Abstract

Drilling by high-pressure liquid jet, radial jet drilling (RJD) is a cost-effective technology to restimulate the production of old wells and the development of unconventional reservoirs. However, due to the unique process of 90 deg turning in the casing, hardly any traditional tool can be applied in the RJD trajectory measurement. Even minitools have been developed in the last few years; the increasing cost and unpredictable failure risk of lateral re-entrance are still non-negligible as the current design, much less than the huge measuring errors. In this paper, a new tool was proposed. Based on a special-shaped circuit board and separation of the supporting section, a fluid passageway was reserved in the measuring section to realize the measurement while or after the jet drilling without extra trips. It reduces the cost and failure risk of lateral re-entrance. Ample space in the supporting section was also provided, which meets the long-time operation requirements and establishes the base for real-time communication and trajectory control. Based on noise analyses, random walk is the main source of system noise in short-time measurements, and the effective measuring frequency is mostly in the range of 0–5 Hz. Therefore, autoregressive moving average (ARMA) models, Kalman filter, and low-pass filter were established for denoising. It allows us to analyze the data feature in more detail and extract the valid measuring data with improved accuracy. Considering performance tests result, the average errors of reckoned parameters were improved to less than 15%.

References

1.
Dickinson
,
W.
, and
Dickinson
,
R. W.
,
1985
, “
Horizontal Radial Drilling System
,”
SPE California Regional Meeting
,
Bakersfield, CA
,
Mar. 27–29
, Paper SPE-13949-MS. 10.2118/13949-MS
2.
Dickinson
,
W. A. D. E.
,
Dykstra
,
H. E. R. M. A. N.
,
Nees
,
J. M.
, and
Dickinson
,
E.
,
1992
, “
The Ultrashort Radius Radial System Applied to Thermal Recovery of Heavy Oil
,”
SPE Western Regional Meeting
,
Bakersfield, CA
,
Mar. 30–Apr. 1
, Paper SPE-24087-MS. 10.2118/24087-MS
3.
Landers
,
C.
,
1995
, “
Method of and Apparatus for Horizontal Well Drilling
,” U.S. Patent No. 5,413,184.
4.
Bruni
,
M. A.
,
Biasotti
,
J. H.
, and
Salomone
,
G. D.
,
2007
, “
Radial Drilling in Argentina
,”
Latin American & Caribbean Petroleum Engineering Conference
,
Buenos Aires, Argentina
,
Apr. 15–18
, Paper SPE-107382-MS. 10.2118/107382-MS
5.
Cirigliano
,
R. A.
, and
Talavera Blacutt
,
J. F.
,
2007
, “
First Experience in the Application of Radial Perforation Technology in Deep Wells
,”
Latin American & Caribbean Petroleum Engineering Conference
,
Buenos Aires, Argentina
,
Apr. 15–18
, Paper SPE-107182-MS. 10.2118/107182-MS
6.
Ibeh
,
S.
,
Obah
,
B.
, and
Chibueze
,
S.
,
2017
, “
Investigating the Application of Radial Drilling Technique for Improved Recovery in Mature Niger Delta Oil Fields
,”
SPE Nigeria Annual International Conference and Exhibition
,
Lagos, Nigeria
,
July 31–Aug. 2
, Paper SPE-189137-MS. 10.2118/189137-MS
7.
Kamel
,
A. H.
,
2016
, “
RJD: A Cost Effective Frackless Solution for Production Enhancement in Marginal Fields
