Day 2 Wed, October 30, 2019 2019
DOI: 10.4043/29875-ms
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Combined Data Analytics and Physics-Based Simulation for Optimum Bit, Motor, BHA Combination

Abstract: Today, drill bits and mud motor issues often account for more than half of the reasons for pulling out of hole before total depth (TD) on typical directional drilling wells. In this paper, we present a comprehensive methodology designed for optimally matching drill bits, mud motors, and bottomhole assembly (BHA) components for reduced failure risks and improved drilling performance. The methodology consists of combining the design characteristics of drill bits, mud motors, and the rest of the BH… Show more

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Cited by 5 publications
(2 citation statements)
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“…The differential pressure values are a function of the motor design, the rotor and stator state, applied WOB, etc. (Ba et al, 2019). The challenge in the algorithm is whether the system can use the standpipe pressure data points for the first interval of rotating or sliding drilling until another rotating off-bottom operation occurs.…”
Section: Data Quality and Operations Recognitionmentioning
confidence: 99%
“…The differential pressure values are a function of the motor design, the rotor and stator state, applied WOB, etc. (Ba et al, 2019). The challenge in the algorithm is whether the system can use the standpipe pressure data points for the first interval of rotating or sliding drilling until another rotating off-bottom operation occurs.…”
Section: Data Quality and Operations Recognitionmentioning
confidence: 99%
“…The entire algorithm is implemented as standalone executable code, which is available to power section designers and engineers and can be embedded into higher level systems [12].…”
mentioning
confidence: 99%