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Facies interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7 th May 2014
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Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

May 07, 2018

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Page 1: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Facies interpretation and modelling - An integrated workflow

Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014

Page 2: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

The yellow grid cell

• Defining ‘the best place’ to drill

• Uncertainties:

– How good is our geological model?

– How good is our facies prediction?

– How well do we understand the depositional model?

– How well do we understand our seismic data?

– How good/representative is our well data?

Page 3: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Variation within a cell

• Cell dimensions:

– 100m x 100m x 3ft

• Development well:

– Aim for sand length of 1000m

– 7-10 grid cells, depending on orientation of well

• How much does the geology vary within those cells?

Page 4: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Field studies

500m Facies model

Coulomp Valley, Annot, France

30

0ft

Rambla de Lanujar, Tabernas, Spain

200m

50

m

Facies model

Page 5: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Case study: Huntington Field

• Block 22/14

• Discovered in 2007

• Operated by Eon

• FPSO: Sevan Voyageur

• On stream in 2013

• Water flood

• Paleocene turbidite channel sands of Forties age

• Mixture of:

– amalgamated sands

– shaley sands

– ‘heterolithics’

Page 6: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Purpose of the model

• Built on behalf of Premier Oil (non-operating partner)

• Assist with well planning:

– Distribution of rock quality types

– Placement/optimisation of the development wells

– Producers and injectors

• What the model is not designed for…

– Depth prognosis

– STOIIP uncertainty analysis

– Simulation

Page 7: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Integrated workflow

• Geologist meets geophysicist

• ‘What can we see?’

• ‘What can we do?’

• ‘How could it fit together?’

Page 8: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Seismic interpretation

Page 9: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

General seismic character

W E

A

Am

pli

tud

e

B C D

Page 10: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Iso-slicing

Am

pli

tud

e

~2km

Page 11: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Characterisation of water leg

• Intricate channel complex

– 3D architecture

– Hierarchy

Horizons

__ near top Balder

__ top Sele

__ near top Forties

cartoon of main

fairway

W E

A

Am

pli

tud

e

B C D

Page 12: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Interpretation in water leg

~1700m

Page 13: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Characterisation of oil leg

• Seismic facies interpretation along ‘near top Forties’

Horizons

__ near top Balder

__ top Sele

__ near top Forties

observation: stacked

amalgamated sand;

middle of channel

observation: some amalgamated

sand; towards edge of channel

observation: more inter-

bedded sands; off main

channel axis

W E

A

Am

pli

tud

e

B C D

Page 14: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Seismic facies interpretation

SHALE-PRONE

facies 1: acoustically dim, little to no

character

inferred geological facies: shale-

prone

OVERBANK DEPOSITS

facies 2: acoustically dim

background punctuated by small

bursts of medium amplitude

inferred geological facies: overbank

deposits: off main fairway, more

silt/shale but occasional isolated

channel

SHEET SANDS

facies 3: moderate to high amplitudes,

uniform/parallel reflector

inferred geological facies: sheet sands

separated by thin shale beds

AMALGAMATED SANDS

facies 4: channel shape and/or

differential compaction with

moderate or high amplitudes

inferred geological facies:

amalgamated channel sands

Page 15: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

• 1 map = 1 facies class

• Combine maps

Mechanics

Horizons

__ top Balder

__ top Sele

__ top Forties

E

A

Am

pli

tud

e

B C D

Facies code

__ facies 1 (shale)

__ facies 2 (overbanks)

__ facies 3 (sheet sands)

__ facies 4 (amalgamated)

Page 16: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Seismic facies map

~2km

amalgamated

sands

sheet sands

overbank

deposits

shale-prone

Page 17: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Meanwhile…

Page 18: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Facies

• Inheritance:

– sand, shaley sand, heterolithics, shale, cement

• Channel complex

– Long and narrow

– Significant incision

Mainly sand and shaley sand

• Laterally extensive reflectors:

– Flat, tabular bodies

– Areally extensive

Higher shale content

Page 19: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Model dimensions

• Cell dimensions: 50m x 50m x 2ft

– Sugar cube grid

– Total cell count: 7.6 million (we are not simulating!!!!)

• Internal architecture:

– Differences in facies/lithotype

– No hard-wiring!

Page 20: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

The water leg

• Discrete channel bodies

geo-bodies

from seismic

~1700m

Page 21: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

• Distance parameter conditioning parameter for facies

• Facies proportions guided by well stats

Facies organisation in channel complex

Sand

Shaley Sand

Shale

Channel axis

Page 22: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Facies in the channel complex

distance

parameter

facies

Page 23: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

~500m

• Seismic facies map conditioning parameter for facies

• Facies proportions guided by well stats

The oil leg

Page 24: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Results

• Well results compared to well planning model

– Success rate was high

– Lessons learned

• What went well?

– iteration and development of the method

– calibration and validation of method

– good communication and integration

• before, during, after

Page 25: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Where next?

• Uncertainty analysis

– Uncertainty bands

– Variation of the conditioning property

• Facies definition

– Meaningful facies definition in horizontal wells

...to be continued

– Re-definition of facies from log?

Page 26: Facies interpretation and modelling - An integrated … interpretation and modelling - An integrated workflow Liz Chellingsworth and Pete Kane (AGR TRACS) 7th May 2014 The yellow grid

Acknowledgments

• Premier Oil and partners for permission to present case study

• Pete Kane and colleagues at AGR TRACS

Visit AGR TRACS at Booth #34