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In this Appendix we derive the relationships
between the ray parameters
of the
-rays reflected from a planar dipping reflector,
and the ray parameters of the incident rays.
We start by the equivalent relationship for z-rays.
The ray parameters of the reflected z-ray
are related to the ray parameters of the incident z-rays
as follows:
|  |
|
| (21) |
where
is the dip angle of the reflector.
The ray parameters of the
-rays are related to the ray parameters
of the z-rays by
|  |
|
| (22) |
Substituting equation 22 into
equation 21 we get
| ![\begin{eqnarray}
p_{\tau\Uparrow}
&=&
p_{\xi\Downarrow}
\frac{V}{2}
\sin
2\alpha...
...\frac{\sigma_f^{2} V}{2}
\right)
\sin
2\alpha_z
\right].
\nonumber\end{eqnarray}](img43.gif) |
(23) |
| |
The dip
of a reflector in depth
is related to the time-dip angle
by
|  |
(24) |
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Up: Biondi, et al.: ``Focusing''
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Stanford Exploration Project
5/1/2000