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Research on the Potential of Spherical Triboelectric Nanogenerator for Collecting Vibration Energy and Measuring Vibration

机译:球形摩擦纳米发电机收集振动能量和测量振动的潜力研究。

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摘要

The traditional downhole drilling vibration measurement methods which use cable or battery as power supplies increase the drilling costs and reduce the drilling efficiency. This paper proposes a spherical triboelectric nanogenerator, which shows the potential to collect the downhole vibration energy and measure the vibration frequency in a self-powered model. The power generation tests show that the output signal amplitude of the spherical triboelectric nanogenerator increases as the vibration frequency increases, and it can reach a maximum output voltage of 70 V, a maximum current of 3.3 × 10 A, and a maximum power of 10.9 × 10 W at 8 Hz when a 10-ohm resistor is connected. Therefore, if the power generation is stored for a certain period of time when numbers of the spherical triboelectric nanogenerators are connected in parallel, it may provide intermittent power for the low-power downhole measurement instruments. In addition, the sensing tests show that the measurement range is 0 to 8 Hz, the test error is less than 2%, the applicable working environment temperature is below 100 degrees Celsius, and the installation distance between the spherical triboelectric nanogenerator and the vibration source should be less than the critical value of 150 cm because the output signal amplitude is inversely proportional to the distance.
机译:传统的使用电缆或电池作为电源的井下钻孔振动测量方法会增加钻孔成本并降低钻孔效率。本文提出了一种球形摩擦电纳米发电机,它显示了在自供电模型中收集井下振动能量和测量振动频率的潜力。发电测试表明,球形摩擦纳米发电机的输出信号幅度随着振动频率的增加而增大,并且可以达到最大输出电压70 V,最大电流3.3×10 A和最大功率10.9×当连接10欧姆电阻器时,在8 Hz时为10W。因此,如果当多个球形摩擦电纳米发电机并联连接时将发电存储一定时间,则可以为低功率井下测量仪器提供间歇性功率。此外,传感测试表明,测量范围为0至8 Hz,测试误差小于2%,适用的工作环境温度低于100摄氏度,球形摩擦纳米发电机与振动源之间的安装距离由于输出信号的幅度与距离成反比,因此应小于150 cm的临界值。

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