7
0
1
2
3
4
3
0
0
0
0
0
0
1
1
17
2
4
180
180
67
8
11
12
19
20
84
85
87
88
89
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
6.37814e+06
0.00669435
1
1
1
233
7.07804e+06
1.71573
0.0686667
1.79838
7.46075e+06
527450
7.60155e+06
1.09065e+06
1
180
"RUNTIME ENVIRONMENT INFORMATION\\012DATE OF RUN: Sun Nov 7 01:25:22 1999\\012HOST INFO: yngvi: (IRIX64 6.5 04151556 IP27)\\012RUN BY: rrando\\012UNIQUE FILE NAME: MISR_AM1_AGP_P017_F01_23.hdf\\012ENVIRONMENT VARIABLES\\012 PGSHOME = /usr/toolkits/SDPTK5.2.5v1.00/nodebug/TOOLKIT\\012 PGS_PC_INFO_FILE = /data/geocal_0/agp_gen/database/991106.pcf.2\\012 PGSMSG = /usr/toolkits/SDPTK5.2.5v1.00/nodebug/TOOLKIT/message\\012 L1B2 starting block. \\0120 ! end block override\\012 ! ending block to process. If =0, use L1B2 ending block. \\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,1)\\012 ! channel needed at 1x1 res, (band=1:4,cam=1)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,2)\\012 ! channel needed at 1x1 res, (band=1:4,cam=2)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,3)\\012 ! channel needed at 1x1 res, (band=1:4,cam=3)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,4)\\012 ! channel needed at 1x1 res, (band=1:4,cam=4)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,5)\\012 ! channel needed at 1x1 res, (band=1:4,cam=5)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,6)\\012 ! channel needed at 1x1 res, (band=1:4,cam=6)\\012.false. .false. .true. .false ! ep_res_1x1_needed(:,7)\\012 ! channel needed at 1x1 res, (band=1:4,cam=7)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,8)\\012 ! channel needed at 1x1 res, (band=1:4,cam=8)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,9)\\012 ! channel needed at 1x1 res, (band=1:4,cam=9)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,1)\\012 ! channel needed at 4x4 res, (band=1:4,cam=1)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,2)\\012 ! channel needed at 4x4 res, (band=1:4,cam=2)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,3)\\012 ! channel needed at 4x4 res, (band=1:4,cam=3)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,4)\\012 ! channel needed at 4x4 res, (band=1:4,cam=4)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,5)\\012 ! channel needed at 4x4 res, (band=1:4,cam=5)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,6)\\012 ! channel needed at 4x4 res, (band=1:4,cam=6)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,7)\\012 ! channel needed at 4x4 res, (band=1:4,cam=7)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,8)\\012 ! channel needed at 4x4 res, (band=1:4,cam=8)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,9)\\012 ! channel needed at 4x4 res, (band=1:4,cam=9)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,1)\\012 ! channel needed at 1x1 res, (band=1:4,cam=1)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,2)\\012 ! channel needed at 1x1 res, (band=1:4,cam=2)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,3)\\012 ! channel needed at 1x1 res, (band=1:4,cam=3)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,4)\\012 ! channel needed at 1x1 res, (band=1:4,cam=4)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,5)\\012 ! channel needed at 1x1 res, (band=1:4,cam=5)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,6)\\012 ! channel needed at 1x1 res, (band=1:4,cam=6)\\012.false. .false. .false. .false ! tp_res_1x1_needed(:,7)\\012 ! channel needed at 1x1 res, (band=1:4,cam=7)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,8)\\012 ! channel needed at 1x1 res, (band=1:4,cam=8)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,9)\\012 ! channel needed at 1x1 res, (band=1:4,cam=9)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,1)\\012 ! channel needed at 4x4 res, (band=1:4,cam=1)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,2)\\012 ! channel needed at 4x4 res, (band=1:4,cam=2)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,3)\\012 ! channel needed at 4x4 res, (band=1:4,cam=3)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,4)\\012 ! channel needed at 4x4 res, (band=1:4,cam=4)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,5)\\012 ! channel needed at 4x4 res, (band=1:4,cam=5)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,6)\\012 ! channel needed at 4x4 res, (band=1:4,cam=6)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,7)\\012 ! channel needed at 4x4 res, (band=1:4,cam=7)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,8)\\012 ! channel needed at 4x4 res, (band=1:4,cam=8)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,9)\\012 ! channel needed at 4x4 res, (band=1:4,cam=9)\\0120.0 ! extrn_min_snow_ice_pcnt\\012 ! minimum acceptable snow/ice percent value from external source\\012100.0 ! extrn_max_snow_ice_pcnt\\012 ! maximum acceptable snow/ice percent value from external source\\0120.0 ! extrn_min_snow_water_eq\\012 ! min acceptable snow water equivalent value from external source (mm)\\0121000.0 ! extrn_max_snow_water_eq\\012 ! max acceptable snow water equivalent value from external source (mm)\\0120.0 ! extrn_min_cloud_height\\012 ! minimum acceptable cloud height value from external source (km)\\01225.0 ! extrn_max_cloud_height\\012 ! maximum acceptable cloud height value from external source (km)\\0121 ! rdqi1\\012 ! maximum acceptable RDQI used in averaging data to appropriate resolution\\0123 ! rdqi2\\012 ! RDQI val to use during the computation of avg RDQI, for each RDQI > RDQI1\\0120 ! rdqi4\\012 ! maximum acceptable RDQI used in calculating BRFs\\0120.01 ! mu0_thresh\\012 ! regional cosine of solar zenith angle threshold\\0123 ! ref_band\\012 ! reference band (red band)\\01240.8 ! cam_line_repeat_time\\012 ! MISR camera line repeat time (msec)\\012.0001 ! BRF scale factor\\012!