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Effects of spraying pressure and installation angle of nozzles on atomization characteristics of external spraying system at a fully-mechanized mining face

机译:喷嘴喷射压力和安装角度对齐机械矿面外喷涂系统雾化特性的影响

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Aiming to effectively suppress excessively high dust concentration around the drums during coal cutting and the related dust particle dispersion issues at a fully-mechanized mining face, the present study employed experiments, numerical simulations, and field measurements to carry out an in-depth investigation of the dust suppression performance of an external spraying system. Firstly, the atomization characteristics of the nozzles with optimized macro-atomization performances were tested. According to the experimental results, hybrid nozzles with an orifice diameter of 2.0 mm and an X-shaped diversion core (type-B nozzles) delivered the best overall atomization performances at a spraying pressure of 8 MPa; in this case, the spraying angle and the effective spraying range were approximately 81.9 degrees and 2.56 m, respectively. Next, numerical simulations were conducted to assess the dust suppression performances of an external spraying system, using ANSYS Fluent software. The results showed that, when the nozzles were installed at an inclination angle of 30 degrees and operated at a spraying pressure of 8 MPa, the spray field formed could cover the whole dust-producing region around the drum. Meanwhile, the spray field near the coal cutter drum was not affected by airflow, which prevented dust particles being dispersed by the airflow, leading to a mitigation of pollution. Finally, field testing at the No. 30106 mining face of the Shiquan Coal Mine indicated that the mean overall dust suppression efficiency could reach up to 90.10%, i.e. the dust particles at this fully-mechanized mining face were effectively settled. To conclude, the dust pollution issues at a fully-mechanized mining face during the coal cutting process were adequately addressed by the measures investigated here. (C) 2018 Elsevier B.V. All rights reserved.
机译:旨在在煤切削期间有效地抑制滚筒周围的过高的粉尘浓度,并且在齐全的机械化面上的相关粉尘颗粒分散问题上,本研究采用实验,数值模拟和现场测量来进行深入调查外部喷涂系统的灰尘抑制性能。首先,测试了具有优化宏观雾化性能的喷嘴的雾化特性。根据实验结果,孔口直径为2.0mm的混合喷嘴和X形导流芯(型-B喷嘴)在8MPa的喷涂压力下递送了最佳的整体雾化性能;在这种情况下,喷涂角和有效的喷涂范围分别为约81.9度和2.56米。接下来,进行数值模拟以评估外部喷涂系统的灰尘抑制性能,使用ANSYS流畅的软件。结果表明,当喷嘴以30度的倾斜角安装并在8MPa的喷射压力下操作时,形成的喷射场可以覆盖滚筒周围的整个粉尘产生区域。同时,煤切割桶附近的喷射场不受气流的影响,防止通过气流分散的粉尘颗粒,从而减轻污染。最后,在煤矿矿山的第30106号采矿面上的现场测试表明,平均整体灰尘抑制效率可以达到90.10%,即这种齐全的矿面上的灰尘颗粒得到有效沉降。为了得出结论,在煤切割过程中彻底机械化挖掘面的粉尘污染问题得到了解,通过此处调查的措施得到了充分的解决。 (c)2018 Elsevier B.v.保留所有权利。

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