METHODS AND ALGORITHMS FOR MONITORING THE STATE OF THE GAS DIFFUSION FILTER OF METHANE ANALYZERS

V. Holinko, O. Holinko
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Abstract

"The results of research aimed at improving the reliability of stationary gas analyzers of gas protection systems are given. It is shown that it is possible to identify cases of contamination of the gas diffusion filter in methane analyzers, which can significantly affect the results of methane concentration measurement and lead to the failure of the protective shutdown system in the event of a danger of explosion, by analyzing the transient processes that occur in the analyzer after a short-term decrease in current through thermocouples of the sensor to the value at which the process of methane oxidation on the sensitive element stops. It is shown that in a thermocatalytic sensor with a double diffusion filter, when its filter element is significantly contaminated, the ratio of the amplitude of the bridge output voltage surge after a short-term decrease in current through the thermoelements to the value at which the methane oxidation process stops (after the pause) to the initial value of the bridge output voltage (before the pause) significantly increases, which makes it possible to detect pollution cases by analyzing the change in this ratio. The process of detecting significant pollution of the gas diffusion filter can be combined with the previously proposed process of automatic remote control of zero readings of the analyzers, which is carried out by reducing the power supply voltage of the thermogroup to the value at which the methane oxidation reaction does not occur on the working thermocouple. The method of detecting dangerous contamination of the gas diffusion filter is substantiated and the algorithm of operation of the ATmega8 microcontroller based on which the methane analyzer is implemented is described. "
甲烷分析仪气体扩散过滤器状态监测方法与算法
给出了提高气体保护系统固定式气体分析仪可靠性的研究结果。结果表明,甲烷分析仪中气体扩散过滤器的污染情况是可以识别的,它会显著影响甲烷浓度测量结果,并导致发生爆炸危险时保护停机系统失效。通过分析通过传感器热电偶的电流短期下降到敏感元件上的甲烷氧化过程停止的值后,分析仪中发生的瞬态过程。结果表明,在双扩散滤波器的热催化传感器中,当其滤芯受到严重污染时,通过热元件的电流短期下降后的桥输出电压浪涌幅值与甲烷氧化过程停止时(暂停后)的值之比与桥输出电压初始值(暂停前)之比显著增加;这使得通过分析这一比率的变化来检测污染案件成为可能。检测气体扩散过滤器明显污染的过程可以与之前提出的分析仪零读数自动远程控制过程相结合,该过程通过将热电组的电源电压降低到在工作热电偶上不发生甲烷氧化反应的值来实现。阐述了气体扩散过滤器危险污染的检测方法,并介绍了基于ATmega8单片机实现甲烷分析仪的操作算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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