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Evaluation of fiber optic methane sensor using a smoke chamber

机译:使用烟室评估光纤甲烷传感器

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摘要

This report presents the results of experiments to evaluate a prototype fiber optic methane monitor exposed to smoke using a smoke chamber to simulate atmospheric conditions in an underground coal mine after a fire or explosion. The experiments were conducted using test fires of different combustible sources commonly found in mines —douglas-fir wood, SBR belt, and Pittsburgh seam coal. The experiments were designed to assess the response of the fiber optic methane sensor to different contaminants, different contaminant levels and different contaminant durations produced from the test fires. Since the prototype methane monitor detects methane by measuring absorption at a specific wavelength, optical power at the absorption wavelength (1650 nm) was measured as a function of smoke concentration and duration. The other sensor response parameter-methane response times-were measured between smoke tests to assess the impact of soot accumulation on the sensor. Results indicate that the sensor screen effectively prevented smoke from obscuring the optical beam within the sensor head, with minimal impact on the system optical power budget. Methane response times increased with smoke exposure duration, attributed to soot loading on the protective screen.
机译:该报告提供了实验结果,用于评估使用烟熏室模拟暴露于烟气中的光纤甲烷原型监测器,以模拟火灾或爆炸后地下煤矿的大气状况。实验是使用通常在矿山中发现的不同可燃物的试验火进行的,这些可燃物包括花旗松木,SBR带和匹兹堡煤层煤。设计这些实验是为了评估光纤甲烷传感器对测试火灾产生的不同污染物,不同污染物水平和不同污染物持续时间的响应。由于原型甲烷监测器通过测量特定波长下的吸收来检测甲烷,因此根据烟气浓度和持续时间来测量吸收波长(1650 nm)处的光功率。在烟雾测试之间测量其他传感器响应参数-甲烷响应时间,以评估烟灰累积对传感器的影响。结果表明,传感器屏幕有效地防止了烟雾遮挡传感器头内的光束,而对系统光功率预算的影响最小。甲烷响应时间随烟雾暴露时间的延长而增加,这归因于保护屏上的烟灰负载。

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