首页> 外文期刊>Journal of the air & waste management association >Using Fiber Optics to Detect Moisture Intrusion into a Landfill Cap Consisting of a Vegetative Soil Barrier
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Using Fiber Optics to Detect Moisture Intrusion into a Landfill Cap Consisting of a Vegetative Soil Barrier

机译:使用光纤检测水分侵入植物性屏障的垃圾填埋场

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摘要

The intrusion of moisture into landfills can pose a health hazard because of the possibility that the moisture will carry harmful substances into the groundwater. Early detection of moisture anywhere within these landfills is essential if corrective action is to be taken well before an occurrence of this kind. This paper presents the results of a field-scale simulation test of the use of fiber optics to detect the presence of moisture within landfill covers, using a detection method based on the thermal response of soils as a function of their moisture content. By sending electrical current through an embedded stainless-steel tube, soils of varying moisture content were heated and time-dependent temperature measurements were obtained with a fiber-optic distributed temperature sensor system. The optical fiber itself lay within the tube, but its temperature was a function of how rapidly heat was conducted into the surrounding medium. The results of this experiment, which are in agreement with those obtained using more traditional "point" sampling and laboratory analysis, are presented along with the strengths and limitations of the thermal-response method of detecting moisture.
机译:水分进入垃圾填埋场可能会危害健康,因为水分可能会将有害物质带入地下水。如果要在此类垃圾填埋场发生之前尽早采取纠正措施,就必须及早发现这些垃圾填埋场中的水分。本文介绍了一种现场规模模拟测试的结果,该测试使用光纤来检测垃圾掩埋场中是否存在水分,该检测方法基于土壤的热响应作为其水分含量的函数,采用一种检测方法。通过将电流通过嵌入式不锈钢管传送,加热了水分含量不同的土壤,并使用光纤分布式温度传感器系统获得了随时间变化的温度测量值。光纤本身位于管内,但其温度是热量快速传导到周围介质中的函数。介绍了该实验的结果,这些结果与使用更传统的“点”采样和实验室分析获得的结果一致,并介绍了检测水分的热响应方法的优点和局限性。

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