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Research on Signal Transmission Device of Multi Adaptive Coiled Tube Measurement and Control System

Received: 4 December 2022     Accepted: 8 December 2022     Published: 10 January 2023
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Abstract

As an important technology for oilfield development and oil and gas reservoir reconstruction, the demand for coiled tubing logging, perforating, fracturing and acidizing and other process operations has increased dramatically, and downhole testing and control operations must be completed through downhole data acquisition and transmission and control signals. However, at present, the special cable coiled tubing roller device and logging roller operating machine mainly used at home and abroad have problems such as single function, high cost, complex structure, and poor versatility. Therefore, based on the structural characteristics of the conventional coiled tubing machine, through the analysis of the existing coiled tubing testing and control data signal transmission system, the research and design of the signal transmission device for the multi adaptive coiled tubing measurement and control system was completed, and a kind of signal transmission device for the multi adaptive coiled tubing signal testing, acquisition, transmission and feedback control system with strong versatility and high transmission efficiency was studied and designed, It eliminates the high cost of traditional equipment customized processing and manufacturing and the high labor intensity of operation and maintenance operations caused by the single adaptability of operation process, which are caused by complicated structures. It is of great significance for realizing the transformation and upgrading of the multi-function of intelligent measurement and control integration of coiled tubing machine, and is extremely important for the innovation of the digital network real-time monitoring system for future oilfield development.

Published in American Journal of Mechanical and Industrial Engineering (Volume 7, Issue 6)
DOI 10.11648/j.ajmie.20220706.11
Page(s) 84-88
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2023. Published by Science Publishing Group

Keywords

Coiled Pipe, Signal Transmission, Measurement and Control System, Device

References
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[3] Yin Zhuocheng. Research on the Control System of the Coiled Pipe Speed String Drum [J]. Science and Technology Innovation, 2018 (34): 62-63.
[4] He Huiqun. Coiled Pipe Drilling Technology and Equipment [J]. Petroleum Machinery, 2009, 37 (07): 1-6+94.
[5] Yin Zhuocheng Dynamic analysis of coiled tubing tension between cylinder and injector head [D]. Changjiang University, 2019.
[6] Zhou Zhihong, Lv Zhang, Yin Zhuocheng, Zheng Guang, Yu Li, Peng Xiongwen. Friction experiment of residual deformed pipe string in horizontal pipe [J]. Mechanics and Practice, 2018, 40 (03): 289-293.
[7] Peng Xiongwen, Zheng Guang, Yu Li, Yin Zhuocheng, Yuan Taoyong. A design of coiled tubing speed string roller [J]. Neijiang Science and Technology, 2018, 39 (04): 45-46+57.
[8] Liu Qingren, Yu Dongbing, Yang Gao, Liu Fei, Ma Qing, Yin Zhuocheng. Development and application of a new type of integrated coiled tubing machine auxiliary vehicle [J]. Petroleum Field Machinery, 2022, 51 (02): 72-76.
[9] Hu Qiangfa, Zhu Feng, Lv Weiping, Gai Zhiliang, Zhang Fuqiang, Zhu Ye. Technical Progress and Development Suggestions of PetroChina Coiled Pipe Operation [J]. Petroleum Science and Technology Forum, 2022, 41 (03): 77-85.
[10] Xu Lianhui. Brief Discussion on the Development of a New Type of Coiled Pipe Operation Vehicle [J]. China Equipment Engineering, 2021 (21): 145-146.
[11] Wu Xiaoguang, Huang Zhongwei, Li Gensheng, Shi Huaizhong, Liu Shoujun, Liu Xin. Research and field test of "coiled tubing+flexible drilling tool" sidetracking ultra short radius horizontal well technology [J]. Petroleum drilling technology: 1-13.
[12] Dong Fangping, Pu Yin, Wu Yongxing, Qiao Zhicai, Zhu Peike, Kan Kai. Thinking on the application and development of characteristic coiled pipe operation technology [J]. Petrochemical Technology, 2022, 29 (10): 90-92.
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[14] Zhang Haozhen, Zhang Chuanguo, Zheng Lei. Development Status and Trend of Coiled Tubing [J]. Welded Pipe, 2022, 45 (03): 25-31.
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Cite This Article
  • APA Style

    Zhuocheng Yin, Fuqiang Zhang, Wenyi Duan, Qing Ma, Jun Hao, et al. (2023). Research on Signal Transmission Device of Multi Adaptive Coiled Tube Measurement and Control System. American Journal of Mechanical and Industrial Engineering, 7(6), 84-88. https://doi.org/10.11648/j.ajmie.20220706.11

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    ACS Style

    Zhuocheng Yin; Fuqiang Zhang; Wenyi Duan; Qing Ma; Jun Hao, et al. Research on Signal Transmission Device of Multi Adaptive Coiled Tube Measurement and Control System. Am. J. Mech. Ind. Eng. 2023, 7(6), 84-88. doi: 10.11648/j.ajmie.20220706.11

