerivativesThreshold0532 0.1
SET RefineTopSignalThreshold0532 0.1
SET RefineTopDerivativesThreshold1064 0.1
SET RefineTopSignalThreshold1064 0.1
SET RefineMinScaledRMSValues0532 6.864e-05
SET RefineMinScaledRMSValues1064 3.396e-03
SET RefineBaseRMSmultiplier0532 3.0
SET RefineBaseRMSmultiplier1064 3.0
SET NSAMinRange 2
// Perform surface detection at 333m, 1km, 5km, 20km, and 80 km resolutions
SURFACE_DETECTION 1 2 3 4 5
// Wind speed values below 0.025 m/s cause ocean surface retro reflectance > 1
SET ODCOD_MIN_WIND_SPEED 0.025
// 43 m/s is a limit set by whitecap fraction which will give a value > 1 if windspeed is > ~43.75 m/s.
// The highest wind speeds are on the order of 100-140 m/s with Cat 5 hurricanes being >= 70 m/s
// Using an upper end limit of 43 m/s (or even less) still makes sense because bubbles,
// turbulence, and whitecap effects are not taken into account in the whitecap fraction model
SET ODCOD_MAX_WIND_SPEED 43.0
// Using the equation for index of refraction for sea water from Quan and Fry, (1995)
// with Sea Surface Temperature of 16.1 C and Sea Surface Salinity of 35 ppt
// and an index of refraction for air of 1.00029 values of:
// 0.0213 at 532nm
// 0.0202 for 1064nm
// can be calculated.
SET ODCOD_FRESNEL_COEFF_532 0.0213
SET ODCOD_FRESNEL_COEFF_1064 0.0202
// This value is used to set the QC_BIT_AREA_TOO_HIGH the value is used but the
// retrieval should be considered suspect.
SET ODCOD_MAX_IRF_AREA 1.0
// This is 1 because if there is a spike at all, we can always grab
// additional points to make enough to attempt a retrieval.
SET ODCOD_MIN_SURFACE_POINTS_TO_ATTEMPT 1
// We must have at least two in the end to solve because we have to have a
// ratio of two points to find the time delay.
SET ODCOD_MIN_SURFACE_POINTS_TO_SOLVE 2
// More than this number of points is a suspect surface spike and is flagged as suspicious
SET ODCOD_MAX_BELIEVABLE_SURFACE_POINTS 4
// Single shot resolution i.e. 1 is required as the first OCEAN_DERIVED_COD command parameter.
OCEAN_DERIVED_COD 1 2 3
//
// interpolate over negative surface anomalies in the atmospheric
// portions of the data
//
INTERPOLATE_NSA 1
//
// re-average to include INTERPOLATE_NSA values
//
AVERAGE_ALL_DATA 1 0 582
AVERAGE_ALL_DATA 2 0 582
AVERAGE_ALL_DATA 3 0 582
CALC_MBV 3 1
CALC_SR_THRESHOLD 3
// scan 5km profiles starting with bin 33
SCAN_PROFILE 3 33
//
// BLAH and HRCF
// -----------------------------------------------------------------------
// for the 1/3-km scan, BLAH will build the appropriate 1064 nm scattering
// ratio threshold...however, since that's not so for the 1-km scan (which
// still uses the 532 data), we'll have to build the 1-km threshold here
// in the script file
CALC_MBV 2 1
CALC_SR_THRESHOLD 2
CALC_SR_THRESHOLD 3
// default boundary layer top alitutude to use for cloud clearing in BLaH
SET DefaultBoundaryLayerTop 4.0
SET MIN_SPIKE_THICKNESS 0.6 0.36 0.18 0.045 0.15
BLAH 3 2 1
CALC_FEATURE_STATS 1
CALC_FEATURE_STATS 2
CALC_FEATURE_STATS 3
// COMMENT IF BUG 1534 NOT INCLUDED
PERFORM_SC 1 2 3
CLEAR_FEATURES 3
AVERAGE_ALL_DATA 4 0 582
CALC_MBV 4 1
CALC_SR_THRESHOLD 4
