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首页> 外文期刊>Archives of mining sciences >Detection of Multilayer Cavities by Employing RC-DTH Air Hammer Eystem and Cavity Auto Scanning Laser System
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Detection of Multilayer Cavities by Employing RC-DTH Air Hammer Eystem and Cavity Auto Scanning Laser System

机译:通过使用RC-DTH空气锤系统和腔体自动扫描激光系统检测多层腔体

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The subterrane an c avities are seriously thre atened to construction and mining safety, and it’s important to obtain the exact localization and dimensions of subterranean cavities for the planning of geotechnical and mining activities. Geophysical in vestigation is an alternative method for cavity detection, but it usually failed for the uncertainly so lution of information and data obtained by Geophysical methods. Drilling is considered as the most accurate method for cavity detection. However, the conventional drilling methods can only be used for single cavity detection, and there is no effective solu tion for multilayer cavities detection have been reported. In this paper, a reverse circulation (RC) down-the-hole (DTH) air hammer system with a special structured drill bit is built and a cavity auto scanning laser system based on laser range finding technique was employed to confirm the localization and dimensions of the cavities. This RC-DTH air hammer system allows drilling through the upper cavities and putting the cavity auto scanning laser system into the cavity area through the central passage of the drill tools to protect the detection system from collapsing of borehole wall. The RC-DTH air hammer system was built, and field tests were conducted in Lanxian County Iron Ore District, which is located in Lv Liang city of Shan Xi province, the northwest of china. Field tests show that employing the RC-DTH air hammer system assisted by the cavity auto scanning laser system is an efficiency method to detect multilayer cavities.
机译:地下洞室的建设和采矿安全受到严格重视,对于地下岩洞和采矿活动的规划,获取地下洞室的确切位置和尺寸非常重要。物探中的地球物理方法是用于探测洞的另一种方法,但是由于不确定性,通常无法通过地球物理方法获得的信息和数据的溶解。钻孔被认为是检测腔体最准确的方法。但是,传统的钻孔方法只能用于单腔检测,还没有有效的解决方案用于多层腔检测。本文建立了具有特殊结构钻头的逆循环潜孔空气锤系统,并采用基于激光测距技术的腔自动扫描激光系统来确定其定位和尺寸。的空腔。该RC-DTH空气锤系统允许在上腔中钻孔,并将腔自动扫描激光系统通过钻孔工具的中央通道放入腔区域,以保护检测系统免于井壁塌陷。建立了RC-DTH气锤系统,并在位于中国西北地区山西省吕梁市的蓝县铁矿区进行了现场测试。现场测试表明,采用腔自动扫描激光系统辅助的RC-DTH气锤系统是检测多层腔的有效方法。

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