针对海潮负荷BLQ文件的错误。
解决错误方式:
把示例中的BLQ头部信息完全复制,替换。也就是网上生成的文件,仅需要复制关于各站的改正信息即可。
PROTOCOL FILE FOR BPE SCRIPT
----------------------------
Campaign : ${P}\ngs
Year : 20
Session : 0010
PCF name : PPP_BAS.PCF
Script name : PRETAB
Path to executables: ${XG}
Option directory : PPP_GEN
Process ID : 112
Sub-process ID : 000
Server host : localhost
Remote host : win10 (system pid: 2172)
CPU name : localhost
Path to work area : c:\Bern\GPSTEMP/BPE_PPP_BAS_49830_20_0010_112_000
User name : zzh_m
Date Time Run time Pgm.time Sta Program Message
----------------------------------------------------------------------------
20-FEB-2020 16:51:38 00:00:00 MSG RUNBPE.pm SCRIPT STARTED
20-FEB-2020 16:51:38 00:00:00 MSG PRETAB PROGRAM STARTED
*** SR RDCMC: NO CMC INFORMATION FOUND IN FILE.
Filename: ${P}\ngs\STA\ngs.BLQ
20-FEB-2020 16:51:38 00:00:00 00:00:00 ERR PRETAB ERROR IN MAIN PROGRAM
20-FEB-2020 16:51:38 00:00:00 MSG RUNBPE.pm SCRIPT ENDED
-------------------------------------------------------------------------
正确的BLQ头信息如下:
$$ Ocean loading displacement
$$
$$ Calculated on froste using olfg/olmpp of H.-G. Scherneck
$$
$$ COLUMN ORDER: M2 S2 N2 K2 K1 O1 P1 Q1 MF MM SSA
$$
$$ ROW ORDER:
$$ AMPLITUDES (m)
$$ RADIAL
$$ TANGENTL EW
$$ TANGENTL NS
$$ PHASES (degrees)
$$ RADIAL
$$ TANGENTL EW
$$ TANGENTL NS
$$
$$ Displacement is defined positive in upwards, South and West direction.
$$ The phase lag is relative to Greenwich and lags positive. The
$$ Gutenberg-Bullen Greens function is used. In the ocean tide model the
$$ deficit of tidal water mass has been corrected by subtracting a uniform
$$ layer of water with a certain phase lag globally.
$$
$$ Complete <model name> : No interpolation of ocean model was necessary
$$ <model name>_PP : Ocean model has been interpolated near the station
$$ (PP = Post-Processing)
$$
$$ CMC: NO (corr.tide centre of mass)
$$
$$ Ocean tide model: FES2004
$$
$$ CMC start : center of mass coefficient file content
$$ CMC format: (a,1p,t42,3(2x,2e12.4))
$$ CMC frequ : M2 NCDF_FES2004 -1.2661E-03 -1.4298E-03 -1.3724E-03 8.2077E-04 1.1479E-03 2.3005E-04
$$ CMC frequ : S2 NCDF_FES2004 -1.7763E-04 -5.7273E-04 -5.3350E-04 -3.1591E-04 -5.1370E-05 2.8184E-04
$$ CMC frequ : N2 NCDF_FES2004 -3.2372E-04 -2.8986E-04 -2.7121E-04 1.9849E-04 2.6018E-04 -1.4302E-04
$$ CMC frequ : K2 NCDF_FES2004 -1.1814E-04 -1.5250E-04 -1.1223E-04 -1.0889E-05 -1.5751E-05 1.2367E-04
$$ CMC frequ : K1 NCDF_FES2004 -1.1370E-03 4.4839E-03 -1.8539E-03 -8.6426E-04 -9.1022E-04 -1.7823E-03
$$ CMC frequ : O1 NCDF_FES2004 -1.6802E-04 2.9702E-03 -1.3985E-03 -2.2975E-04 -8.8858E-04 -6.4989E-04
$$ CMC frequ : P1 NCDF_FES2004 -3.6495E-04 1.4941E-03 -6.1436E-04 -2.9129E-04 -2.9261E-04 -5.7461E-04
$$ CMC frequ : Q1 NCDF_FES2004 3.0709E-05 4.5472E-04 -2.7831E-04 -2.9313E-05 -2.1734E-04 -4.1637E-05
$$ CMC frequ : Mf NCDF_FES2004 -5.0643E-04 -7.3040E-05 -2.2065E-04 4.1472E-04 -1.0212E-04 8.2276E-05
$$ CMC frequ : Mm NCDF_FES2004 -2.7885E-04 2.0596E-05 4.6882E-05 1.8399E-04 -7.4897E-06 1.3209E-05
$$ CMC frequ : Ssa NCDF_FES2004 -1.4899E-04 2.6146E-06 1.3687E-04 3.5475E-05 -2.4093E-05 3.1666E-07
$$ CMC end :
$$
$$ END HEADER
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