,”
SPE Eastern Regional Meeting
,
Canton, OH
,
Sept. 13–15
, Paper SPE-184053-MS. 10.2118/184053-MS
8.
Kamel
,
A. H.
,
2017
, “
Radial Jet Drilling: A Technical Review
,”
SPE Middle East Oil & Gas Show and Conference
,
Manama, Kingdom of Bahrain
,
Mar. 6–9
, Paper SPE-183740-MS. 10.2118/183740-MS
9.
Salimzadeh
,
S.
,
Grandahl
,
M.
,
Medetbekova
,
M.
, and
Nick
,
H. M.
,
2019
, “
A Novel Radial Jet Drilling Stimulation Technique for Enhancing Heat Recovery From Fractured Geothermal Reservoirs
,”
Renew. Energy
,
139
, pp.
395
409
. 10.1016/j.renene.2019.02.073
10.
Peters
,
E.
,
Blöcher
,
G.
,
Salimzadeh
,
S.
,
Egberts
,
P. J.
, and
Cacace
,
M.
,
2018
, “
Modelling of Multi-Lateral Well Geometries for Geothermal Applications
,”
Adv. Geosci.
,
45
, pp.
209
215
. 10.5194/adgeo-45-209-2018
11.
Hu
,
X.
,
Song
,
X.
,
Liu
,
Y.
,
Li
,
G.
,
Shen
,
Z.
,
Lyu
,
Z.
, and
Liu
,
Q.
,
2019
, “
Lowest Required Surface Temperature for Thermal Spallation in Granite and Sandstone Specimens: Experiments and Simulations
,”
Rock Mech.
,
52
(
6
), pp.
1689
1703
. 10.1007/s00603-018-1665-0
12.
Jingbin
,
L.
,
Guangqing
,
Z.
,
Gensheng
,
L.
,
Zhongwei
,
H.
, and
Weichang
,
L.
,
2018
, “
A Method to Double the Extension Ability of Radial Jet Drilling Technology
,”
J. Energy Resour. Technol.
,
140
(
9
), p.
093102
. 10.1115/1.4039977
13.
Wang
,
B.
,
Li
,
G.
,
Huang
,
Z.
,
Li
,
J.
,
Zheng
,
D.
, and
Li
,
H.
,
2016
, “
Hydraulics Calculations and Field Application of Radial Jet Drilling
,”
SPE Drill. Completion
,
31
(
1
), pp.
71
81
. 10.2118/179729-PA
14.
Li
,
J.
,
Li
,
G.
,
Huang
,
Z.
,
Song
,
X.
,
Yang
,
R.
, and
Peng
,
K.
,
2015
, “
The Self-Propelled Force Model of a Multi-Orifice Nozzle for Radial Jet Drilling
,”
J. Nat. Gas Sci. Eng.
,
24
, pp.
441
448
. 10.1016/j.jngse.2015.04.009
15.
Bi
,
G.
,
Li
,
M.
,
Dou
,
L.
,
Qu
,
Z.
, and
Zhao
,
K.
,
2018
, “
Optimization Design and Rock-Breaking Characteristics Analysis of a Self-Propelled Swirling Multi-Jet Bit
,”
Energy Sci. Eng.
,
6
(
6
), pp.
716
726
. 10.1002/ese3.246
16.
Wang
,
B.
,
Li
,
G.
,
Huang
,
Z.
,
Ma
,
T.
,
Zheng
,
D.
, and
Li
,
K.
,
2017
, “
Lab Testing and Finite Element Method Simulation of Hole Deflector Performance for Radial Jet Drilling
,”
ASME J. Energy Resour. Technol.
,
139
(
3
), p.
032906
. 10.1115/1.4035552
17.
Dickinson
,
W.
,
Pesavento
,
M. J.
, and
Dickinson
,
W. R.
,
1990
, “
Data Acquisition, Analysis, and Control While Drilling With Horizontal Water Jet Drilling Systems
,”
CIM/SPE International Technical Meeting
,
Calgary, Alberta
,
June 10–13
, Paper PETSOC-90-127. 10.2118/90-127
18.
Balch
,
R.
,
2013
, “
Field Testing and Diagnostics of Radial-Jet Well-Stimulation for Enhanced Oil Recovery From Marginal Reserves
,”
SPE Western Regional Meeting
,
Anchorage, AL
,
May 23–26
, Paper SPE-180410-MS. 10.2118/180410-MS
19.
Huang
,
Z.
,
Huang
,
Z.
,
Su
,
Y.
,
Li
,
W.
, and
Jiang
,
T.
,
2018
, “
Where the Laterals Go? A Feasible Way for the Trajectory Measurement of Radial Jet Drilling Wells
,”
SPE Asia Pacific Oil and Gas Conference and Exhibition
,
Brisbane, Australia
,
Oct. 23–25
. 10.2118/192140-MS
You do not currently have access to this content.