A working methodology to minimize wellbore stability problems has been established through the use of unique laboratory tests, an experimental database for fluid-rock interaction and physical properties of shales, and an integrated modeling approach utilizing different types of experimental and field data. The model simulations provide output accounting for a wide range of input parameters such as well inclination, mud chemistry, rock mechanical properties, field stresses and pressures, formation anisotropy, and shale mineralogy. The model output can subsequently be used to diagnose field drilling problems or to design drilling operations. As an example, data from a high pressure/high temperature (HP/HT) field offshore Mid-Norway as well as a field in the overpressured shales in the southern part of the Norwegian North Sea have been analyzed and compared.

References

1.
Fjær
,
E.
,
Holt
,
R. M.
,
Nes
,
O.-M.
, and
Sønstebø
,
E. F.
, 2002, “
Mud Chemistry Effects on Time-Delayed Borehole Stability Problems in Shales
,” Paper No. SPE/ISRM 78163.
2.
Mody
,
F. K.
, and
Hale
,
A. H.
, 1993, “
A Borehole Stability Model to Couple Mechanics and Chemistry of Drilling Fluid Shale Interaction
,” Paper No. SPE/IADC 25728.
3.
Tare
,
U. A.
,
Mody
,
F. K
., and
Tan
,
C. P.
, 2002, “
Mitigating Wellbore Stability Problems While Drilling With Water Based Muds in Deepwater Environments
,” Paper No. OTC 14267.
4.
Stjern
,
G.
,
Horsrud
,
P.
, and
Agle
,
A.
, 2000, “
Improved Drilling Performance in Troublesome Clay Formations in the Heidrun Field
,” Paper No. IADC/SPE 59219.
5.
McIntyre
,
B.
,
Hibbert
,
T.
,
Keir
,
D.
,
Dixon
,
R.
, O’
Rourke
,
T.
,
Mohammed
,
F.
,
Donald
,
A.
,
Chang
,
L.
,
Syed
,
A.
, and
Brian
,
V.
, 2009, “
Managing Drilling Risks in a Mature North Sea Field
,” Paper No. SPE 124666.
6.
Narayanasamy
,
R.
,
Barr
,
D.
, and
Milne
,
A.
, 2009, “
Wellbore Instability Predictions Within the Cretaceous Mudstones, Clair Field, West of Shetlands
,” Paper No. SPE 124464.
7.
Kristiansen
,
T. G.
, 2004, “
Drilling Wellbore Stability in the Compacting and Subsiding Valhall Field
,”
SPE/IADC Drilling Conference, Dallas
, Paper No. SPE/IADC 87221.
8.
Kristiansen
,
T. G.
, and
Flatebø
,
R. E.
, 2009, “
60 Days Ahead of Schedule -Reducing Drilling Risk at Valhall Using Computational Geomechanics
,”
SPE/IADC Drilling Conference and Exhibition
,
Amsterdam
,
The Netherlands
, Mar.
17
19
, Paper No. SPE/IADC 119509.
9.
Bradley
,
W. B.
, 1979, “
Failure in Inclined Boreholes
,”
Trans. ASME J. Energy Resour. Technol.
,
101
, pp.
232
239
.
10.
Fjær
,
E.
,
Holt
,
R. M.
,
Horsrud
,
P.
,
Raaen
,
A. M.
, and
Risnes
,
R.
, 2008,
Petroleum Related Rock Mechanics
, 2nd ed.,
Elsevier
,
New York
.
11.
Horsrud
,
P.
, 2001, “
Estimating Mechanical Properties of Shale From Empirical Correlations
,”
SPEDC
, pp.
68
73
.
12.
Nes
,
O.-M.
,
Sønstebø
,
E. F.
,
Horsrud
,
P.
, and
Holt
,
R. M.
, 1998, “
Dynamic and Static Measurements on mm-Size Samples
,” Paper No. SPE 47200.
13.
Nes
,
O.-M.
,
Sønstebø
,
E. F.
,
Fjær
,
E.
, and
Holt
,
R. M.
, 2004, “
Use of Small Shale Samples in Borehole Stability Analysis
,”
Gulf Rocks
2004, Paper No. ARMA/NARMS 04-564.
14.
Nes
,
O.-M.
,
Horsrud
,
P.
,
Sønstebø
,
E. F.
,
Holt
,
R. M.
,
Ese
,
A. M.
,
Økland
,
D.
, and
Kjørholt
,
H.
, 1998, “
Rig Site and Laboratory Use of CWT Acoustic Velocity Measurements on Cuttings
,”
SPEREE
, pp.
282
287
.
15.
Søreide
,
O. K.
,
Bostrøm
,
B.
, and
Horsrud
,
P.
, 2009, “
Borehole Stability Simulations of an HPHT Field Using Anisotropic Shale Modeling
,” Paper No. ARMA/NAMRMS 09-185.
16.
Chen
,
G.
,
Chenevert
,
M. E.
,
Sharma
,
M. M.
, and
Yu
,
M.
, 2003, “
A Study of Wellbore Stability in Shales Including Poroelastic, Chemical, and Thermal Effects
,”
J. Pet. Sci. Eng.
,
38
, pp.
167
176
.
17.
Wilson
,
S. M.
,
Moschovidis
,
Z. A.
,
Cameron
,
J. R.
, and
Palmer
,
I. D.
, 2002, “
New Model for Predicting the Rate of Sand Production
,” Paper No. SPE/ISRM 78168.
18.
van den Hoek
,
P. J.
,
Hertogh
,
G. M. M.
,
Kooijman
,
A. P.
,
de Bree
,
P.
,
Kenter
,
C.
, and
Papamichos
,
E.
, 2000, “
A New Concept of Sand Production Prediction: Theory and Laboratory Experiments
,”
SPE Drill. Completion
,
15
(
4
), pp.
261
273
.
19.
Duveau
,
G.
,
Shao
,
J. F.
, and
Henry
,
J. P.
, 1998, “
Assessment of Some Failure Criteria for Strongly Anisotropic Geomaterials
,”
Mech. Cohesive-Frict. Mater.
,
3
, pp.
1
26
.
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