------------------------------------------------\\012! Threshold parameters\\012! Reference: None\\012! \\012!------------------------------------------------\\0120.0 ! min_rlra_height\\012 ! minimum acceptable value for RLRA height (m)\\01220000.0 ! max_rlra_height\\012 ! maximum acceptable value for RLRA height (m)\\0120.0 ! min_texture_index\\012 ! minimum acceptable value for texture index\\01210.0 ! max_texture_index\\012 ! maximum acceptable value for texture index\\012175.0 ! min_temperature\\012 ! minimum acceptable value for temperature (K)\\012340.0 ! max_temperature\\012 ! maximum acceptable value for temperature (K)\\0126.0 ! max_brf_value\\012 ! maximum acceptable value for BRF\\0120.0 ! min_albedo_value\\012 ! minimum acceptable value for albedo\\0126.0 ! max_albedo_value\\012 ! maximum acceptable value for albedo\\01280.0 ! max_view_angle_along\\012 ! maximum view angle in along-track direction (degrees)\\01225.0 ! max_view_angle_cross\\012 ! maximum view angle in cross-track direction (degrees)\\012!------------------------------------------------\\012! TOA Albedo Retrieval Configuration File parameters\\012! Reference: Level 2 Top-of-Atmosphere Albedo Algorithm\\012! Theoretical Basis Document, JPL D-13401, Rev B\\012!------------------------------------------------\\0120.04 ! mu0_thresh_albedo\\012 ! minimum cosine of solar zenith angle for calculation of albedos\\0128 ! max_brf_cam_dist_t\\012 ! maximum camera distance for filling in missing side-leaving BRFs\\0121 ! max_brf_cam_dist_s\\012 ! maximum camera distance for filling in missing side-leaving BRFs\\0120.0 ! min_liquid_cloud_temp\\012 ! minimum temperature for setting cloud phase = liquid (degrees C)\\012-43.0 ! max_ice_cloud_temp\\012 ! maximum temperature for setting cloud phase = ice (degrees C)\\0126 ! min_angle_det_clear\\012 ! minimum number of angles needed for applying Deterministic (clear) model\\0120.240 0.094 0.043 0.015 ! rayleigh_std\\012 ! standard Rayleigh optical depth, for each spectral band\\0128.0 ! scale_ht\\012 ! atmospheric scale height, H (km)\\0124 ! niter_det_clear\\012 ! number of iterations for clear sky deterministic model fit\\0122.0 ! chi_sq_thresh_azm\\012 ! threshold for determining goodness of clear-sky AZM fit\\01210 ! nbin_mu\\012 ! number of cosine of zenith angle sub-bins\\01290 ! nbin_phi\\012 ! number of azimuth angle sub-bins\\0120.9 ! mu0_thresh_saw\\012 ! minimum value of mu0 above which pure Solid Angle Weighting is used\\01230.0 ! toa_altitude\\012 ! TOA altitude for referencing expansive albedos (km)\\0125 ! nblock_expansive\\012 ! number of 140.8-km blocks contributing to expansive albedo calculation\\0120 ! force_albedo_method\\012 ! force albedo code through one method: 0 - do not force; 1 - cloudy determ;\\012 ! 2 - cloudy stoch; 3 - clear determ; 4 - solid angle weighting\\0121.640 ! alb_broadband_zeropoint\\012 ! a_0 regression coefficient to use for broadband albedo calculation\\0120.170 0.210 -0.18 0.530 ! alb_broadband_coeff\\012 ! coefficients (blue-band, green-band, red-band, nir-band in order)\\012 ! to use in calculating the broadband albedo\\0121368.0 ! alb_broadband_I0b\\012 ! \"I0_b\" coefficient to use in albedo broadband calculation\\0121 ! cssc_search_dist\\012 ! distance from center of lat/long cell to search for nearest land class, \\012 ! expressed as a whole number of CSSC cells\\0128 ! min_localb_cameras\\012 ! minimum number of cameras that satisfy criteria for computing local\\012 ! albedo - to crop local albedo at swath edges\\0121 ! reset_localb_to_fill\\012 ! whether or not to reset local albedo values at filled RLRAs to BADVALUE;\\012 ! 0 = do not reset; 1 = reset\\01210000.0 ! rlp_horiz_segment_len\\012 ! horizontal distance in meters over which look vectors expressed in SOM\\012\\011 ! coords can be linearly interpolated to give acceptable results\\0122 ! rlra_filter\\012 ! type of RLRA filtering to do in RLP: 0 = do not replace RLRA BAD_VALUEs;\\012 ! 1 = replace all BAD_VALUEs with 0.0; 2 = replace all BAD_VALUES with an\\012 ! average of nearby RLRA values\\0120 ! rlra_smooth\\012 ! whether to do RLRA smoothing in RLP:\\012 ! 0 = do not smooth RLRAs; 1 = smooth RLRAs after replacement\\012"
