Abstract

Extended reach drilling (ERD) wells with a horizontal and highly deviated section are widely applied in the oil and gas industry because they provide higher drainage area than vertical wells and hence increase the productivity or injectivity of the well. Among many issues encountered in a complex well trajectory, poor hole cleaning is the most common problem, which occurs mainly in the deviated and horizontal section of oil and gas wells. There are significant parameters that have a serious impact on hole cleaning performance in high-angle and horizontal sections. These include flowrate, rheology, and density of the drilling fluid, drill string eccentricity, pipe rotation, and cuttings size. It has been recognized that the action of most of these parameters to transport drilled cuttings is constantly a point of controversy among oilfield engineers. In the present study, extensive experiments were conducted in an advanced purpose-built flow rig to identify the main parameters affecting on circulate the cuttings out of the test section in a horizontal position. The flow-loop simulator has been designed to allow easy variation of operational parameters in terms of flowrate, mud density, drill string eccentricity, pipe rotation, and cuttings size. In addition, the study covers the impacts of laminar, transition, and turbulent flow regimes. The goal of such variation in the operational conditions is to simulate real-field situations. The results have shown that drill string rotation and flowrate were the operational parameters with the highest positive influence on the cuttings transports process. In contrast, drill pipe eccentricity has a negative influence on cuttings removal efficiency. The cuttings transportation performance is further improved by pipe rotation at different levels of eccentricity, especially at fully eccentric annuli. It was also shown that larger cuttings appeared to be easier to remove in a horizontal annulus than smaller ones. The experimental results would provide a more in-depth understanding of the relationship between drilling operation parameters and hole cleaning efficiency in ERD operations. This will help the drilling teams to realize what action is better to take for efficient cutting transportation.

References

1.
Gao
,
D.
,
2019
, “
A High-Efficiency Development Mode of Shale Gas Reservoirs in Mountainous Areas Based on Large Cluster Horizontal Well Engineering
,”
Nat. Gas Ind. B
,
6
(
2
), pp.
122
128
.
2.
Lyu
,
S.
,
Wang
,
S.
,
Chen
,
X.
,
Shah
,
S. M.
,
Li
,
R.
,
Xiao
,
Y.
,
Dong
,
Q.
, and
Gu
,
Y.
,
2019
, “
Experimental Study of a Degradable Polymer Drilling Fluid System for Coalbed Methane Well
,”
J. Pet. Sci. Eng.
,
178
, pp.
678
690
.
3.
Abbas
,
A. K.
,
Flori
,
R.
,
Almubarak
,
H.
,
Dawood
,
J.
,
Abbas
,
H.
, and
Alsaedi
,
A.
,
2019
, “
Intelligent Prediction of Stuck Pipe Remediation Using Machine Learning Algorithms
,”
Presented at the SPE Annual Technical Conference and Exhibition
,
Calgary, Alberta, Canada
,
Sept. 30–Oct. 2
.
4.
Taghipour
,
A.
,
Lund
,
B.
,
David Ytrehus
,
J.
,
Skalle
,
P.
,
Saasen
,
A.
,
Reyes
,
A.
, and
Abdollahi
,
J.
,
2014
, “
Experimental Study of Hydraulics and Cuttings Transport in Circular and Noncircular Wellbores
,”
ASME J. Energy Resour. Technol.
,
136
(
2
), p.
022904
.
5.
Mohammed
,
H. Q.
,
Abbas
,
A. K.
, and
Dahm
,
H. H.
,
2018
, “
Wellbore Instability Analysis for Nahr Umr Formation in Southern Iraq
,”
Presented at the 52nd US Rock Mechanics/Geomechanics Symposium (ARMA)
,
Seattle, WA
,
June 17–20
.
6.
Mahmoud
,
A. A.
,
Elzenary
,
M.
, and
Elkatatny
,
S.
,
2019
, “
New Hybrid Hole Cleaning Model for Vertical and Deviated Wells
,”
ASME J. Energy Resour. Technol.
