...
首页> 外文期刊>Nanotechnology >Development of gas-liquid two-phase flow pattern sensor of coalbed methane based on the principle of triboelectric nanogenerator
【24h】

Development of gas-liquid two-phase flow pattern sensor of coalbed methane based on the principle of triboelectric nanogenerator

机译:基于摩擦纳米料原理的煤层气煤层两相流动图案传感器的研制

获取原文
获取原文并翻译 | 示例
           

摘要

During the mining of coalbed methane (CBM), real-time measurement conducted by a gas-liquid two-phase flow pattern sensor is one of the key steps in the development of a reasonable discharge and mining system. In this study, a self-powered flow pattern sensor based on the triboelectric nanogenerator (TENG) was proposed and analyzed. The basic principle is as follows: when the sensor is impacted by the bubbles of the two-phase flow, triboelectric charges are generated due to the contact between the copper electrode, which plays the dual roles of electrode and positive triboelectric material, and the PTFE which acts as negative triboelectric material. This is transferred to produce voltage signals, thus realizing the measurement of the bubbles. On this basis, the characteristics and duration of the bubbles were further analyzed to measure the two-phase flow pattern. In addition, relevant characteristic parameters of the sensor were determined through analysis and experiment; when the product of the volume and velocity of the bubbles is greater than 608 cm(3) . cms(-1) and the impact frequency is less than 0.45 Hz, the sensor can be used normally. We also explored the possibility of using the sensor to collect the impact energy of the bubbles to be used by other devices. As indicated by subsequent experiments on the sensor, it performs in a stable manner and can be used to measure the gas-liquid two-phase flow pattern, showing broad application prospects in the field of CBM.
机译:在煤层甲烷(CBM)采矿过程中,由气液两相流动图案传感器进行的实时测量是合理放电和采矿系统开发的关键步骤之一。在该研究中,提出并分析了基于摩擦纳米料(Teng)的自动流动模式传感器。基本原理如下:当传感器受到两相流气泡的影响时,由于铜电极之间的接触而产生摩擦电荷,这起到了电极和正摩擦材料的双重作用,以及PTFE它充当消极的摩擦电材料。这被转移以产生电压信号,从而实现气泡的测量。在此基础上,进一步分析了气泡的特性和持续时间以测量两相流动模式。此外,通过分析和实验确定传感器的相关特征参数;当气泡的体积和速度的乘积大于608厘米(3)时。 CMS(-1)和冲击频率小于0.45Hz,传感器可以正常使用。我们还探讨了使用传感器收集其他设备使用气泡的冲击能量的可能性。如在传感器上的后续实验所示,它以稳定的方式执行并且可用于测量气液两相流动模式,显示CBM领域的广泛应用前景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号