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COASTAL BLUFF MONITORING/ALERT SYSTEM FOR RAILWAYS

机译:铁路沿海B鱼监测/报警系统

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摘要

The desire to monitor a section of coastal bluff for slope movements along the North County Transportation District/Amtrak tracks in Del Mar, San Diego County, California led to the development of a continuous monitoring system along approximately 1000 m of track. Because of the length to be monitored, the use of conventional single-point monitoring systems such as multiple tiltmeters or in-place inclinometers (IPIs) was deemed impracticable. Since bluff failure could occur anywhere along the track, the use of single-point instruments would require a large number of instruments, with the possibility that a movement could still occur between points and be missed by the monitors. Instead, it was proposed to install horizontal time domain reflectometry (TDR) coaxial cable sensors along high-concern segments of the track. The TDR monitoring system works similar to radar. It uses a coaxial cable as a sensor grouted in a trench between the bluff edge and the tracks. Any slope movement will deform or shear the cable at the location of movement. A reflectometer sends a voltage pulse along the sensor. When the pulse encounters a deformation, or the end of the sensor, some or all of the energy is reflected. The amount of reflected energy is proportional to the extent of the deformation with all energy reflected from the end of the sensor. The reflectometer accurately determines the location of the deformation and the relative extent of movement as noted by the magnitude of the reflection.
机译:希望监视一部分沿海虚张声势,以便沿着加利福尼亚州圣地亚哥县德尔马市的北县运输区/ Amtrak轨道进行边坡运动,因此开发了沿约1000 m轨道的连续监视系统。由于要监视的长度,使用常规的单点监视系统(例如多个倾斜仪或就地倾角仪(IPI))被认为是不可行的。由于在轨道的任何地方都可能发生虚张声势,因此使用单点仪器将需要大量的仪器,并且可能还会在点之间发生移动并被监视器遗漏。取而代之的是,有人建议沿着轨道的高关注部分安装水平时域反射仪(TDR)同轴电缆传感器。 TDR监视系统的工作原理类似于雷达。它使用同轴电缆作为传感器灌浆在阻流边缘和轨道之间的沟槽中。任何倾斜运动都会使电缆在运动位置变形或剪切。反射计沿着传感器发送电压脉冲。当脉冲遇到变形或传感器末端时,会反射部分或全部能量。反射能量的大小与变形的程度成正比,所有能量都从传感器的末端反射出来。反射仪可准确确定变形的位置和相对移动程度,如反射的大小所示。

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