Title: Making CMP
1Making CMPs
From chapter 16 Elements of 3D Seismology by
Chris Liner
2Outline
3Normal Moveout
Hyperbola
x
T
4Normal Moveout
x
T
Overcorrected
Normal Moveout is too large
Chosen velocity for NMO is too (a) large (b)
small
5Normal Moveout
x
T
Overcorrected
Normal Moveout is too large
Chosen velocity for NMO is too (a) large (b)
small
6Normal Moveout
x
T
Under corrected
Normal Moveout is too small
Chosen velocity for NMO is (a) too large (b) too
small
7Normal Moveout
x
T
Under corrected
Normal Moveout is too small
Chosen velocity for NMO is (a) too large (b) too
small
8Vinterval from Vrms
Dix, 1955
9Vrms
V1
V2
Vrms lt Vinterval
V3
10Vinterval from Vrms
11Primary seismic events
x
T
12Primary seismic events
x
T
13Primary seismic events
x
T
14Primary seismic events
x
T
15Multiples and Primaries
x
M1
T
M2
16Conventional NMO before stacking
x
M1
NMO correction VV(depth) e.g., Vmz B
T
M2
Properly corrected
Normal Moveout is just right
Chosen velocity for NMO is correct
17Over-correction (e.g. 80 Vnmo)
x
x
M1
M1
NMO correction VV(depth) e.g., V0.8(mz B)
T
T
M2
M2
18f-k filtering before stacking (Ryu)
x
x
M1
NMO correction VV(depth) e.g., V0.8(mz B)
T
T
M2
M2
19Correct back to 100 NMO
x
x
M1
M1
NMO correction VV(depth) e.g., V(mz B)
T
T
M2
M2
20Outline
- Convolution and Deconvolution
- Normal Moveout
- Stacking
21NMO stretching
T0
V1
V2
NMO Stretching
22NMO stretching
V1
T0
V2
NMO Stretching
V1ltV2
23NMO stretching
V1
V1ltV2
NMO stretch linear strain
V2
Linear strain () final length-original length
original length
X 100 ()
24NMO stretching
original length
final length
V1
V1ltV2
V2
X 100 ()
NMO stretch
X 100 ()
25stretching for T2s,V1V21500 m/s
Green line assumes V1V2
Blue line is for general case, where V1, V2 can
be different and delT00.1s (this case V1V2)
Matlab code
X 100 ()
26Stacking
27Stacking improves S/N ratio
28Semblance Analysis
X
Twtt (s)
Semblance
29Semblance Analysis
X
V
V1
V2
Twtt (s)
V3
Peak energy