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Mine Fire Detection in the Presence of Diesel Emissions

机译:柴油排放下的矿井火灾探测

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A series of four coal combustion experiments was conducted at the National Institute for Occupational Safety and Health's (NIOSH) Pittsburgh Research Laboratory (PRL) in the Safety Research Coal Mine (SRCM) to evaluate The response of fire sensors to a small 0.61 m square smoldering coal fire which transitions to flaming combustion in the presence of diesel emissions. An optical path smoke sensor alarmed earlier than a point type diffusion mode ionization smoke sensor; which alarmed prior to a CO alert value of 5 PPM above ambient. The presence of steady state diesel emissions resulted in a decrease in the optical smoke sensor analog output voltage signal by less than 1.4 pct for the three coal fire experiments in which a diesel engine was operating, whereas the ionization smoke sensor output decreased between 10.8 and 26.7 pct after the initial surge of the diesel engine. A commercial diesel discriminating fire sensor did not alarm for a fire in the one experiment for which it was used.The results of the experiments demonstrated that an optical path smoke sensor might be used to detect a coal fire under the experimental conditions considered of starting a diesel engine followed by a slowly developing coal fire.
机译:美国国家职业安全与健康研究所(NIOSH)在匹兹堡安全研究煤矿(SRCM)的匹兹堡研究实验室(PRL)进行了一系列四个煤燃烧实验,以评估火灾传感器对0.61 m方形闷烧的响应在柴油机排放的情况下转变为燃烧燃烧的煤火。光路烟雾传感器比点型扩散模式电离烟雾传感器更早发出警报;在CO警报值比环境高5 PPM之前发出警报。对于在其中运行柴油发动机的三个煤火实验,稳态柴油排放的存在导致光学烟雾传感器模拟输出电压信号降低了不到1.4 pct,而电离烟雾传感器的输出在10.8和26.7之间降低了柴油发动机最初喘振之后的pct。商用柴油判别式火灾传感器在使用的一个实验中并未发出火警警报。实验结果表明,在考虑启动点火的实验条件下,可以使用光路烟雾传感器来探测煤火。柴油机,然后是缓慢燃烧的煤火。

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