Maintain tight directional control through the magnetic zone of exclusion and monitor stick/slip, shock, and vibration.
已发表: 09/07/2018
已发表: 09/07/2018
An operator in Russia planned to drill a challenging S-shaped, extended-reach well with a drop from 86°to 55° inclination. To achieve this, the operator had to minimize tortuosity and maintain trajectory while drilling through hard stringers at a drop rate of 2°/30 m.
In addition, while drilling the operator needed to capture in-depth formation data, including density and caliper measurements for the geomechanics mud-weight window, pinpoint the correct liner setting depth, and calculate equivalent circulating density (ECD). Accuracy was critical because of the risks of losses and to guide completion design. Setting the liner at the right depth would maximize the success of future fluid production.
Schlumberger recommended drilling with the recently introduced PowerDrive Xcel RSS with real-time gamma ray because the point-the-bit technology performs reliably in high-profile directional drilling operations. It also senses magnetic and inertial stick/slip as well as shock and vibration on three axes.
Given anticipated hard stringers and the S-shaped extended reach drilling, the PowerDrive Xcell RSS will provide the operator with crucial monitoring for optimal placement of the 94/8-in liner, while the advanced directional control will enable confident drilling of the complex section without compromising LWD data acquisition.
The PowerDrive Xcel RSS drilled the 2,000-m interval from shoe to shoe in just one run with little or no shock and vibration. The high-quality, real-time data captured by the BHA enabled the drilling team to land the well at the planned 55° inclination and determine the liner setting depth without any additional logging runs. The azimuthal hold feature of the PowerDrive Xcel RSS minimized tortuosity and enabled the operator to float the liner to total depth.
Challenge: Drill an S-shaped, extended-reach well shoe to shoe with a drop from 86° to 55° inclination with a planned 2°/30 m dogleg.
Solution:
Results: