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Numerical simulation study on the coupling mechanism of composite-source airflow-dust field in a fully mechanized caving face

机译:全机械塌方复合源气流场耦合机理的数值模拟研究

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The dust produced during the process of coal mining is the main cause of the lung disease pneumoconiosis in miners. The study using Fluent software to perform a numerical study of the multi-source dust field in a fully mechanized caving face. The results of the simulation showed that the airflow velocities at the inlet and return air corners increase considerably, and that the overall air velocity in the coal mining face first decreases, from 233 to 0.41 m/s, before increasing to 1.91 m/s. The diffusion laws of dust produced by coal-cutting and the advancing of the hydraulic support at the working face tend to be consistent. Following dust superposition, a high-concentration dust belt is formed to the downwind side of the coal mining machine; this dust belt is about 16 m in length, about 12 m high, and with an average mass concentration of 1640 mg/m(3). (C) 2019 Elsevier B.V. All rights reserved.
机译:煤矿过程中产生的粉尘是矿工肺病肺病的主要原因。 使用流利软件在综合机械塌陷面上执行多源尘场的数值研究。 模拟结果表明,入口处的气流速度和返回空气拐角的气流速度显着增加,并且煤开采面中的总空气速度首先降低,从233到0.41米/秒增加到1.91米/秒。 通过煤切削产生的灰尘的扩散规律以及在工作面上的液压支撑件的推进往往是一致的。 灰尘叠加后,高浓度的灰尘带形成在煤矿机的下行侧; 这种灰尘带的长度约为16米,大约12米高,平均质量浓度为1640mg / m(3)。 (c)2019年Elsevier B.V.保留所有权利。

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