煤炭工程 ›› 2026, Vol. 58 ›› Issue (7): 233-240.doi: 10.11799/ce202607029

• 装备技术 • 上一篇    

近钻头随钻测量数据跨螺杆钻具无线通信技术研究

褚志伟,郝世俊,李泉新,陈 龙,王云宏,方 俊,杨冬冬,张冀冠,刘 飞,闫文超   

  1. 1. 煤炭科学研究总院,北京 100013

    2. 中煤科工西安研究院(集团)有限公司,陕西 西安 710077

  • 收稿日期:2026-01-11 修回日期:2026-03-10 出版日期:2026-07-15 发布日期:2026-08-03
  • 通讯作者: 郝世俊 E-mail:haoshijun@beiyuwh.top

Research on wireless communication technology across screw drill tool for near-bit data from measurement while drilling#br#

  • Received:2026-01-11 Revised:2026-03-10 Online:2026-07-15 Published:2026-08-03
  • Contact: jun shihao E-mail:haoshijun@beiyuwh.top

摘要:

为了推进煤矿井下近钻头随钻测量技术研发,在分析煤矿井下特殊应用场景的基础上,对比了蓝牙、电磁波和声波信号传输的适用性,优选蓝牙传输近钻头数据,提出了跨螺杆钻具无线通信技术方案。研究了水中蓝牙无线信号传输特性,构建了无线通信仿真模型,获取了发射功率、传输介质和传输距离对蓝牙信号强度的影响规律。在完成整体方案设计和仿真分析优化的基础上,进行了结构、电路和程序开发,研制了跨螺杆钻具无线通信装置,开展了室内通水测试,供电、采集和发送等指令均正常,理论分析、仿真模拟和室内测试结果一致性较高,验证了信号传输特性分析合理可行。依托试验基地开展了地面实钻试验,试验进尺249m,实现了近钻头伽马、扭矩、振动等多种参数跨越螺杆钻具无线传输和双向交互通信,可为煤矿井下近钻头随钻测量技术研发提供关键技术支撑。

关键词: 近钻头, 随钻测量, 跨螺杆钻具, 双向通信

Abstract:

To advance the development of near-bit measurement while drilling technology for underground coal mines, the feasibility of Bluetooth, electromagnetic wave and acoustic signal transmission was compared based on an analysis of the unique underground coal mine application scenarios. Bluetooth was selected as the preferred method for near-bit data transmission, and a wireless communication technical scheme across screw drilling tools was proposed. The transmission characteristics of Bluetooth wireless signals in water were investigated, and a wireless communication simulation model was established to determine the effects of transmission power, transmission medium, and transmission distance on Bluetooth signal strength. On the basis of overall scheme design and simulation analysis and optimization, the structure, circuitry and programs were developed, and an across screw tool wireless communication device was fabricated. Laboratory water circulation tests were conducted, and the functions of power supply, data acquisition and transmission were executed normally. The theoretical analysis, simulation results and laboratory test results were in good agreement, confirming the rationality and feasibility of the signal transmission characteristic analysis. A surface drilling test was carried out at a test base, with a footage of 249 m. The device provided a wireless channel for near-bit parameters, including gamma, torque and vibration, to be transmitted across the PDM drill, enabling two-way interactive communication. This work provides key technical support for the development of near-bit MWD technology for underground coal mines.

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