Faculty of Mechanical and Electronic Information, China University of Geosciences (Wuhan), Wuhan 430074, China.
PowerChina Hubei Electric Engineering Co., Ltd., Wuhan 430040, China.
Rev Sci Instrum. 2022 Dec 1;93(12):125001. doi: 10.1063/5.0121965.
Downhole vibration is important for the judgment of the drilling tool conditions and the formulation of drilling technology. To meet the demand of downhole drilling tools acceleration measurement, this research proposes a self-powered acceleration sensor with two working modes based on the triboelectric nanogenerator, namely, mode A, which is based on the voltage response acceleration trend and mode B, which judges the acceleration based on the output pulses. Test results show that the acceleration measurement range is 0-11 m/s, the maximum output voltage amplitude can reach 15.3 V, the working environment temperature is less than 250 °C, the working environment humidity is less than 90%, and long-time working has almost no effect on the output voltage of the sensor. In addition, since the sensor will generate electrical energy during the vibration process, the power generation performance of the sensor has been tested. And the results show that the maximum output power of the sensor is 0.18 µW when a 1000 MΩ load is connected in series. Compared to traditional downhole sensors, the sensor is more flexible, because it can work normally at high temperatures and has the potential for being self-powered.
井下振动对于判断钻井工具状况和制定钻井技术方案非常重要。为满足井下钻井工具加速度测量的需求,本研究提出了一种基于摩擦纳米发电机的自供电加速度传感器,具有两种工作模式:模式 A 基于电压响应加速度趋势,模式 B 则基于输出脉冲判断加速度。测试结果表明,该加速度测量范围为 0-11 m/s,最大输出电压幅度可达 15.3 V,工作环境温度小于 250°C,工作环境湿度小于 90%,且长时间工作对传感器的输出电压几乎没有影响。此外,由于传感器在振动过程中会产生电能,因此还测试了传感器的发电性能。结果表明,当串联一个 1000 MΩ 的负载时,传感器的最大输出功率为 0.18 µW。与传统的井下传感器相比,该传感器更具灵活性,因为它可以在高温下正常工作,并且具有自供电的潜力。