"INPUT FILES INFORMATION\\012 /data/production/gen/agp/database_new/database/path017/MISR_AM1_AGP_BLOCK_P017_23\\012 /data/bank/iagp/database\\012 /data/bank/did/database\\012 /data/bank/did/MeanSeaLevel/current/geoid_2160h_4320w.half\\012ts/SDPTK5.2.5v1.00/nodebug/TOOLKIT\\012 PGS_PC_INFO_FILE = /data/geocal_0/agp_gen/database/991106.pcf.2\\012 PGSMSG = /usr/toolkits/SDPTK5.2.5v1.00/nodebug/TOOLKIT/message\\012 L1B2 starting block. \\0120 ! end block override\\012 ! ending block to process. If =0, use L1B2 ending block. \\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,1)\\012 ! channel needed at 1x1 res, (band=1:4,cam=1)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,2)\\012 ! channel needed at 1x1 res, (band=1:4,cam=2)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,3)\\012 ! channel needed at 1x1 res, (band=1:4,cam=3)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,4)\\012 ! channel needed at 1x1 res, (band=1:4,cam=4)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,5)\\012 ! channel needed at 1x1 res, (band=1:4,cam=5)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,6)\\012 ! channel needed at 1x1 res, (band=1:4,cam=6)\\012.false. .false. .true. .false ! ep_res_1x1_needed(:,7)\\012 ! channel needed at 1x1 res, (band=1:4,cam=7)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,8)\\012 ! channel needed at 1x1 res, (band=1:4,cam=8)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,9)\\012 ! channel needed at 1x1 res, (band=1:4,cam=9)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,1)\\012 ! channel needed at 4x4 res, (band=1:4,cam=1)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,2)\\012 ! channel needed at 4x4 res, (band=1:4,cam=2)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,3)\\012 ! channel needed at 4x4 res, (band=1:4,cam=3)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,4)\\012 ! channel needed at 4x4 res, (band=1:4,cam=4)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,5)\\012 ! channel needed at 4x4 res, (band=1:4,cam=5)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,6)\\012 ! channel needed at 4x4 res, (band=1:4,cam=6)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,7)\\012 ! channel needed at 4x4 res, (band=1:4,cam=7)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,8)\\012 ! channel needed at 4x4 res, (band=1:4,cam=8)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,9)\\012 ! channel needed at 4x4 res, (band=1:4,cam=9)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,1)\\012 ! channel needed at 1x1 res, (band=1:4,cam=1)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,2)\\012 ! channel needed at 1x1 res, (band=1:4,cam=2)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,3)\\012 ! channel needed at 1x1 res, (band=1:4,cam=3)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,4)\\012 ! channel needed at 1x1 res, (band=1:4,cam=4)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,5)\\012 ! channel needed at 1x1 res, (band=1:4,cam=5)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,6)\\012 ! channel needed at 1x1 res, (band=1:4,cam=6)\\012.false. .false. .false. .false ! tp_res_1x1_needed(:,7)\\012 ! channel needed at 1x1 res, (band=1:4,cam=7)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,8)\\012 ! channel needed at 1x1 res, (band=1:4,cam=8)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,9)\\012 ! channel needed at 1x1 res, (band=1:4,cam=9)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,1)\\012 ! channel needed at 4x4 res, (band=1:4,cam=1)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,2)\\012 ! channel needed at 4x4 res, (band=1:4,cam=2)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,3)\\012 ! channel needed at 4x4 res, (band=1:4,cam=3)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,4)\\012 ! channel needed at 4x4 res, (band=1:4,cam=4)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,5)\\012 ! channel needed at 4x4 res, (band=1:4,cam=5)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,6)\\012 ! channel needed at 4x4 res, (band=1:4,cam=6)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,7)\\012 ! channel needed at 4x4 res, (band=1:4,cam=7)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,8)\\012 ! channel needed at 4x4 res, (band=1:4,cam=8)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,9)\\012 ! channel needed at 4x4 res, (band=1:4,cam=9)\\0120.0 ! extrn_min_snow_ice_pcnt\\012 ! minimum acceptable snow/ice percent value from external source\\012100.0 ! extrn_max_snow_ice_pcnt\\012 ! maximum acceptable snow/ice percent value from external source\\0120.0 ! extrn_min_snow_water_eq\\012 ! min acceptable snow water equivalent value from external source (mm)\\0121000.0 ! extrn_max_snow_water_eq\\012 ! max acceptable snow water equivalent value from external source (mm)\\0120.0 ! extrn_min_cloud_height\\012 ! minimum acceptable cloud height value from external source (km)\\01225.0 ! extrn_max_cloud_height\\012 ! maximum acceptable cloud height value from external source (km)\\0121 ! rdqi1\\012 ! maximum acceptable RDQI used in averaging data to appropriate resolution\\0123 ! rdqi2\\012 ! RDQI val to use during the computation of avg RDQI, for each RDQI > RDQI1\\0120 ! rdqi4\\012 ! maximum acceptable RDQI used in calculating BRFs\\0120.01 ! mu0_thresh\\012 ! regional cosine of solar zenith angle threshold\\0123 ! ref_band\\012 ! reference band (red band)\\01240.8 ! cam_line_repeat_time\\012 ! MISR camera line repeat time (msec)\\012.0001 ! BRF scale factor\\012!------------------------------------------------\\012! Threshold parameters\\012! Reference: None\\012! \\012!