b'\n \n \n
 
\n  
sffkoclet3 (4.0)
index
user/yliu/Mfkoclet3.c
\n 2-D seislet transform using frequency-wavenumber offset-azimuth continuation \n

\n \n \n \n \n \n
 
\n Synopsis
       sffkoclet3 < in.rsf > out.rsf inv=n adj=n dwt=n amp=n verb=y eps=0.01 maxe=10. dir= type=
Forward transform (adj=n inv=y/n) m=T[d]
\nInverse transform (adj=y inv=y) d=T^(-1)[d]
\nAdjoint transform (adj=y inv=n) d=T\'[d]
\n\n

\n \n \n \n \n \n
 
\n Parameters
       \n \n \n
\n  
bool adj=n [y/n]
\tif y, do adjoint transform
\n
\n \n\n \n \n
\n  
bool amp=n [y/n]
\tif y, true amplitudes continuation
\n
\n \n\n \n \n
\n  
string dir=
\t[azimuth,offset,both] direction, the default is both directions
\n
\n \n\n \n \n
\n  
bool dwt=n [y/n]
\tif y, do wavelet transform
\n
\n \n\n \n \n
\n  
float eps=0.01
\tregularization
\n
\n \n\n \n \n
\n  
bool inv=n [y/n]
\tif y, do inverse transform
\n
\n \n\n \n \n
\n  
float maxe=10.
\tstability constraint
\n
\n \n\n \n \n
\n  
string type=
\t[haar,linear,biorthogonal] wavelet type, the default is biorthogonal
\n
\n \n\n \n \n
\n  
bool verb=y [y/n]
\tverbosity flag
\n
\n \n
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