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    AMA Style

    Zhuocheng Yin, Fuqiang Zhang, Wenyi Duan, Qing Ma, Jun Hao, et al. Research on Signal Transmission Device of Multi Adaptive Coiled Tube Measurement and Control System. Am J Mech Ind Eng. 2023;7(6):84-88. doi: 10.11648/j.ajmie.20220706.11

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  • @article{10.11648/j.ajmie.20220706.11,
      author = {Zhuocheng Yin and Fuqiang Zhang and Wenyi Duan and Qing Ma and Jun Hao and Zhongcheng Zhou},
      title = {Research on Signal Transmission Device of Multi Adaptive Coiled Tube Measurement and Control System},
      journal = {American Journal of Mechanical and Industrial Engineering},
      volume = {7},
      number = {6},
      pages = {84-88},
      doi = {10.11648/j.ajmie.20220706.11},
      url = {https://doi.org/10.11648/j.ajmie.20220706.11},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajmie.20220706.11},
      abstract = {As an important technology for oilfield development and oil and gas reservoir reconstruction, the demand for coiled tubing logging, perforating, fracturing and acidizing and other process operations has increased dramatically, and downhole testing and control operations must be completed through downhole data acquisition and transmission and control signals. However, at present, the special cable coiled tubing roller device and logging roller operating machine mainly used at home and abroad have problems such as single function, high cost, complex structure, and poor versatility. Therefore, based on the structural characteristics of the conventional coiled tubing machine, through the analysis of the existing coiled tubing testing and control data signal transmission system, the research and design of the signal transmission device for the multi adaptive coiled tubing measurement and control system was completed, and a kind of signal transmission device for the multi adaptive coiled tubing signal testing, acquisition, transmission and feedback control system with strong versatility and high transmission efficiency was studied and designed, It eliminates the high cost of traditional equipment customized processing and manufacturing and the high labor intensity of operation and maintenance operations caused by the single adaptability of operation process, which are caused by complicated structures. It is of great significance for realizing the transformation and upgrading of the multi-function of intelligent measurement and control integration of coiled tubing machine, and is extremely important for the innovation of the digital network real-time monitoring system for future oilfield development.},
     year = {2023}
    }
    

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  • TY  - JOUR
    T1  - Research on Signal Transmission Device of Multi Adaptive Coiled Tube Measurement and Control System
    AU  - Zhuocheng Yin
    AU  - Fuqiang Zhang
    AU  - Wenyi Duan
    AU  - Qing Ma
    AU  - Jun Hao
    AU  - Zhongcheng Zhou
    Y1  - 2023/01/10
    PY  - 2023
    N1  - https://doi.org/10.11648/j.ajmie.20220706.11
    DO  - 10.11648/j.ajmie.20220706.11
    T2  - American Journal of Mechanical and Industrial Engineering
    JF  - American Journal of Mechanical and Industrial Engineering
    JO  - American Journal of Mechanical and Industrial Engineering
    SP  - 84
    EP  - 88
    PB  - Science Publishing Group
    SN  - 2575-6060
    UR  - https://doi.org/10.11648/j.ajmie.20220706.11
    AB  - As an important technology for oilfield development and oil and gas reservoir reconstruction, the demand for coiled tubing logging, perforating, fracturing and acidizing and other process operations has increased dramatically, and downhole testing and control operations must be completed through downhole data acquisition and transmission and control signals. However, at present, the special cable coiled tubing roller device and logging roller operating machine mainly used at home and abroad have problems such as single function, high cost, complex structure, and poor versatility. Therefore, based on the structural characteristics of the conventional coiled tubing machine, through the analysis of the existing coiled tubing testing and control data signal transmission system, the research and design of the signal transmission device for the multi adaptive coiled tubing measurement and control system was completed, and a kind of signal transmission device for the multi adaptive coiled tubing signal testing, acquisition, transmission and feedback control system with strong versatility and high transmission efficiency was studied and designed, It eliminates the high cost of traditional equipment customized processing and manufacturing and the high labor intensity of operation and maintenance operations caused by the single adaptability of operation process, which are caused by complicated structures. It is of great significance for realizing the transformation and upgrading of the multi-function of intelligent measurement and control integration of coiled tubing machine, and is extremely important for the innovation of the digital network real-time monitoring system for future oilfield development.
    VL  - 7
    IS  - 6
    ER  - 

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Author Information
  • Jianghan Machinery Research Institute Co., Ltd., China National Petroleum Corporation, Wuhan, China

  • Jianghan Machinery Research Institute Co., Ltd., China National Petroleum Corporation, Wuhan, China

  • Jianghan Machinery Research Institute Co., Ltd., China National Petroleum Corporation, Wuhan, China

  • Jianghan Machinery Research Institute Co., Ltd., China National Petroleum Corporation, Wuhan, China

  • Jianghan Machinery Research Institute Co., Ltd., China National Petroleum Corporation, Wuhan, China

  • Jianghan Machinery Research Institute Co., Ltd., China National Petroleum Corporation, Wuhan, China

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