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sflrtti2de (4.0)
index
user/jsun/Mlrtti2de.c
\n 2-D two-components wavefield modeling using original elastic displacement wave equation in TTI media by lowrank method. \n

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\n Synopsis
       sflrtti2de < Fvp0.rsf pleft=Fpl.rsf pright=Fpr.rsf sleft=Fsl.rsf sright=Fsr.rsf > Fo1.rsf Elasticz=Fo2.rsf Pwavez=Fpz.rsf Pwavex=Fpx.rsf Swavez=Fsz.rsf Swavex=Fsx.rsf nt=301 dt=0.001 abc=n nbt= nbb=nbt nbl=nbt nbr=nbt ct= cb=ct cl=ct cr=ct isx=nx/2 isz=nz/2 t0=0.04 f0=30.0 A=1.0 cmplx=n sep=n pad1=1 src=1
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\n Parameters
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float A=1.0
\twavelet amplitude
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file Elasticz=
\tauxiliary output file name
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string Pwavex=
\tauxiliary output file name
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string Pwavez=
\tauxiliary output file name
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string Swavex=
\tauxiliary output file name
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string Swavez=
\tauxiliary output file name
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bool abc=n [y/n]
\tabsorbing flag
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float cb=ct
\t
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float cl=ct
\t
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bool cmplx=n [y/n]
\tuse complex FFT
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float cr=ct
\t
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float ct=
\t
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float dt=0.001
\tabsorbing boundary condition
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float f0=30.0
\twavelet peak freq
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int isx=nx/2
\t
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int isz=nz/2
\t
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int nbb=nbt
\t
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int nbl=nbt
\t
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int nbr=nbt
\t
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int nbt=
\t
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int nt=301
\t
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int pad1=1
\tpadding factor on the first axis
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file pleft=
\tauxiliary input file name
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file pright=
\tauxiliary input file name
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bool sep=n [y/n]
\toutput separated wavefields
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file sleft=
\tauxiliary input file name
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int src=1
\tsource mode: 1 - exploding force; 2 - equil-energy force
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file sright=
\tauxiliary input file name
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float t0=0.04
\twavelet time lag
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