A Review of the Research and Development of High-Frequency Measurement Technologies Used for Nonlinear Dynamics of Drillstring

High-frequency measurements can provide much more new insights for drillstring dynamics compared to traditional instruments, leading to a new realm of understanding of drillstring behaviors in great detail than before. In this paper, data acquisition tools with high-frequency sample rates and the da...

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Main Authors: Lixin Li, Jin Wang, Yingmei Yu, Yifei Xing, Fengyan Zhang, Yi Zhang, Yanyan Li
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/8821986
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author Lixin Li
Jin Wang
Yingmei Yu
Yifei Xing
Fengyan Zhang
Yi Zhang
Yanyan Li
author_facet Lixin Li
Jin Wang
Yingmei Yu
Yifei Xing
Fengyan Zhang
Yi Zhang
Yanyan Li
author_sort Lixin Li
collection DOAJ
description High-frequency measurements can provide much more new insights for drillstring dynamics compared to traditional instruments, leading to a new realm of understanding of drillstring behaviors in great detail than before. In this paper, data acquisition tools with high-frequency sample rates and the data processing are introduced. Based on high-frequency data, progress of drilling dynamics is summarized, including new understandings of low-frequency drillstring dynamics, high-frequency torsional oscillations (HFTOs), and high-frequency axial oscillations (HFAOs) and new findings for the coupling of vibrations and motions, as well as models and simulation methods to deeply comprehend high-frequency dynamics of drillstring. High-frequency measurements have been used for enabling drillers to improve drill performance, especially for field decision making, BHA selection, and bit design, usually through the ways of minimizing vibrations to obtain high-efficient drilling conditions, the high-frequency response near bit can also be used for lithology identification during drilling. Though there still exists a gap between research perspective and drilling practice, the industry of high-frequency measurements has gotten off a good start, which has huge potential to avoid nonproductive time thereupon reducing drilling cost in the future.
format Article
id doaj-art-dc42401b3b574c5dba52516446d3a3af
institution Kabale University
issn 1070-9622
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language English
publishDate 2021-01-01
publisher Wiley
record_format Article
series Shock and Vibration
spelling doaj-art-dc42401b3b574c5dba52516446d3a3af2025-02-03T06:11:59ZengWileyShock and Vibration1070-96221875-92032021-01-01202110.1155/2021/88219868821986A Review of the Research and Development of High-Frequency Measurement Technologies Used for Nonlinear Dynamics of DrillstringLixin Li0Jin Wang1Yingmei Yu2Yifei Xing3Fengyan Zhang4Yi Zhang5Yanyan Li6Chinese Academy of Geological Sciences, Beijing 100037, ChinaSchool of Engineering and Technology, China University of Geosciences, Beijing 100083, ChinaShijiazhuang Senior Technical School, Shijiazhuang 050040, ChinaChinese Academy of Geological Sciences, Beijing 100037, ChinaChinese Academy of Geological Sciences, Beijing 100037, ChinaChinese Academy of Geological Sciences, Beijing 100037, ChinaChinese Academy of Geological Sciences, Beijing 100037, ChinaHigh-frequency measurements can provide much more new insights for drillstring dynamics compared to traditional instruments, leading to a new realm of understanding of drillstring behaviors in great detail than before. In this paper, data acquisition tools with high-frequency sample rates and the data processing are introduced. Based on high-frequency data, progress of drilling dynamics is summarized, including new understandings of low-frequency drillstring dynamics, high-frequency torsional oscillations (HFTOs), and high-frequency axial oscillations (HFAOs) and new findings for the coupling of vibrations and motions, as well as models and simulation methods to deeply comprehend high-frequency dynamics of drillstring. High-frequency measurements have been used for enabling drillers to improve drill performance, especially for field decision making, BHA selection, and bit design, usually through the ways of minimizing vibrations to obtain high-efficient drilling conditions, the high-frequency response near bit can also be used for lithology identification during drilling. Though there still exists a gap between research perspective and drilling practice, the industry of high-frequency measurements has gotten off a good start, which has huge potential to avoid nonproductive time thereupon reducing drilling cost in the future.http://dx.doi.org/10.1155/2021/8821986
spellingShingle Lixin Li
Jin Wang
Yingmei Yu
Yifei Xing
Fengyan Zhang
Yi Zhang
Yanyan Li
A Review of the Research and Development of High-Frequency Measurement Technologies Used for Nonlinear Dynamics of Drillstring
Shock and Vibration
title A Review of the Research and Development of High-Frequency Measurement Technologies Used for Nonlinear Dynamics of Drillstring
title_full A Review of the Research and Development of High-Frequency Measurement Technologies Used for Nonlinear Dynamics of Drillstring
title_fullStr A Review of the Research and Development of High-Frequency Measurement Technologies Used for Nonlinear Dynamics of Drillstring
title_full_unstemmed A Review of the Research and Development of High-Frequency Measurement Technologies Used for Nonlinear Dynamics of Drillstring
title_short A Review of the Research and Development of High-Frequency Measurement Technologies Used for Nonlinear Dynamics of Drillstring
title_sort review of the research and development of high frequency measurement technologies used for nonlinear dynamics of drillstring
url http://dx.doi.org/10.1155/2021/8821986
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