首页> 外文会议>2016 SME annual conference amp; expo: the future for mining in data-driven world >EFFECT OF CONTROLLED RECIRCULATION ON BUILDUP OF METHANE CONCENTRATION IN A SAMPLE BOOSTER FAN NETWORK
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EFFECT OF CONTROLLED RECIRCULATION ON BUILDUP OF METHANE CONCENTRATION IN A SAMPLE BOOSTER FAN NETWORK

机译:控制循环对样品增强风机网络中甲烷浓度的影响

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Controlled recirculation may be considered as a beneficial means in mines of cold climate, where heating of air is required, and in deep or extensive mines, where cooling of air is required. Controlled recirculation can be designed by proper sizing of the booster fans with respect to main fan. Intuitively, it seems that the buildup of methane at the face will cease when a steady state condition is attained, and also that, at that same time, the maximum concentration at the face will remain same as in the return air. This supposition is proved by mathematical analysis that considers uniform mixing of methane in air in successive cycles of recirculation. This study includes two scenarios to show the effect of controlled recirculation on methane concentration in a sample network. Firstly, when recirculation crosscut exists near the working face; secondly, when recirculation crosscut exists away from the working face. The later scenario shows lesser buildup of methane concentration than the former one.
机译:在需要加热空气的寒冷气候矿井以及需要冷却空气的深部或广泛矿井中,控制再循环可被视为有益的手段。可以通过将增压风扇相对于主风扇的尺寸正确设置来设计受控的再循环。直觉上,当达到稳态条件时,工作面上的甲烷积累似乎将停止,并且与此同时,工作面上的最大浓度将保持与返回空气中的相同。通过数学分析证明了这种假设,该数学分析考虑了在连续的循环循环中甲烷在空气中的均匀混合。这项研究包括两个方案,以显示受控再循环对样品网络中甲烷浓度的影响。首先,当工作面附近存在再循环横切面时;其次,当再循环横切面远离工作面时。后一种情况显示甲烷浓度的积累比前一种情况少。

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