------------------------------------------------\\0120.0 ! min_rlra_height\\012 ! minimum acceptable value for RLRA height (m)\\01220000.0 ! max_rlra_height\\012 ! maximum acceptable value for RLRA height (m)\\0120.0 ! min_texture_index\\012 ! minimum acceptable value for texture index\\01210.0 ! max_texture_index\\012 ! maximum acceptable value for texture index\\012175.0 ! min_temperature\\012 ! minimum acceptable value for temperature (K)\\012340.0 ! max_temperature\\012 ! maximum acceptable value for temperature (K)\\0126.0 ! max_brf_value\\012 ! maximum acceptable value for BRF\\0120.0 ! min_albedo_value\\012 ! minimum acceptable value for albedo\\0126.0 ! max_albedo_value\\012 ! maximum acceptable value for albedo\\01280.0 ! max_view_angle_along\\012 ! maximum view angle in along-track direction (degrees)\\01225.0 ! max_view_angle_cross\\012 ! maximum view angle in cross-track direction (degrees)\\012!------------------------------------------------\\012! TOA Albedo Retrieval Configuration File parameters\\012! Reference: Level 2 Top-of-Atmosphere Albedo Algorithm\\012! Theoretical Basis Document, JPL D-13401, Rev B\\012!------------------------------------------------\\0120.04 ! mu0_thresh_albedo\\012 ! minimum cosine of solar zenith angle for calculation of albedos\\0128 ! max_brf_cam_dist_t\\012 ! maximum camera distance for filling in missing side-leaving BRFs\\0121 ! max_brf_cam_dist_s\\012 ! maximum camera distance for filling in missing side-leaving BRFs\\0120.0 ! min_liquid_cloud_temp\\012 ! minimum temperature for setting cloud phase = liquid (degrees C)\\012-43.0 ! max_ice_cloud_temp\\012 ! maximum temperature for setting cloud phase = ice (degrees C)\\0126 ! min_angle_det_clear\\012 ! minimum number of angles needed for applying Deterministic (clear) model\\0120.240 0.094 0.043 0.015 ! rayleigh_std\\012 ! standard Rayleigh optical depth, for each spectral band\\0128.0 ! scale_ht\\012 ! atmospheric scale height, H (km)\\0124 ! niter_det_clear\\012 ! number of iterations for clear sky deterministic model fit\\0122.0 ! chi_sq_thresh_azm\\012 ! threshold for determining goodness of clear-sky AZM fit\\01210 ! nbin_mu\\012 ! number of cosine of zenith angle sub-bins\\01290 ! nbin_phi\\012 ! number of azimuth angle sub-bins\\0120.9 ! mu0_thresh_saw\\012 ! minimum value of mu0 above which pure Solid Angle Weighting is used\\01230.0 ! toa_altitude\\012 ! TOA altitude for referencing expansive albedos (km)\\0125 ! nblock_expansive\\012 ! number of 140.8-km blocks contributing to expansive albedo calculation\\0120 ! force_albedo_method\\012 ! force albedo code through one method: 0 - do not force; 1 - cloudy determ;\\012 ! 2 - cloudy stoch; 3 - clear determ; 4 - solid angle weighting\\0121.640 ! alb_broadband_zeropoint\\012 ! a_0 regression coefficient to use for broadband albedo calculation\\0120.170 0.210 -0.18 0.530 ! alb_broadband_coeff\\012 ! coefficients (blue-band, green-band, red-band, nir-band in order)\\012 ! to use in calculating the broadband albedo\\0121368.0 ! alb_broadband_I0b\\012 ! \"I0_b\" coefficient to use in albedo broadband calculation\\0121 ! cssc_search_dist\\012 ! distance from center of lat/long cell to search for nearest land class, \\012 ! expressed as a whole number of CSSC cells\\0128 ! min_localb_cameras\\012 ! minimum number of cameras that satisfy criteria for computing local\\012 ! albedo - to crop local albedo at swath edges\\0121 ! reset_localb_to_fill\\012 ! whether or not to reset local albedo values at filled RLRAs to BADVALUE;\\012 ! 0 = do not reset; 1 = reset\\01210000.0 ! rlp_horiz_segment_len\\012 ! horizontal distance in meters over which look vectors expressed in SOM\\012\\011 ! coords can be linearly interpolated to give acceptable results\\0122 ! rlra_filter\\012 ! type of RLRA filtering to do in RLP: 0 = do not replace RLRA BAD_VALUEs;\\012 ! 1 = replace all BAD_VALUEs with 0.0; 2 = replace all BAD_VALUES with an\\012 ! average of nearby RLRA values\\0120 ! rlra_smooth\\012 ! whether to do RLRA smoothing in RLP:\\012 ! 0 = do not smooth RLRAs; 1 = smooth RLRAs after replacement\\012"
"EXECUTABLE INFORMATION\\012MISR_EXEC_NAME:GC_AGPGEN_agp_generate.cc\\012MISR_EXEC_VERSION: V2.1.1\\012MISR_COMPOSITION_INFO_BEGIN\\012DATE OF BUILD: Fri Nov 5 14:38:27 PST 1999\\012BUILT BY: mikeb\\012HOST INFO: yngvi: ClearCase 3.2.1 (IRIX64 6.5 04151556 IP27)\\012VOBS CONFIGURATION:\\012 /vobs/GeoCal/AGPGEN/src/GC_AGPGEN_ecs_meta_write.c V2.1.1_AGP_GENERATE_p1\\012 /vobs/GeoCal/... V2.1.1_AGP_GENERATE -mkbranch mikeb_991105_agp_meta_fix\\012 /vobs/Shared/... V2.1.1_AGP_GENERATE\\012 /vobs/PCS/... V2.1_DELIVERY\\012 /vobs/PGEvob/... V2.1.1_AGP_GENERATE\\012 /vobs/Tools/... V2.1.1_AGP_GENERATE\\012LIB ENVIRONMENT:\\012 C imsl:/usr/toolkits/imsl/IMSLn32SGIC/vni/lib/lib.sgi32\\012 FORTRAN imsl:/usr/toolkits/imsl/IMSLn32SGIF77/vni/lib/lib.sgi32\\012 HDFEOS:/usr/toolkits/SDPTK5.2.5v1.00/nodebug/TOOLKIT/hdfeos/lib/sgi32\\012 HDF:/usr/toolkits/SDPTK5.2.5v1.00/nodebug/TOOLKIT/hdf/sgi32/HDF4.1r1/lib\\012 PGSTK:/usr/toolkits/SDPTK5.2.5v1.00/nodebug/TOOLKIT/lib/sgi32\\012COMPILER FLAGS\\012 -n32 -mips4 -r10000 -LANG:std -g3 -O3 -OPT:roundoff=3\\012 -OPT:alias=typed -OPT:IEEE_arithmetic=3 -DCPU_SGI\\012 -Wl,-woff,84 -Wl,-woff,85 -Wl,-woff,15 -Wl,-woff,134\\012 -DCXX_VERSION=MIPSpro