,
142
(
3
), p.
034501
.
7.
Huaizhong
,
S.
,
Heqian
,
Z.
,
Zhaosheng
,
J.
,
Jingbin
,
L.
,
Xinxu
,
H.
, and
Shijie
,
Z.
,
2019
, “
Numerical Simulation and Experimental Study of Cuttings Transport in Narrow Annulus
,”
ASME J. Energy Resour. Technol.
,
141
(
8
), p.
082902
.
8.
Yeu
,
W. J.
,
Katende
,
A.
,
Sagala
,
F.
, and
Ismail
,
I.
,
2019
, “
Improving Hole Cleaning Using Low Density Polyethylene Beads at Different Mud Circulation Rates in Different Hole Angles
,”
J. Nat. Gas Sci. Eng.
,
61
, pp.
333
343
.
9.
Al Dushaishi
,
M. F.
,
Nygaard
,
R.
, and
Stutts
,
D. S.
,
2016
, “
Effect of Drilling Fluid Hydraulics on Drill Stem Vibrations
,”
J. Nat. Gas Sci. Eng.
,
35
, pp.
1059
1069
.
10.
Dahm
,
H. H.
,
Abbas
,
A. K.
,
Alhumairi
,
M. A.
,
Alsaba
,
M.
,
Mohammed
,
H. Q.
, and
Al-Hamad
,
N.
,
2019
, “
Using Shear Wave Anisotropy Approach to Determine State of Stress Around the Wellbore From Advanced Acoustic Well Logging; Case Study From Southern Iraq
,”
Abu Dhabi International Petroleum Exhibition & Conference
,
Abu Dhabi, UAE
,
Nov. 11–14
.
11.
Li
,
J.
, and
Walker
,
S.
,
2001
, “
Sensitivity Analysis of Hole Cleaning Parameters in Directional Wells
,”
SPE J.
,
6
(
4
), pp.
356
363
.
12.
Nazari
,
T.
,
Hareland
,
G.
, and
Azar
,
J. J.
,
2010
, “
Review of Cuttings Transport in Directional Well Drilling: Systematic Approach
,”
Presented at the SPE Western Regional Meeting
,
Anaheim, CA
,
May 27–29
.
13.
Mahmoud
,
H.
,
Hamza
,
A.
,
Nasser
,
M. S.
,
Hussein
,
I. A.
,
Ahmed
,
R.
, and
Karami
,
H.
,
2020
, “
Hole Cleaning and Drilling Fluid Sweeps in Horizontal and Deviated Wells: Comprehensive Review
,”
J. Pet. Sci. Eng.
,
186
, p.
106748
.
14.
Song
,
X.
,
Xu
,
Z.
,
Li
,
G.
,
Pang
,
Z.
, and
Zhu
,
Z.
,
2017
, “
A New Model for Predicting Drag Coefficient and Settling Velocity of Spherical and Non-Spherical Particle in Newtonian Fluid
,”
Powder Technol.
,
321
, pp.
242
250
.
15.
Erge
,
O.
,
Ozbayoglu
,
M. E.
,
Miska
,
S. Z.
,
Yu
,
M.
,
Takach
,
N.
,
Saasen
,
A.
, and
May
,
R.
,
2014
, “
Effect of Drillstring Deflection and Rotary Speed on Annular Frictional Pressure Losses
,”
ASME J. Energy Resour. Technol.
,
136
(
4
), p.
042909
.
16.
Abbas
,
A. K.
,
Rushdi
,
S.
,
Alsaba
,
M.
, and
Al Dushaishi
,
M. F.
,
2019
, “
Drilling Rate of Penetration Prediction of High-Angled Wells Using Artificial Neural Networks
,”
ASME J. Energy Resour. Technol.
,
141
(
11
), p.
112904
.
17.
Abbas
,
A. K.
,
Flori
,
R. E.
, and
Alsaba
,
M.
,
2019
, “
Stability Analysis of Highly Deviated Boreholes to Minimize Drilling Risks and Nonproductive Time
,”
ASME J. Energy Resour. Technol.
