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Time Domain Reflectometry (TDR) Sensor for Detecting Groundwater Contamination

机译:时域反射仪(TDR)传感器,用于检测地下水污染

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Groundwater contamination is one of the major problems which is difficult to be detected and avoided. It can take place due to several reasons and may lead to major water related diseases and environmental problems. This paper evaluates time domain reflectometery (TDR) cables as a technology to detect the presence of chemicals and contaminates in sub-surface soil, and to help mitigate ground water contamination. TDR promises to provide an early warning before the contamination takes place and thereby minimize water treatment and remediation expenses. TDR cables operate by detecting changes in the electrical conductivity and dielectric properties of the soil in the surroundings. Under laboratory conditions, TDR cables successfully detected the presence of contaminates in soil, with different levels of saturation to assess its relation to the dielectric constant of a contaminant in the surroundings. For sustainable use of the sensor, heat shrink tubes were used to protect the TDR probe from acids, without adversely impacting the detecting abilities of the equipment. For better economic feasibility of this system, the TDR sensor was made manually, with copper wires soldered and covered with heat shrinking tubes. This manual system acts as a layer over the ground and avoids the problems related to excavation and fixing the sensor under the ground. The system was also able to indicate the location of leaks. It will provide a more precise and accurate system than other leakage detection techniques, so that the operating authority can take the required steps to stop the leakage.
机译:地下水污染是难以发现和避免的主要问题之一。它可能由于多种原因而发生,并可能导致重大的与水有关的疾病和环境问题。本文评估时域反射计(TDR)电缆,该技术可检测地下土壤中是否存在化学物质和污染物,并有助于减轻地下水污染。 TDR承诺在污染发生之前提供预警,从而最大程度地减少水处理和修复费用。 TDR电缆通过检测周围土壤的电导率和介电特性的变化来运行。在实验室条件下,TDR电缆成功检测出土壤中存在的污染物,并具有不同的饱和度,以评估其与周围污染物的介电常数之间的关系。为了可持续使用传感器,使用了热缩管来保护TDR探头免受酸侵害,而又不会对设备的检测能力产生不利影响。为了使该系统具有更好的经济可行性,TDR传感器是手工制作的,铜线焊接并覆盖有热缩管。该手动系统充当地面上的一层,避免了与挖掘和将传感器固定在地下相关的问题。该系统还能够指示泄漏的位置。与其他泄漏检测技术相比,它将提供更精确的系统,以便操作授权机构可以采取必要的步骤来停止泄漏。

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