Development of a roof bolter canopy air curtain for respirable dust control.

W R Reed, G J Joy, B Kendall, A Bailey, Y Zheng
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引用次数: 13

Abstract

Testing of the roof bolter canopy air curtain (CAC) designed by the U.S. National Institute for Occupational Safety and Health (NIOSH) has gone through many iterations, demonstrating successful dust control performance under controlled laboratory conditions. J.H. Fletcher & Co., an original equipment manufacturer of mining equipment, further developed the concept by incorporating it into the design of its roof bolting machines. In the present work, laboratory testing was conducted, showing dust control efficiencies ranging from 17.2 to 24.5 percent. Subsequent computational fluid dynamics (CFD) analysis revealed limitations in the design, and a potential improvement was analyzed and recommended. As a result, a new CAC design is being developed, incorporating the results of the testing and CFD analysis.

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用于呼吸性粉尘控制的锚杆顶篷气幕的研制。
由美国国家职业安全与健康研究所(NIOSH)设计的锚杆顶篷气幕(CAC)经过多次迭代测试,在受控的实验室条件下展示了成功的粉尘控制性能。J.H. Fletcher & Co.是一家采矿设备的原始设备制造商,通过将其纳入其屋顶锚固机的设计,进一步发展了这一概念。在本工作中,进行了实验室测试,显示粉尘控制效率从17.2%到24.5%不等。随后的计算流体动力学(CFD)分析揭示了设计的局限性,并分析和建议了可能的改进。因此,一种新的CAC设计正在开发中,该设计结合了测试结果和CFD分析。
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Forty years of NIOSH/USBM-developed control technology: To reduce respirable dust exposure for miners in industrial minerals processing operations. Comparing the Implementation of Two Dust Control Technologies from a Sociotechnical Systems Perspective. Demonstrating the financial impact of mining injuries with the "Safety Pays in Mining" web application. Data transport over leaky feeder systems using Internet-Protocol-enabled land mobile radios. Improving protection against respirable dust at an underground crusher booth.
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