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Study on the Online Dissolved Gas Analysis Monitor based on the Photoacoustic Spectroscopy

机译:基于光声光谱的在线溶解气体分析监测仪研究

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According to the principle of Photoacoustic Spectroscopy, HPAS-1000 Online Dissolved Gas Analysis Monitor is developed to monitor the dissolved gas in the power transformers online, which can directly extract the oil sample from the running transformer and measure the content of Hydrogen, Acetylene, Ethylene, Methane, Ethane, Carbon monoxide and Carbon dioxide dissolved in the oil sample in real time. Field Gas Monitor-INNOVA 1412 module is employed for it only takes a few milliliters of gas to achieve the measurement and the sensitivity of Acetylene, Ethylene, Methane, Carbon monoxide can reach to less than 0.5ppm. In order to separate the gas from the transformer oil a vacuum pump is used in the degassing module with TEFLON AF 2400 polymer membrane. For every fault gas has cross-interferences with each other including water vapor when measuring, INNOVA 1412 module should be calibrated by the fault gases of known standard concentrations before it can be used for measuring. Then several experiments were designed in order to study the characteristics of capillary negative pressure oil gas degassing system, and found the most efficient way of degassing. The experimental results show that, under the same conditions, the longer the degassing time, the higher the degassing efficiency; the greater the pressure difference, the higher the degassing efficiency; as the flow rate increases, the degassing efficiency increases first and then decreases, and the optimum flow rate is between 20ml/min and 30ml/min. Based on these results, the performance of HPAS-1000 Online Dissolved Gas Analysis Monitor is optimized, thus it subsequently passed the certification of CEPRI successfully and installed in the substations.
机译:根据光声光谱的原理,开发了HPAS-1000在线溶解气体分析监测监测仪以在线监测电力变压器中的溶解气体,可以直接从运行变压器中提取油样并测量氢,乙炔,乙烯的含量,实时甲烷,乙烷,一氧化碳和二氧化碳实时溶解在油样中。现场气体监测器 - Innova 1412模块用于仅需要几毫升气体,以实现乙炔,乙烯,甲烷,一氧化碳的测量和敏感性,可达到小于0.5ppm。为了将气体与变压器油分离,真空泵用Teflon AF 2400聚合物膜在脱气模块中使用。对于每种故障气体,在测量时,彼此的交叉干扰包括水蒸气,应通过已知标准浓度的故障气体来校准Innova 1412模块,以便测量。然后设计了几个实验,以研究毛细管负压油气脱气系统的特性,并发现最有效的脱气方式。实验结果表明,在相同的条件下,脱气时间越长,脱气效率越高;压力差异越大,脱气效率越高;随着流速的增加,脱气效率首先增加,然后降低,并且最佳流速在20ml / min和30ml / min之间。基于这些结果,优化了HPAS-1000在线溶解气体分析监测仪的性能,因此随后将CEPRI认证成功并安装在变电站中。

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