Compilers: Version 7.30\\012 -DOSVERSION=6.5\\012MISR_COMPOSITION_INFO_END\\012l needed at 1x1 res, (band=1:4,cam=5)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,6)\\012 ! channel needed at 1x1 res, (band=1:4,cam=6)\\012.false. .false. .true. .false ! ep_res_1x1_needed(:,7)\\012 ! channel needed at 1x1 res, (band=1:4,cam=7)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,8)\\012 ! channel needed at 1x1 res, (band=1:4,cam=8)\\012.false. .false. .true. .false. ! ep_res_1x1_needed(:,9)\\012 ! channel needed at 1x1 res, (band=1:4,cam=9)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,1)\\012 ! channel needed at 4x4 res, (band=1:4,cam=1)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,2)\\012 ! channel needed at 4x4 res, (band=1:4,cam=2)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,3)\\012 ! channel needed at 4x4 res, (band=1:4,cam=3)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,4)\\012 ! channel needed at 4x4 res, (band=1:4,cam=4)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,5)\\012 ! channel needed at 4x4 res, (band=1:4,cam=5)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,6)\\012 ! channel needed at 4x4 res, (band=1:4,cam=6)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,7)\\012 ! channel needed at 4x4 res, (band=1:4,cam=7)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,8)\\012 ! channel needed at 4x4 res, (band=1:4,cam=8)\\012.true. .true. .true. .true. ! ep_res_4x4_needed(:,9)\\012 ! channel needed at 4x4 res, (band=1:4,cam=9)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,1)\\012 ! channel needed at 1x1 res, (band=1:4,cam=1)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,2)\\012 ! channel needed at 1x1 res, (band=1:4,cam=2)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,3)\\012 ! channel needed at 1x1 res, (band=1:4,cam=3)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,4)\\012 ! channel needed at 1x1 res, (band=1:4,cam=4)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,5)\\012 ! channel needed at 1x1 res, (band=1:4,cam=5)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,6)\\012 ! channel needed at 1x1 res, (band=1:4,cam=6)\\012.false. .false. .false. .false ! tp_res_1x1_needed(:,7)\\012 ! channel needed at 1x1 res, (band=1:4,cam=7)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,8)\\012 ! channel needed at 1x1 res, (band=1:4,cam=8)\\012.false. .false. .false. .false. ! tp_res_1x1_needed(:,9)\\012 ! channel needed at 1x1 res, (band=1:4,cam=9)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,1)\\012 ! channel needed at 4x4 res, (band=1:4,cam=1)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,2)\\012 ! channel needed at 4x4 res, (band=1:4,cam=2)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,3)\\012 ! channel needed at 4x4 res, (band=1:4,cam=3)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,4)\\012 ! channel needed at 4x4 res, (band=1:4,cam=4)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,5)\\012 ! channel needed at 4x4 res, (band=1:4,cam=5)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,6)\\012 ! channel needed at 4x4 res, (band=1:4,cam=6)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,7)\\012 ! channel needed at 4x4 res, (band=1:4,cam=7)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,8)\\012 ! channel needed at 4x4 res, (band=1:4,cam=8)\\012.false. .false. .false. .false. ! tp_res_4x4_needed(:,9)\\012 ! channel needed at 4x4 res, (band=1:4,cam=9)\\0120.0 ! extrn_min_snow_ice_pcnt\\012 ! minimum acceptable snow/ice percent value from external source\\012100.0 ! extrn_max_snow_ice_pcnt\\012 ! maximum acceptable snow/ice percent value from external source\\0120.0 ! extrn_min_snow_water_eq\\012 ! min acceptable snow water equivalent value from external source (mm)\\0121000.0 ! extrn_max_snow_water_eq\\012 ! max acceptable snow water equivalent value from external source (mm)\\0120.0 ! extrn_min_cloud_height\\012 ! minimum acceptable cloud height value from external source (km)\\01225.0 ! extrn_max_cloud_height\\012 ! maximum acceptable cloud height value from external source (km)\\0121 ! rdqi1\\012 ! maximum acceptable RDQI used in averaging data to appropriate resolution\\0123 ! rdqi2\\012 ! RDQI val to use during the computation of avg RDQI, for each RDQI > RDQI1\\0120 ! rdqi4\\012 ! maximum acceptable RDQI used in calculating BRFs\\0120.01 ! mu0_thresh\\012 ! regional cosine of solar zenith angle threshold\\0123 ! ref_band\\012 ! reference band (red band)\\01240.8 ! cam_line_repeat_time\\012 ! MISR camera line repeat time (msec)\\012.0001 ! BRF scale factor\\012!------------------------------------------------\\012! Threshold parameters\\012! Reference: None\\012! \\012!------------------------------------------------\\0120.0 ! min_rlra_height\\012 ! minimum acceptable value for RLRA height (m)\\01220000.0 ! max_rlra_height\\012 ! maximum acceptable value for RLRA height (m)\\0120.0 ! min_texture_index\\012 ! minimum acceptable value for texture index\\01210.0 ! max_texture_index\\012 ! maximum acceptable value for texture index\\012175.0 ! min_temperature\\012 ! minimum acceptable value for temperature (K)\\012340.0 ! max_temperature\\012 ! maximum acceptable value for temperature (K)\\0126.0 ! max_brf_value\\012 ! maximum acceptable value for BRF\\0120.0 ! min_albedo_value\\012 ! minimum acceptable value for albedo\\0126.0 ! max_albedo_value\\012 ! maximum acceptable value for albedo\\01280.0 ! max_view_angle_along\\012 ! maximum view angle in along-track direction (degrees)\\01225.0 ! max_view_angle_cross\\012 ! maximum view angle in cross-track direction (degrees)\\012!