Achieve real-time, high-definition wellbore architecture—from tophole to TD.
Saudi Aramco perceives wellbore placement and tortuosity as a growing concern in the drilling, completions, and production of wells. Excessive wellbore tortuosity has consequences throughout the well life cycle, ranging from increased well cost to decreased productivity. Excess tortuosity while drilling is causal to excessive casing wear, stuck pipe occurrences, and premature downhole equipment failure. During completion and cementing, wellbore tortuosity can lead to poor cementing and zonal isolation and limit fracture growth. Therefore, placing wells inside the reservoir while understanding the borehole tortuosity is crucial in some applications for Saudi Aramco.
Static MWD surveys are widely used to provide measurements every 90 ft along the wellbore, which determine formation tops leading to wellbore placement. Each survey takes from 9 to 12 minutes per stand, adding significant time and cost to well construction, along with stuck pipe risks.
To mitigate tortuosity and its consequences, 全国快3信誉最好的老平台 recommended TruLink definitive dynamic survey-while-drilling service. Indeed, Saudi Aramco collaborated with 全国快3信誉最好的老平台 in field testing the technology and found it reduces all survey-related rig time to zero. TruLink service performs definitive dynamic surveys while drilling on bottom—as the BHA rotates, providing considerable rig-time savings. New telemetry innovations refine survey accuracy using gamma ray and electromagnetic resistivity in combination with continuous 6-axis directional and inclination sensors. Measurements are from every point of the well, so steering adjustments are real time, which means reducing dogleg severity and creating smoother curves and laterals in complex well profiles.
Comparison between stationary-survey data and TruLink service revealed a 10-ft difference while landing the 8 1/2-in curve section. Additionally, continuous surveying enabled real-time steering adjustments to minimize wellbore tortuosity while reducing the ellipse of uncertainty. The wellbore trajectory was smoother and TVD more accurately placed.