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- W2004172013 abstract "Abstract Drilling efficiency is a key factor in determining the viability of potential hydrocarbon plays throughout the world. Pushing our capabilities for speed and accuracy changes the evaluation of value that not only operators place on emerging and potential plays, but also the evaluation that countries place on the value of their available natural resources. Fundamental drilling challenges such as formation hardness, reactive torque, tortuosity, and abrasive formation types continue to inhibit our ability to seek out less conventional reserves. Reaching our targets faster and at a reduced overall cost allows us to expand the breadth of viable drilling opportunities in all regions while accessing additional value previously out of reach in existing plays. Today we are pushing current technology to the threshold of its capabilities with longer laterals and deeper targets in more complex well profiles. Without a step change in technology, we are nearing our maximum potential. A simple yet revolutionary technology has added new life to existing drilling technologies and is now addressing some of the fundamental drilling dynamics that currently limit our drilling efficiency and restrict our ability to reach for the next level of performance. This technology works in conjunction with existing drilling systems to amplify the vertical forces applied to the bit. By varying this amplification at specific frequencies, more efficient failing of the formation can be achieved. Increased ROP well above 50% has been achieved with consistent results over offset data with reduction in reactive torque and stick slip events. This paper details how by increasing cutting efficiency, a major operator has greatly extended bit life resulting in an increase in interval drilled lengths of as much as 125%." @default.
- W2004172013 created "2016-06-24" @default.
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- W2004172013 date "2013-10-22" @default.
- W2004172013 modified "2023-09-26" @default.
- W2004172013 title "Step Change Technology Amplifies Vertical Force Applied to Formation at the Bit Enhancing Cutting Efficiency" @default.
- W2004172013 cites W1988843932 @default.
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- W2004172013 doi "https://doi.org/10.2118/165926-ms" @default.
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