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The diffusion of dust in a fully-mechanized mining face with a mining height of 7 m and the application of wet dust-collecting nets

机译:采煤高度7 m的综采工作面粉尘扩散及湿式集尘网的应用

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In order to gain a more in-depth knowledge of the diffusion and pollution rules of dust from multiple sources in a fully-mechanized mining face with a mining height of 7 m, and design some effective dust suppression measures. This study focuses on the No. 22305 fully-mechanized mining face in the Bulianta Mine, and employs CFD-Fluent software for conducting numerical simulations on the dust concentration's distribution in the respiratory zone on the footway. According to the results of the numerical simulations: due to an air leakage around the air-intake corner, the airflows in the goaf moved in a spiral pattern; they then moved stably in the goaf because of an air leakage between the hydraulic supports parallel to the coal cutter; the dust produced in the coal cutting and support movement processes were superposed on the leeward side of the coal cutter, and a dust belt, with a length of approximately 36 m and a concentration of over 2850 mg/m(3), was formed; at 0-120 m on the leeward side of the coal cutter, the dust concentration at the respiratory height exceeded 1700 mg/m(3) and exhibited no significant settlement along the way; and dust concentrations at the mining height range of 0-1.55 m and 5.55 m-6.80 m were higher than those at a mining height range of 1.55-5.55 m. Accordingly, a novel dust removal system, comprising wet roller-shutter, dust-collecting nets in the coal mining area and full cross-section, wet dust-collecting nets in the return airway, was designed. The field measurement results show that the overall dust-removal efficiency of this system was 69.6%. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了更深入地了解高度为7 m的综采工作面多源粉尘的扩散和污染规律,并设计一些有效的粉尘抑制措施。这项研究的重点是布里亚塔矿的22305号综采工作面,并使用CFD-Fluent软件对人行道呼吸区域的粉尘浓度分布进行了数值模拟。根据数值模拟的结果:由于进风口周围的漏风,采空区中的气流呈螺旋形运动;由于平行于切煤机的液压支架之间发生漏气,它们随后在采空区中稳定移动。将切煤和支架运动过程中产生的粉尘叠放在切煤机的背风侧,形成一条粉尘带,其长度约为36 m,浓度超过2850 mg / m(3)。在切煤机下风侧0-120 m处,呼吸高度处的粉尘浓度超过1700 mg / m(3),并且在此过程中未显示出明显的沉降。 0-1.55 m和5.55 m-6.80 m的开采高度的粉尘浓度高于1.55-5.55 m的开采高度的粉尘浓度。因此,设计了一种新颖的除尘系统,该系统包括湿式卷帘百叶窗,采煤区的集尘网和回风道中的全截面湿式集尘网。现场测量结果表明,该系统的整体除尘效率为69.6%。 (C)2018 Elsevier Ltd.保留所有权利。

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