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CO emission regularity and its influencing factors in a fully mechanized caving face

机译:全机械塌陷面的共同排放规律及其影响因素

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To explore the problem of CO concentration overrun in fully mechanized caving faces, a multiphysical field coupling model of CO emission regularity was established in this study based on the gas flow theory, gas concentration field theory, and heat transfer theory. Taking the 014N1 ?1 working face of the No. 1 coal seam in Ruian coal mine as the research object, the model was applied to simulate the CO concentration in the fully mechanized caving face. The simulation results were found to be consistent with the field detection results. Based on the simulation results, the effects of advancing speed and wind velocity on the CO emissions in the gob and the CO concentration distribution in the working face were analyzed. The results showed that, the lower the wind velocity, the greater the CO emissions. With increasing advancing speed, the CO emissions in the gob first increased, reached maximum, and then decreased. The production conditions were found to be most suitable when the advancing speed and wind velocity were 2 and 1.8?m/s, respectively. Moreover, the CO emission characteristics of the fully mechanized caving face under the conditions of periodic roof weighting, production process, and atmospheric pressure change were monitored and analyzed. We verified the presence of CO in the coal seam and its emission with the progress of coal seam mining. Our results will be useful in the research and analysis of CO emission source, emission regularity, and overrun warning in fully mechanized working faces.
机译:为了探讨综合机械洞面的CO浓度超支的问题,基于气流理论,气体浓度场理论和传热理论,在本研究中建立了CO排放规律的多体场耦合模型。以014N1?1瑞安煤矿煤层的1个工作面作为研究对象,应用模型来模拟综合机械化面上的CO浓度。发现模拟结果与现场检测结果一致。基于仿真结果,分析了对GOB中的速度和风速对工作面中的CO排放的影响及工作面中的CO浓缩分布的影响。结果表明,风速越低,共同排放量越大。随着推进速度的增加,GOB中的CO排放首先增加,达到最大,然后减少。当推进速度和风速分别为2和1.8μm/ s时,发现生产条件是最合适的。此外,监测和分析了在周期性屋顶加权,生产过程和大气压变化条件下全机械化腔面的CO发射特性。我们验证了煤层中有限公司的存在及其随着煤层采矿进展的排放。我们的结果对于综合机械化工作面的共同排放源,排放规律性和超支警告有用。

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