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The development and application of a novel multi-radial-vortex-based ventilation system for dust removal in a fully mechanized tunnelling face

机译:新型综放巷道多径流通风系统的开发与应用

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摘要

In order to enhance the dust removal rate on fully mechanized tunnelling face, a novel multi-radial-vortex-based ventilation system was developed. A detailed analysis of functional principle was carried out. Numerical simulation was conducted to assess the formation of multi-radial-vortex flow pattern and the associated purification performance. The results indicate that a multi-radial vortex covering the entire tunnel cross-section is formed, and a dust-control air curtain is developed as in response to the air suction. It is further established that by decreasing the inflow-to-outflow ratio of air, the uniformity of flow velocity within the dust-control air curtain is enhanced, and the dust diffusion distance and its concentration at the operating location are reduced. Field test of the currently developed method at the 3(down)610 fully mechanized tunnelling face indicates that the application of the current method based on an inflow-to-outflow ratio of 0.75 leads to the dust reduction of 82.93% compared with the case in which the generator is switched off. The results demonstrate the outstanding performance of fully-enclosed dust removal and air purification.
机译:为了提高综采工作面的除尘率,开发了一种新型的多径流式通风系统。对功能原理进行了详细分析。进行了数值模拟,以评估多径流涡流模式的形成以及相关的净化性能。结果表明,形成了覆盖整个隧道横截面的多径流涡流,并且响应于吸气而形成了防尘空气帘。进一步确定,通过减小空气的进出比,可以提高除尘气幕内流速的均匀性,并且减少了灰尘扩散距离及其在工作位置的浓度。在3(下)610综掘工作面对当前开发方法的现场测试表明,基于进出比0.75的当前方法的应用相比于5%的情况降低了粉尘82.93%。发电机关闭。结果证明了全封闭除尘和空气净化的卓越性能。

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