------------------------------------------------\\012! TOA Albedo Retrieval Configuration File parameters\\012! Reference: Level 2 Top-of-Atmosphere Albedo Algorithm\\012! Theoretical Basis Document, JPL D-13401, Rev B\\012!------------------------------------------------\\0120.04 ! mu0_thresh_albedo\\012 ! minimum cosine of solar zenith angle for calculation of albedos\\0128 ! max_brf_cam_dist_t\\012 ! maximum camera distance for filling in missing side-leaving BRFs\\0121 ! max_brf_cam_dist_s\\012 ! maximum camera distance for filling in missing side-leaving BRFs\\0120.0 ! min_liquid_cloud_temp\\012 ! minimum temperature for setting cloud phase = liquid (degrees C)\\012-43.0 ! max_ice_cloud_temp\\012 ! maximum temperature for setting cloud phase = ice (degrees C)\\0126 ! min_angle_det_clear\\012 ! minimum number of angles needed for applying Deterministic (clear) model\\0120.240 0.094 0.043 0.015 ! rayleigh_std\\012 ! standard Rayleigh optical depth, for each spectral band\\0128.0 ! scale_ht\\012 ! atmospheric scale height, H (km)\\0124 ! niter_det_clear\\012 ! number of iterations for clear sky deterministic model fit\\0122.0 ! chi_sq_thresh_azm\\012 ! threshold for determining goodness of clear-sky AZM fit\\01210 ! nbin_mu\\012 ! number of cosine of zenith angle sub-bins\\01290 ! nbin_phi\\012 ! number of azimuth angle sub-bins\\0120.9 ! mu0_thresh_saw\\012 ! minimum value of mu0 above which pure Solid Angle Weighting is used\\01230.0 ! toa_altitude\\012 ! TOA altitude for referencing expansive albedos (km)\\0125 ! nblock_expansive\\012 ! number of 140.8-km blocks contributing to expansive albedo calculation\\0120 ! force_albedo_method\\012 ! force albedo code through one method: 0 - do not force; 1 - cloudy determ;\\012 ! 2 - cloudy stoch; 3 - clear determ; 4 - solid angle weighting\\0121.640 ! alb_broadband_zeropoint\\012 ! a_0 regression coefficient to use for broadband albedo calculation\\0120.170 0.210 -0.18 0.530 ! alb_broadband_coeff\\012 ! coefficients (blue-band, green-band, red-band, nir-band in order)\\012 ! to use in calculating the broadband albedo\\0121368.0 ! alb_broadband_I0b\\012 ! \"I0_b\" coefficient to use in albedo broadband calculation\\0121 ! cssc_search_dist\\012 ! distance from center of lat/long cell to search for nearest land class, \\012 ! expressed as a whole number of CSSC cells\\0128 ! min_localb_cameras\\012 ! minimum number of cameras that satisfy criteria for computing local\\012 ! albedo - to crop local albedo at swath edges\\0121 ! reset_localb_to_fill\\012 ! whether or not to reset local albedo values at filled RLRAs to BADVALUE;\\012 ! 0 = do not reset; 1 = reset\\01210000.0 ! rlp_horiz_segment_len\\012 ! horizontal distance in meters over which look vectors expressed in SOM\\012\\011 ! coords can be linearly interpolated to give acceptable results\\0122 ! rlra_filter\\012 ! type of RLRA filtering to do in RLP: 0 = do not replace RLRA BAD_VALUEs;\\012 ! 1 = replace all BAD_VALUEs with 0.0; 2 = replace all BAD_VALUES with an\\012 ! average of nearby RLRA values\\0120 ! rlra_smooth\\012 ! whether to do RLRA smoothing in RLP:\\012 ! 0 = do not smooth RLRAs; 1 = smooth RLRAs after replacement\\012"
"Standard"
128
512
7460750.000000
1090650.000000
7601550.000000
527450.000000
GCTP_SOM
6378137
-0.006694
0
98018013.750000
103002022.220000
0
0
0
98.880000
0
0
180
0
12
"SOMBlockDim"
180
"AveSceneElev"
DFNT_INT16
"SOMBlockDim"
"XDim"
"YDim"
"StdDevSceneElev"
DFNT_INT16
"SOMBlockDim"
"XDim"
"YDim"
"StdDevSceneElevRelSlp"
DFNT_UINT16
"SOMBlockDim"
"XDim"
"YDim"
"PtElev"
DFNT_INT16
"SOMBlockDim"
"XDim"
"YDim"
"GeoLatitude"
DFNT_FLOAT32
"SOMBlockDim"
"XDim"
"YDim"
"GeoLongitude"
DFNT_FLOAT32
"SOMBlockDim"
"XDim"
"YDim"
"SurfaceFeatureID"
DFNT_UINT8
"SOMBlockDim"
"XDim"
"YDim"
"AveSurfNormAzAng"
DFNT_UINT8
"SOMBlockDim"
"XDim"
"YDim"
"AveSurfNormZenAng"
DFNT_UINT8
"SOMBlockDim"
"XDim"
"YDim"
"Regional"
8
32
7460750.000000
1090650.000000
7601550.000000
527450.000000
GCTP_SOM
6378137
-0.006694
0
98018013.750000
103002022.220000
0
0
0
98.880000
0
0
180
0
12
"SOMBlockDim"
180
"RegAveSceneElev"
DFNT_INT16
"SOMBlockDim"
"XDim"
"YDim"
"StdDevRegSceneElev"
DFNT_UINT16
"SOMBlockDim"
"XDim"
"YDim"
MASTERGROUP
1
"MISR_AM1_AGP_P017_F01_24.hdf"
1
"1999-11-07T09:25:22.000Z"
1
"MISR_EXEC_VERSION: V2.1.1 MISR_EXEC_NAME:GC_AGPGEN_agp_generate.cc"
1
"V2.1.1"
1
1
1
"MIANCAGP"
"1"
"1"
720
"1"
85.745910
84.987651
73.000040
74.241604
84.987651
84.150592
71.640706
73.000040
83.732613
82.780419
69.775755
71.282053
82.780419
81.715490
68.114983
69.775755
81.252514
80.025371
65.883224
67.733852
80.025371
78.631689
63.828642
65.883224
78.631689
77.034524
61.539252
63.828642
77.034524
75.185837
58.979446
61.539252
74.599393
72.395952
55.679879
58.557267
72.395952
69.790189
52.450468
55.679879
69.790189
66.669886
48.822581
52.450468
66.669886
62.884644
44.749976
