Modeling and Experimental Study on Motion States of Laboratory-Scale Bottom Hole Assembly in Horizontal Wells
Моделирование и экспериментальное исследование режимов движения лабораторной компоновки низа бурильной колонны в горизонтальных скважинах
2020-02-19
SCID: 54.1/x2h4nb7v
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bottom hole assemblyfinite element methodhorizontal wellslateral vibrationweight on bit
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Abstract (AI)
Motion states of bottom hole assembly (BHA) have a great effect on the trajectory control and drilling efficiency while rotary drilling. In order to study the motion states of BHA in horizontal wells, a BHA dynamic model with the finite element method was established. Meanwhile, an indoor experimental setup based on similarity criterion was designed and built to verify the numerical simulation results. Finally, the effects of measuring positions, rotate speeds, weight on bit (WOB), and friction coefficients on the motion states were analyzed in numerical simulation and experiment. The results show that the experimental results can match well with the numerical simulation results. The motion states of BHA in horizontal wells can be divided into three kinds, including circular arc swing, "8" shape swing, and dot-like circular motion. The circular arc swing mainly appears at middle section of BHA and occurs through the collective result of gravity and tangential friction. The dot-like circular motion mainly appears at near-bit or near-stabilizer area because drill bit and stabilizer can steady the BHA at the center part of the wellbore. The "8" shape swing mainly appears at the crossed area and occurs through collective disturbance of the other two motions. Moreover, rotate speed and friction coefficient have promotions on the lateral vibration while WOB have a much smaller effect. Through analyses, related suggestions are given for the drilling engineering. The related conclusions and suggestions in this paper can help to further understand the lateral dynamic characteristics of BHA in horizontal wells and select suitable parameters for drilling engineering.
Key Findings
1
A finite-element BHA dynamic model and similarity-based laboratory experiment were developed to investigate horizontal-well BHA motion states.
2
BHA motion in horizontal wells comprises circular-arc swing, figure-eight swing, and dot-like circular motion, each associated with distinct locations and mechanisms.
3
Circular-arc swing dominates the middle BHA section due to gravity and tangential friction, while dot-like motion occurs near the bit or stabilizer.
4
Laboratory measurements agreed well with numerical simulations, supporting the validity of the proposed dynamic model.
5
Rotational speed and friction coefficient promote lateral vibration, whereas weight on bit has a substantially smaller effect.
Research Object
Laboratory-scale bottom hole assembly (BHA) in horizontal wells
Research Subject
BHA motion states and lateral vibration characteristics under varying measurement positions, rotation speeds, weight on bit, and friction coefficients
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2020-02-19
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