Large-scale Levee Monitoring Experiment Using Fiber-optic Sensor and Distributed Temperature Sensing System

M. Ahn, I. Bae, U. Ji, J. Kang
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引用次数: 1

Abstract

In this study, a temperature distribution sensing method using optical fiber was applied to a large-scale levee experiment, and the applicability of wide-area levee or embankment monitoring technology to observe the changes inside the levee was reviewed. The optical fiber was buried in a large-scale levee, and the temporal and spatial temperature changes were measured according to the water level changes in the reservoir. As the water level of the reservoir increased, the temperature of the embankment slope decreased, and as the infiltration progressed, a change in the spatial location of the temperature change was detected. The temperature change due to embankment infiltration varied depending on the time of the infiltration progress, and the change assumed to be the seepage line could be observed. This study has demonstrated that information about temperature changes inside the levee can be interpreted as the information on the locations that are judged to be relatively vulnerable, investigating the changes in the condition inside the levee.
基于光纤传感器和分布式温度传感系统的大规模堤防监测试验
本研究将光纤温度分布传感方法应用于大规模堤防试验,并对广域堤防或堤防监测技术在观察堤防内部变化中的适用性进行了综述。将光纤埋设在大型堤防中,根据水库水位变化测量温度的时空变化。随着水库水位的升高,路堤坡面温度降低,随着入渗的进行,温度变化的空间位置发生变化。路堤入渗引起的温度变化随入渗过程的时间而变化,以渗流线为例可以观察到温度变化。本研究表明,防洪堤内部温度变化的信息可以被解释为判断相对脆弱位置的信息,从而调查防洪堤内部条件的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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