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Detecting Voids Under Airfield Pavements

机译:检测飞机场路面下的空隙

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摘要

Several recent accidents involving aircraft punching through pavements prompted the Navy to address this problem. Initially, a successful void detection survey was completed at a Naval Air Station (NAS) where several voids were generated by leakage of large underground drainpipes. Various methods were used such as internal video taping of the pipes, heavy weight deflectometer (HWD) testing, ground penetrating radar (GPR), and dynamic cone penetrometer (DCP) testing. A state-of-the-art review was also completed to assess all existing technology applicable to void detection under pavements. However, the optimum technology determined (visual inspection, HWD, and DCP) still presented limitations in terms of availability and speed of data acquisition, requiring prioritization of the work. A risk analysis was then completed, establishing work prioritization within each airfield and providing a prioritization of all U.S. Navy and Marine Corps airfield pavements. An Interim Policy and Technical Guidance (IP&TG) was issued on 23 March 2000 to establish the developed void detection methodology. The void detection methodology has been successfully used at several airfields and Naval stations, detecting voids or loose layers, and providing repair recommendations.
机译:最近发生的几起涉及飞机冲撞人行道的事故促使海军解决了这个问题。最初,在海军航空站(NAS)上完成了成功的空隙检测调查,该处由于大型地下排水管的泄漏而产生了几个空隙。使用了各种方法,例如管道的内部视频录像,重载挠度计(HWD)测试,探地雷达(GPR)和动态圆锥穿透计(DCP)测试。还完成了一项最新的评估,以评估适用于路面下空隙检测的所有现有技术。但是,确定的最佳技术(目视检查,HWD和DCP)在可用性和数据获取速度方面仍然存在局限性,需要对工作进行优先排序。然后完成了风险分析,确定了每个机场内的工作优先级,并确定了美国海军和海军陆战队所有飞机场的优先级。 2000年3月23日发布了临时政策和技术指南(IP&TG),以建立已开发的空隙检测方法。空隙检测方法已在多个飞机场和海军基地成功使用,可以检测空隙或松散层,并提供维修建议。

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