48.822581
62.884644
58.234573
40.191903
44.749976
57.454215
51.667459
34.771478
39.805625
51.667459
44.493564
29.238469
34.771478
44.493564
35.671320
23.242775
29.238469
35.671320
25.116022
16.865809
23.242775
25.116022
13.151377
10.235604
16.865809
13.151377
0.628308
3.516146
10.235604
0.628308
-11.341526
-3.114915
3.516146
-11.341526
-21.904918
-9.493465
-3.114915
-21.904918
-30.735652
-15.491257
-9.493465
-30.735652
-37.917025
-21.026647
-15.491257
-37.917025
-43.709846
-26.063255
-21.026647
-43.709846
-48.398647
-30.600830
-26.063255
-48.398647
-52.229184
-34.663569
-30.600830
-52.229184
-55.395399
-38.289524
-34.663569
-56.057296
-58.665273
-41.945991
-38.714748
-58.665273
-60.870455
-44.824989
-41.945991
-60.870455
-62.756918
-47.395444
-44.824989
-62.756918
-64.388087
-49.696887
-47.395444
-64.905407
-66.299986
-52.154699
-50.099049
-66.299986
-67.527866
-54.006255
-52.154699
-67.527866
-68.617841
-55.680257
-54.006255
-69.056497
-70.009195
-57.556028
-56.049027
-70.009195
-70.866844
-58.927998
-57.556028
-70.866844
-71.643735
-60.181603
-58.927998
-72.023368
-72.714496
-61.655321
-60.516792
-72.714496
-73.347452
-62.702473
-61.655321
-73.696117
-74.264649
-63.973890
-63.017606
-74.264649
-74.790274
-64.858815
-63.973890
-75.112813
-75.588971
-65.967991
-65.155618
-75.588971
-76.032829
-66.723969
-65.967991
-76.333155
-76.738305
-67.701630
-67.004234
-77.028950
-77.400005
-68.619372
-67.974626
-77.400005
-77.749615
-69.223855
-68.619372
-78.022564
-78.344861
-70.044067
-69.482766
-78.344861
-78.650370
-70.572650
-70.044067
-78.908017
-79.191352
-71.311802
-70.818994
-79.442221
-79.705718
-72.012883
-71.552590
-79.705718
-79.957534
-72.448915
-72.012883
-80.195948
-80.431391
-73.087813
-72.679081
-80.664247
-80.884940
-73.697038
-73.313264
-81.112577
-81.319962
-74.278935
-73.918016
-81.319962
-81.520027
-74.623149
-74.278935
-81.738052
-81.926946
-75.160355
-74.835628
-82.140649
-82.319414
-75.675835
-75.369043
-82.529049
-82.698620
-76.171193
-75.880930
-82.904426
-83.065646
-76.647894
-76.372885
-83.065646
-83.222727
-76.912019
-76.647894
-83.421474
-83.571446
-77.358186
-77.107276
-83.767002
-83.910502
-77.789231
-77.550564
-84.103051
-84.240659
-78.206196
-77.978885
-84.430376
-84.562618
-78.610040
-78.393273
-84.749668
-84.877028
-79.001652
-78.794683
-85.061569
-85.184489
-79.381849
-79.183994
-85.366669
-85.485556
-79.751392
-79.562020
-85.665516
-85.780746
-80.110985
-79.929515
-85.958620
-86.070540
-80.461283
-80.287181
-86.246457
-86.355389
-80.802899
-80.635666
-86.529471
-86.635714
-81.136401
-80.975578
-86.808079
-86.911913
-81.462322
-81.307483
-87.082672
-87.184358
-81.781164
-81.631911
-87.353620
-87.453403
-82.093393
-81.949357
-87.621273
-87.719385
-82.399452
-82.260287
-87.885962
-87.982621
-82.699757
-82.565141
-88.148002
-88.243416
-82.994701
-82.864331
-88.407695
-88.502062
-83.284657
-83.158248
-88.665330
-88.758840
-83.569978
-83.447262
-88.921185
-89.014019
-83.851000
-83.731725
-89.175528
-89.267861
-84.128044
-84.011972
-89.428618
-89.520622
-84.401417
-84.288322
-89.680708
-89.772547
-84.671414
-84.561079
-89.932044
-90.023881
-84.938317
-84.830538
-90.182867
-90.274862
-85.202399
-85.096980
-90.591958
-90.683923
-85.621894
-85.518984
-90.842108
-90.934621
-85.880884
-85.779888
-91.092525
-91.185741
-86.137899
-86.038642
-91.343439
-91.437514
-86.393180
-86.295494
-91.595081
-91.690171
-86.646968
-86.550687
-91.847681
-91.943946
-86.899497
-86.804459
-92.101472
-92.199073
-87.151000
-87.057048
-92.356691
-92.455792
-87.401707
-87.308685
-92.613575
-92.714346
-87.651850
-87.559601
-92.872368
-92.974983
-87.901656
-87.810026
-93.133319
-93.237958
-88.151356
-88.060192
-93.555380
-93.662723
-88.560669
-88.469311
-93.821884
-93.931711
-88.811451
-88.720165
-94.091413
-94.203928
-89.062913
-88.971539
-94.364248
-94.479664
-89.315301
-89.223674
-94.640682
-94.759226
-89.568864
-89.476816
-94.921023
-95.042930
-89.823862
-89.731218
-95.205588
-95.331111
-90.080559
-89.987141
-95.494713
-95.624116
-90.339232
-90.244852
-95.788750
-95.922316
-90.600166
-90.504629
-96.088069
-96.226098
-90.863660
-90.766762
-96.393062
-96.535874
-91.130027
-91.031552
-96.704142
-96.852081
-91.399596
-91.299316
-97.021748
-97.175180
-91.672711
-91.570385
-97.346348
-97.505666
-91.949739
-91.845109
-97.678437
-97.844065
-92.231067
-92.123858
-98.018546
-98.190940
-92.517107
-92.407025
-98.367241
-98.546894
-92.808298
-92.695027
-98.725131
-98.912574
-93.105110
-92.988308
-99.092866
-99.288675
-93.408047
-93.287346
-99.471147
-99.675948
-93.717651
-93.592650
-99.860730
-100.075202
-94.034507
-93.904770
-100.262430
-100.487312
-94.359245
-94.224299
-100.677129
-100.913227
-94.692551
-94.551876
-101.105780
-101.353976
-95.035170
-94.888197
-101.353976
-101.612012
-95.185606
-95.035170
-101.810680
-102.082647
-95.545742
-95.387912
-102.284557
-102.571608
-95.917637
-95.751665
-102.776940
-103.080342
-96.302341
-96.127401
-103.289287
-103.610436
-96.701014
-96.516185
-103.823194
-104.163633
-97.114940
-96.919196
-104.163633
-104.520546
-97.317712
-97.114940
-104.741852
-105.121401
-97.761319
-97.545536
-105.347210
-105.751486
-98.224593
-97.994383
-105.982043
-106.413377
-98.709476
-98.463239
-106.413377
-106.868681
-98.966997
-98.709476
