首页> 外文会议>ASME joint rail conference >KILOMETER-LONG OPTICAL FIBER SENSOR FOR REAL-TIME RAILROAD INFRASTRUCTURE MONITORING TO ENSURE SAFE TRAIN OPERATION
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KILOMETER-LONG OPTICAL FIBER SENSOR FOR REAL-TIME RAILROAD INFRASTRUCTURE MONITORING TO ENSURE SAFE TRAIN OPERATION

机译:千公里长的光纤传感器,用于实时铁路基础设施监控,以确保安全列车的运行

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This study is aimed to develop a real-time safety monitoring of kilometer-long joint rails using a distributed fiber optic sensor. The sensor measures the distribution of Brillouin frequency shift along its length with pulse pre-pump Brillouin optical time domain analysis (PPP-BOTDA). The measurement distance and spatial resolution can be up to 25 km and 2 cm, respectively. The fiber optic sensor was first characterized and calibrated for distributed strain and temperature measurement, and then instrumented on a small-scale joint rail-like specimen in laboratory. The specimen was loaded at room temperature, and its strain distribution along the sensor was measured using a Neubrescope with high accuracy and spatial resolution. Given a gage length, the joint open change was determined and visibly identified from the measured strain distribution. Finally, an implementation plan of distributed sensors on a railway is introduced, including sensor deployment, sensor repair when broken, and cost analysis. The gage length at a crack is an important parameter in sensor deployment and investigated using finite element analysis. The results indicate that the distributed sensor can be used successfully to monitor the strain and temperature distributions in joint rails.
机译:这项研究旨在使用分布式光纤传感器开发对一公里长的联合轨道的实时安全监控。该传感器通过脉冲预泵布里渊光学时域分析(PPP-BOTDA)测量布里渊频移沿其长度的分布。测量距离和空间分辨率分别可以达到25 km和2 cm。首先对光纤传感器进行特征化和校准,以进行分布式应变和温度测量,然后在实验室中将其安装在小规模的联合轨道状标本上。将样品在室温下加载,并使用Neubrescope以高精度和空间分辨率测量其沿传感器的应变分布。给定量规的长度,可以确定接头的开度变化,并从测得的应变分布中清楚地识别出开度变化。最后,介绍了铁路上分布式传感器的实施计划,包括传感器部署,传感器损坏时的维修以及成本分析。裂纹处的标距长度是传感器部署中的重要参数,并使用有限元分析进行了研究。结果表明,该分布式传感器可以成功地用于监测联合导轨中的应变和温度分布。

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