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An Investigation of Air and Dust Flow Patterns Around the Longwall Shearer

机译:长墙式采煤机周围的空气和灰尘模式调查

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摘要

Management of respirable dust on longwall face remains a challenging issue for mine operators, particularly for the new generation of thick seam longwalls. A fundamental understanding of the airflow behaviour around the shearer is critical for dealing with the dust control issue on longwall faces. Computational fluid dynamics (CFD) modelling techniques have been used in this study to conduct a detailed investigation of the air and respirable dust flow patterns around the longwall shearer. Three CFD models have been developed to represent different longwall cutting heights. The results of these modelling studies tallied well with field measured airflow data from different mines. The validated thick seam longwall face model was then used for detailed parametric studies to simulate the effect of various parameters and dust control concepts. The dust control options investigated include various spray configurations, shearer clearer, modified cutting sequences and shearer scrubbers of various capacities to minimise the respirable dust migration towards the walkway area of the longwall face. This paper presents a summary of the results of these CFD modelling investigations.
机译:Longwall面对可吸入灰尘的管理仍然是矿山运营商的具有挑战性的问题,特别是对于新一代厚煤层长墙。对剪切者周围的气流行为的基本理解对于处理长墙面上的灰尘控制问题至关重要。在该研究中使用了计算流体动力学(CFD)建模技术,用于对长墙剪切刀周围的空气和可吸入粉尘模式进行详细研究。已经开发了三种CFD模型来代表不同的长墙切割高度。这些建模研究的结果与来自不同矿山的场测量气流数据井井头井。然后,验证的厚缝长墙面模型用于详细的参数研究,以模拟各种参数和灰尘控制概念的效果。调查的粉尘控制选项包括各种喷涂配置,采煤机更清晰,改性切割序列和用于各种能力的剪切器洗涤器,以最大限度地减少长墙脸部走道区域的可吸入灰尘迁移。本文提出了这些CFD建模调查结果的摘要。

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