Title: Reciprocity
1Reciprocity
Kees Wapenaar Evert Slob Jacob Fokkema
2- Review of reciprocity theorems
- Convolution type
- Correlation type
- Unified notation
- Acoustic
- Elastodynamic
- Electromagnetic
- Poroelastic
- Seismoelectric
- Review of boundary conditions
- Extension of reciprocity theorems
- Conclusions
3- Review of reciprocity theorems
- Convolution type
- Correlation type
- Unified notation
- Acoustic
- Elastodynamic
- Electromagnetic
- Poroelastic
- Seismoelectric
- Review of boundary conditions
- Extension of reciprocity theorems
- Conclusions
4A
B
State A
State B
5A
B
State A
State B
6kA, rA
kB, rB
PB
QB
QA
PA
State B
State A
7PB
QB
QA
PA
State B
State A
8PB
QB
QA
PA
State B
State A
Convolution-type reciprocity theorem forward
problems
9- Review of reciprocity theorems
- Convolution type
- Correlation type
- Unified notation
- Acoustic
- Elastodynamic
- Electromagnetic
- Poroelastic
- Seismoelectric
- Review of boundary conditions
- Extension of reciprocity theorems
- Conclusions
10PB
QB
QA
PA
State B
State A
Correlation-type reciprocity theorem
11Q
Q
P
P
State B
State A
Power dissipated in medium
Power-flux through boundary
Power radiated by sources
12PB
QB
QA
PA
State B
State A
Correlation-type reciprocity theorem inverse
problems
13- Review of reciprocity theorems
- Convolution type
- Correlation type
- Unified notation
- Acoustic
- Elastodynamic
- Electromagnetic
- Poroelastic
- Seismoelectric
- Review of boundary conditions
- Extension of reciprocity theorems
- Conclusions
14PB
QB
QA
PA
State B
State A
Convolution-type reciprocity theorem
15Unified notation (convolution type)
16Unified notation (convolution type)
17Unified notation (convolution type)
18- Review of reciprocity theorems
- Convolution type
- Correlation type
- Unified notation
- Acoustic
- Elastodynamic
- Electromagnetic
- Poroelastic
- Seismoelectric
- Review of boundary conditions
- Extension of reciprocity theorems
- Conclusions
19(No Transcript)
20PB
QB
QA
PA
State B
State A
Correlation-type reciprocity theorem
21PB
QB
QA
PA
State B
State A
22Unified notation (correlation type)
23- Review of reciprocity theorems
- Convolution type
- Correlation type
- Unified notation
- Acoustic
- Elastodynamic
- Electromagnetic
- Poroelastic
- Seismoelectric
- Review of boundary conditions
- Extension of reciprocity theorems
- Conclusions
24n
n
V
V
PB
QB
QA
PA
State B
State A
Perfectly coupled interfaces
No consequences for reciprocitytheorems of
convolution type and correlation type
Next consider partially coupled interfaces
25Review of linear slip model
Displacement jump
26Review of linear slip model of Schoenberg
27Review of linear slip model of Pyrak-Nolte et al.
28Review of linear slip model of Pyrak-Nolte et al.
Frequency domain
29Review of linear slip model of Pyrak-Nolte et al.
30Review of linear slip model
31Horizontal interface
32Generalized boundary condition
33(No Transcript)
34- Review of reciprocity theorems
- Convolution type
- Correlation type
- Unified notation
- Acoustic
- Elastodynamic
- Electromagnetic
- Poroelastic
- Seismoelectric
- Review of boundary conditions
- Extension of reciprocity theorems
- Conclusions
35n
n
V
V
PB
QB
QA
PA
State B
State A
36n
n
V
V
PB
QB
QA
PA
State B
State A
37n
n
V
V
PB
QB
QA
PA
State B
State A
Convolution-type reciprocity theorem forward
problems
38n
n
V
V
PB
QB
QA
PA
State B
State A
Correlation-type reciprocity theorem
39n
n
V
V
State B
State A
Power-flux through boundary
Power dissipated in medium
Power radiated by sources
Power dissipated by interfaces
40n
n
V
V
PB
QB
QA
PA
State B
State A
Correlation-type reciprocity theorem inverse
problems
41- Review of reciprocity theorems
- Convolution type
- Correlation type
- Unified notation
- Acoustic
- Elastodynamic
- Electromagnetic
- Poroelastic
- Seismoelectric
- Review of boundary conditions
- Extension of reciprocity theorems
- Conclusions
42Unified reciprocity theorems have been
formulated of the convolution and correlation
type
43Unified reciprocity theorems have been
formulated of the convolution and correlation
type Valid for acoustic, elastodynamic,
electromagnetic, poroelastic and seismoelectric
waves
44Unified reciprocity theorems have been
formulated of the convolution and correlation
type Valid for acoustic, elastodynamic,
electromagnetic, poroelastic and seismoelectric
waves Boundary condition for imperfectly coupled
interface
45Unified reciprocity theorems have been
formulated of the convolution and correlation
type Valid for acoustic, elastodynamic,
electromagnetic, poroelastic and seismoelectric
waves Boundary condition for imperfectly coupled
interface No effects on source-receiver
reciprocity
46Unified reciprocity theorems have been
formulated of the convolution and correlation
type Valid for acoustic, elastodynamic,
electromagnetic, poroelastic and seismoelectric
waves Boundary condition for imperfectly coupled
interface No effects on source-receiver
reciprocity Imaginary part of accounts
for dissipation by interfaces