-107.109936
-107.597487
-99.495097
-99.218147
-107.844345
-108.367390
-100.051740
-99.753059
-108.367390
-108.922809
-100.366693
-100.051740
-109.182342
-109.780637
-100.981767
-100.640030
-109.780637
-110.418810
-101.344327
-100.981767
-110.692566
-111.383060
-102.031474
-101.635456
-111.664171
-112.412919
-102.766379
-102.332350
-112.412919
-113.217632
-103.231871
-102.766379
-113.515484
-114.392425
-104.069227
-103.555115
-114.392425
-115.340284
-104.625210
-104.069227
-115.656733
-116.695179
-105.594169
-104.974796
-116.695179
-117.824597
-106.270426
-105.594169
-117.824597
-119.057216
-107.012717
-106.270426
-119.405794
-120.768222
-108.251959
-107.412046
-120.768222
-122.265515
-109.185115
-108.251959
-122.636717
-124.301347
-110.694496
-109.625741
-124.301347
-126.143834
-111.898958
-110.694496
-126.143834
-128.191089
-113.267688
-111.898958
-128.596847
-130.891607
-115.391852
-113.788416
-130.891607
-133.457392
-117.248056
-115.391852
-133.457392
-136.334756
-119.420622
-117.248056
-136.334756
-139.568770
-121.994256
-119.420622
-139.568770
-143.207666
-125.082880
-121.994256
-143.635319
-147.715840
-129.600144
-125.798158
-147.715840
-152.281801
-134.270738
-129.600144
-152.281801
-157.359709
-140.067617
-134.270738
-157.359709
-162.950990
-147.295090
-140.067617
-162.950990
-169.019482
-156.241467
-147.295090
-169.019482
-175.481469
-167.014622
-156.241467
-175.481469
177.796031
-179.282008
-167.014622
177.796031
170.983962
167.870400
-179.282008
170.983962
164.267343
155.639816
167.870400
164.267343
157.816213
144.923405
155.639816
157.816213
151.762066
136.035703
144.923405
151.762066
146.186998
128.859213
136.035703
146.186998
141.125778
123.103208
128.859213
141.125778
136.575975
118.464313
123.103208
136.575975
132.510475
114.686689
118.464313
132.510475
128.888573
111.571576
114.686689
128.888573
125.664139
108.969351
111.571576
125.664139
122.790857
106.768322
108.969351
122.369091
119.812646
104.335544
106.182707
119.812646
117.526002
102.739382
104.335544
117.526002
115.473660
101.346337
102.739382
115.080433
113.244075
99.657084
100.856765
113.244075
111.584774
98.592301
99.657084
111.584774
110.079677
97.640132
98.592301
109.721323
108.362947
96.385374
97.222534
108.362947
107.122165
95.626963
96.385374
720
"1"
66.222666
67.448181
65.752701
64.604018
67.448181
68.669819
66.889715
65.752701
68.629199
69.844138
67.939468
66.819414
69.844138
71.053463
69.043627
67.939468
71.007047
72.206807
70.046570
68.965127
72.206807
73.398061
71.105955
70.046570
73.398061
74.578904
72.139395
71.105955
74.578904
75.746812
73.142155
72.139395
75.684687
76.831100
74.003923
73.043515
76.831100
77.955651
74.920417
74.003923
77.955651
79.051666
75.784535
74.920417
79.051666
80.109721
76.586186
75.784535
80.109721
81.116305
77.313554
76.586186
81.015783
81.939920
77.813898
77.181160
81.939920
82.763749
78.344830
77.813898
82.763749
83.449365
78.759542
78.344830
83.449365
83.949640
79.044843
78.759542
83.949640
84.216306
79.190493
79.044843
84.216306
84.216970
79.190851
79.190493
84.216970
83.951545
79.045901
79.190851
83.951545
83.452299
78.761259
79.045901
83.452299
82.767468
78.347149
78.761259
82.767468
81.944213
77.816750
78.347149
81.944213
81.020491
77.184474
77.816750
81.020491
80.024131
76.464571
77.184474
80.024131
78.974764
75.670216
76.464571
78.974764
77.886110
74.813063
75.670216
77.961078
76.836649
74.008511
74.924771
76.836649
75.690330
73.048300
74.008511
75.690330
74.526936
72.051158
73.048300
74.526936
73.349993
71.022876
72.051158
73.403854
72.212646
70.051800
71.111068
72.212646
71.012924
68.970456
70.051800
71.012924
69.806155
67.870241
68.970456
69.850058
68.635144
66.824918
67.944900
68.635144
67.415465
65.691196
66.824918
67.415465
66.191702
64.545537
65.691196
66.228659
64.999802
63.450828
64.609653
64.999802
63.768008
62.283056
63.450828
63.801156
62.565536
61.163214
62.341197
62.565536
61.327722
59.978402
61.163214
61.357747
60.116976
58.838548
60.031417
60.116976
58.874509
57.640375
58.838548
58.901942
57.657131
56.484328
57.688960
57.683097
56.436226
55.320243
56.530625
56.436226
55.188156
54.106168
55.320243
55.212157
53.962397
52.930098
54.148884
53.962397
52.711635
51.708333
52.930098
52.733968
51.481791
50.522227
51.747904
51.503117
50.249662
49.330906
50.560120
50.249662
48.995417
48.099508
49.330906
49.015448
47.760105
46.900412
48.134799
47.779322
46.522976
45.697178
46.934291
46.541440
45.284173
44.490122
45.729727
45.284173
44.026286
43.249029
44.490122
44.043825
42.785123
42.036288
43.279528
42.802049
41.542591
40.820437
42.065653
41.558949
40.298788
39.601691
40.848729
40.314621
39.053803
38.380247
39.628967
39.053803
37.792487
37.130562
38.380247
37.807720
36.545808
35.905122
37.156284
36.560612
35.298142
34.677434
35.929967
35.312550
34.049555
33.447640
34.701446
34.063599
32.800110
32.215869
33.470861
32.813818
31.549864
30.982243
32.238339
31.563265
30.298872
29.746875
31.004000
30.311991
29.047184
28.509869
29.767953
29.060047
27.794851
27.271322
28.530302
27.807481
26.541917
26.031326
27.291142
26.554336
25.288427
24.789965
26.050562
25.300658
24.034424
23.547321
24.808647
24.046487
22.779949
22.303470
23.565475
22.791863
21.525040
21.058481
22.321122
21.536824
20.269736
19.812424
21.075656