设计智能接近探测区,防止连续矿机周围的撞钉事故。

P T Bissert, J L Carr, J P DuCarme, A K Smith
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引用次数: 1

摘要

连续采煤机是煤矿井下作业的关键设备。在过去的几十年里,这些机器导致了许多矿工的死亡。已开发出邻近探测系统,以避免与操作连续采矿机有关的危险。将智能设计集成到接近检测系统中,使工人能够更自由地定位自己,以看到视觉线索或避免其他危险,例如运输设备或无支撑的屋顶或肋骨。然而,智能系统必须像传统的接近检测系统一样安全。对矿山安全与健康管理局公布的死亡调查报告中的39起致命事故进行了评估,以确定事故是否可以通过传统或智能接近来预防。研究了智能系统的多区域配置,确定了区域配置对系统性能的影响。研究人员发现,在39起死亡事故中,有32起(82%)可能是通过传统和智能接近系统避免的。这些结果表明,通过适当配置智能接近检测系统的区域,可以实现与传统系统等效的保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design of intelligent proximity detection zones to prevent striking and pinning fatalities around continuous mining machines.

Design of intelligent proximity detection zones to prevent striking and pinning fatalities around continuous mining machines.

Design of intelligent proximity detection zones to prevent striking and pinning fatalities around continuous mining machines.

Design of intelligent proximity detection zones to prevent striking and pinning fatalities around continuous mining machines.

The continuous mining machine is a key piece of equipment used in underground coal mining operations. Over the past several decades these machines have been involved in a number of mine worker fatalities. Proximity detection systems have been developed to avert hazards associated with operating continuous mining machines. Incorporating intelligent design into proximity detection systems allows workers greater freedom to position themselves to see visual cues or avoid other hazards such as haulage equipment or unsupported roof or ribs. However, intelligent systems must be as safe as conventional proximity detection systems. An evaluation of the 39 fatal accidents for which the Mine Safety and Health Administration has published fatality investigation reports was conducted to determine whether the accident may have been prevented by conventional or intelligent proximity. Multiple zone configurations for the intelligent systems were studied to determine how system performance might be affected by the zone configuration. Researchers found that 32 of the 39 fatalities, or 82 percent, may have been prevented by both conventional and intelligent proximity systems. These results indicate that, by properly configuring the zones of an intelligent proximity detection system, equivalent protection to a conventional system is possible.

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