20
GLOBE Claritas™ Demultiple Approaches

Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

  • Upload
    others

  • View
    8

  • Download
    0

Embed Size (px)

Citation preview

Page 1: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

GLOBE Claritas™

Demultiple Approaches

Page 2: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

Primary Demultiple Approaches

• Deconvolution

– multiple considered as reverberation

– Tau-P, shot and receiver location ensemble etc.

• RADON demultiple (PRT_DEMULT)

– Velocity discrimination (parabolic approximation)

– Use primary or multiple model (reject down or flat dips)

– High resolution mode via Harlan transform

• Flattening on Offset Planes

– Digitise seafloor (and/or peg-leg generator)

– Flatten multiple via static shits and remove flat events

• SRME and subtraction

– Two good subtraction routines (MONK/WANG)

– Limitations on long offset and deep water

– Flatten multiple via static shits and remove flat events

Page 3: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

RADON Anti-Multiple : theory

• Data summed along parabolas

• Defined by far offset moveout (FOM) in ms

• This example : 90% NMO applied

• Multiples +ve P-values

• Primaries -ve P-Values

• Data outside of the Radon transform range is retained

• Define a modelled range (in FOM) and a noise range to remove

• “Cross” shape in Radon-space focussed to a point by Harlan mode

300ms far offset

moveout, measured via

ruler (RMB click)

Primary

Multiple

Page 4: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

PRT_DEMULT Example : Input data

700ms FOM used

Page 5: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

PRT_DEMULT Example : Harlan Demultiple

Page 6: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

Flattening on Offset Planes Example

Digitise multiple

Shift data down by 1000ms

Shift data up by multiple time

Multiple flat at 1000ms

Strong shallow multiple

Water-velocity FK

applied

Apply an FK filter

Reject +/- 0.5ms per trace

Applied from 950-1050ms

Remove all shifts

• Only effective where multiple crosses primaries

• Can apply again for the second bounce

• Can apply pre-stack – use FLATTEN on offset planes

Page 7: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

SRME Example

Original Shot Modelled multiple Subtracted result

• Model created by cross correlating shot and receiver gathers (SRME)

• Data needs to be extended to zero offset (OFFREG)

• Shot and receiver spacing needs to be the same (OFFREG, SHOTINT)

• Should not process incoming data at all – except perhaps mute and filter

• Only models reflections, not refractions

• Theoretically needs full fold shot and receiver gathers to be most effective

• In deep water, limiting the shot and receiver domain offsets can be beneficial

• Use adaptive subtraction to remove the multiple (WANGSUBT, MONKSUBT or combinations of these)

• Complex workflow, consider simple multiple modelling (MULMOD)

Page 8: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

Basic Processing Routes Re-sampled Shots

Stack #1

Tau-P Decon.

Hi res RadonRadon

Stack #2 Stack #3 Stack #5

SRME

Tau-P Decon.

Stack #7

Offset

Plane

Stack #4 Stack #6 Stack #8

Offset

Plane

Offset

Plane

No demultiple used RADON approaches SRME approaches

Page 9: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

#1 Stack : No Demultiple

Page 10: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

#2 Stack :Tau-P Decon.

Page 11: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

#3 Stack : Tau-P Decon, Radon

Page 12: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

#4 Stack : Tau-P Decon, Radon, Offset

Page 13: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

#5 Stack : Tau-P Decon, Radon/Harlan

Page 14: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

#6 Stack : Tau-P Decon, Radon/Harlan, Offset

Page 15: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

#7 Stack : SRME, Tau-P Decon

Page 16: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

#8 Stack : SRME, Tau-P Decon, Offset

Page 17: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

Examples on line TL-01

• Raw data has 50m SP, 25m groups, 120 channels

• Minimum Offset is 189.4m

• Tau-P run with 50m SP, 6.25m groups

• SRME run at 25m SP, 25m groups

• Stacks etc. created with 12.5m SP, 25m groups

• All managed via OFFREG and SHOTINT

• Spike QC important pre-interpolation

Page 18: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

Radon Parameters Used

• Offsets 184.9m to 3159.9m increment 25m

• Fold 120, HMAX 3159.9

• Model MS: -700 to 700

• Noise MS: 60 to 696

• 300 p-values (3Hz-80Hz range)

• Start time 1.75x water bottom, 200ms minimum

Page 19: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

Offset Plane Parameters Used

• Digitised Seafloor on near trace plot

• DSORTOFF to sort to common offset planes

• FLATTEN to flatten 1st multiple

• QFKPS FK filter +/-50ms around flattened multiple

• Filter set to reject flat data, 150 trace window

• Repeat for the 2nd multiple

• Sort back to CDP order via DISCGATH

Page 20: Demultiple Approaches - GLOBE Claritas · Shift data down by 1000ms Shift data up by multiple time Multiple flat at 1000ms Strong shallow multiple Water-velocity FK applied Apply

www.globeclaritas.com

SRME Parameters Used

• Three passes of adaptive subtraction

• WANGSUBT with 80% eigen values

• MONKSUBT 300ms gated

• MONKSUBT 100ms gated

• Run using REREAD and pseudo traces