SMOOTH_SR 4 0 33 582 4 5
// note: spike detection is effectively turned OFF for the 20-km scan
SET SPIKE_THRESHOLD_FACTOR 100.0 25.0 25.0 25.0 1000.0
SET MIN_SPIKE_THICKNESS 1.8 0.90 0.36 0.24 0.90
SET MIN_FEATURE_THICKNESS 1.5 0.72 0.30 0.18 0.60
// scan 20km profiles starting with bin 33
SCAN_PROFILE 4 33
CALC_FEATURE_STATS 4
CLEAR_FEATURES 4
AVERAGE_ALL_DATA 5 0 582
CALC_MBV 5 1
CALC_SR_THRESHOLD 5
SMOOTH_SR 5 0 33 582 4 5
// note: spike detection is effectively turned OFF for the 80-km scan
SET SPIKE_THRESHOLD_FACTOR 100.0 50.0 50.0 50.0 1000.0
SET MIN_SPIKE_THICKNESS 1.8 0.90 0.42 0.27 0.45
SET MIN_FEATURE_THICKNESS 1.5 0.72 0.36 0.24 0.60
// scan 80km profiles starting with bin 33
SCAN_PROFILE 5 33
CALC_FEATURE_STATS 5
CLEAR_FEATURES 5
PERFORM_SC 1 2 3 4 5
//
// commands necessary for 'cirrus stitching'
//
RESET_AVERAGING_WEIGHTS
AVERAGE_ALL_DATA 3 0 582
//
// Merges feature that are separated by no more than 180 m
// starting index 137, ending at 390
//
MERGE_FEATURES 2.0 -2.0 0.180
CALC_FEATURE_STATS 3
CLEAR_FEATURES 3
AVERAGE_ALL_DATA 4 0 582
CALC_FEATURE_STATS 4
CLEAR_FEATURES 4
AVERAGE_ALL_DATA 5 0 582
CALC_FEATURE_STATS 5
CLEAR_FEATURES 5
PERFORM_SC 1 2 3 4 5
//
// end of 'cirrus stitching' section
//
//
// commands necessary for 'aerosol base extension'
//
SET EXTEND_AEROSOL_BASE_MAX_GAP_DISTANCE 2.50
SET EXTEND_AEROSOL_MAX_NEGATIVES_FRACTION 0.40
EXTEND_AEROSOL_BASE_ALTITUDE
//
// end of 'aerosol base extension' section
// Refresh the 5-km averaged data in preparation for the extinction processing
RESET_AVERAGING_WEIGHTS
AVERAGE_ALL_DATA 3 0 582
CALC_ADJACENCY
//
// valid values are 0 to 1
//
SET CirrusFringes_AerosolFractionThreshold 0.35
// 0 = MINIMAL_ADJACENCY
// 1 = CIRRUS_ONLY_ADJACENCY
// 2 = HIGH_FRACTION_ADJACENCY
IDENTIFY_CIRRUS_FRINGES 0
// Save the original color ratio for using in extend smoke layer
PREPARE_FOR_SMOKE_LAYER_BASE_EXTENSION
PERFORM_EXTINCTION2
//
// once again, refresh the 5-km averaged data in preparation for the extinction processing
//
RESET_AVERAGING_WEIGHTS
AVERAGE_ALL_DATA 3 0 582
// Process the new extending smoke layers about clouds
//
// SET SMOKE_TO_CLOUD_GAP_DISTANCE <day value> <night value>
//
// NOTE: parameter names and values are notional, and nowhere near finalized at this point
//
SET SMOKE_TO_CLOUD_GAP_DISTANCE 4.5 3.0
SET GAP_SCATTERING_RATIO_1064 2.0 2.0
SET CLOUD_COLOR_RATIO 1.4 1.4
//
// execute the new command
//
EXTEND_SMOKE_LAYER_BASE_ALTITUDE
// Check the extended smoke layers results
DISPLAY_EXTENDED_SMOKE_FEATURE
//
// recalculate extinction for the whole chunk
//
CALC_ADJACENCY
PERFORM_EXTINCTION2
//
// at this point we resume our previous processing flow
//
HARVEST_POST_EXTINCTION_DATA
// Bug 1662 Calculation of optical depths above water clouds must be done after PERFORM_EXTINCTION2
CALC_OPTICAL_DEPTH_ABOVE_H2O_CLOUD 1
CALC_OPTICAL_DEPTH_ABOVE_H2O_CLOUD 2
CALC_OPTICAL_DEPTH_ABOVE_H2O_CLOUD 3
COMPUTE_SURFACE_STATS
CREATE_VERTICAL_MASK
CREATE_QC
RECORD_CLOUDS_5KM 3 4 5
RECORD_CLOUDS_1KM
RECORD_CLOUDS_SINGLE
RECORD_AEROSOLS_5KM 3 4 5
RECORD_LAYERS_5KM 3 4 5
RECORD_LAYERS_5KM_DIAGNOSTIC 3 4 5
RECORD_PROFILES_5KM
|