,
141
(
8
), p.
082904
.
18.
Sanchez
,
R. A.
,
Azar
,
J.
,
Bassal
,
A.
, and
Martins
,
A.
,
1999
, “
Effect of Drillpipe Rotation on Hole Cleaning During Directional-Well Drilling
,”
SPE J.
,
4
(
2
), pp.
101
108
.
19.
API Recommended Practice 13B-1
,
2009
, “
Recommended Practice for Field Testing of Water Based Drilling Fluids
,” 5th ed.
20.
Abbas
,
A. K.
,
Alhameedi
,
H. A.
,
Alsaba
,
M.
,
Al Dushaishi
,
M. F.
, and
Flori
,
R.
,
2020
, “
Experimental Investigation of Coiled Tubing Buckling Effect on Annular Frictional Pressure Losses
,”
Presented at the SPE/ICoTA Well Intervention Conference and Exhibition
,
Woodlands, TX
,
March 24–25
.
21.
Kelessidis
,
V.
,
Maglione
,
R.
,
Tsamantaki
,
C.
, and
Aspirtakis
,
Y.
,
2006
, “
Optimal Determination of Rheological Parameters for Herschel–Bulkley Drilling Fluids and Impact on Pressure Drop, Velocity Profiles and Penetration Rates During Drilling
,”
J. Pet. Sci. Eng.
,
53
(
3–4
), pp.
203
224
.
22.
Erge
,
O.
,
Ozbayoglu
,
E. M.
,
Miska
,
S.
,
Yu
,
M.
,
Takach
,
N.
,
Saasen
,
A.
, and
May
,
R.
,
2015
, “
The Effects of Drillstring-Eccentricity, -Rotation, and -Buckling Configurations on Annular Frictional Pressure Losses While Circulating Yield-Power-Law Fluids
,”
SPE Drill. Completion
,
30
(
3
), pp.
257
271
.
23.
Sayindla
,
S.
,
Lund
,
B.
,
Ytrehus
,
J. D.
, and
Saasen
,
A.
,
2019
, “
CFD Modeling of Hydraulic Behavior of Oil- and Water-Based Drilling Fluids in Laminar Flow
,”
SPE Drill. Completion
,
34
(
3
), pp.
207
215
.
24.
Vryzas
,
Z.
,
Nalbandian
,
L.
,
Zaspalis
,
V. T.
, and
Kelessidis
,
V. C.
,
2019
, “
How Different Nanoparticles Affect the Rheological Properties of Aqueous Wyoming Sodium Bentonite Suspensions
,”
J. Pet. Sci. Eng.
,
173
, pp.
941
954
.
25.
Lam
,
C.
, and
Jefferis
,
S. A.
,
2014
, “
Interpretation of Viscometer Test Results for Polymer Support Fluids
,”
Presented at Geo-Shanghai International Conference
,
Shanghai, China
,
May 26–28
,
American Society of Civil Engineers
.
26.
Minakov
,
A.
,
Zhigarev
,
V.
,
Mikhienkova
,
E.
,
Neverov
,
A.
,
Buryukin
,
F.
, and
Guzei
,
D.
,
2018
, “
The Effect of Nanoparticles Additives in the Drilling Fluid on Pressure Loss and Cutting Transport Efficiency in the Vertical Boreholes
,”
J. Pet. Sci. Eng.
,
171
, pp.
1149
1158
.
27.
ASTM D4253-00
,
2006
, “
Standard Test Methods for Maximum Index Density and Unit Weight of Solids Using a Vibratory Table
,”
ASTM International
,
West Conshohocken, PA
.
28.
Sayindla
,
S.
,
Lund
,
B.
,
Ytrehus
,
J. D.
, and
Saasen
,
A.
,
2017
, “
Hole-Cleaning Performance Comparison of Oil-Based and Water-Based Drilling Fluids
,”
J. Pet. Sci. Eng.
,
159
, pp.
49
57
.
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