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Long-Range Microwave Detection of Wet Insulation for CUI Mitigation

机译:缓解CUI的湿绝缘的远程微波检测

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Corrosion under insulation (CUI) is a common cause of pipeline failure in the oil and gas industry. Its detection with conventional inspection techniques is challenging due to the presence of the insulation layer and a protective metallic cladding that prevent direct access to the pipe surface. Currently, several techniques are being developed to detect sections of wet insulation since water is a necessary precursor to corrosion. Among these, guided microwave testing has been proposed as a cost-effective approach to screen an extended length of pipeline. The pipe and metallic cladding naturally form a large coaxial transmission line in which the insulation acts as a dielectric and supports the propagation of microwave signals. The inspection is performed by launching a microwave signal from an array of antennas permanently installed at one location along the pipeline. Wet insulation is then detected according to the radar principle; water results in the partial reflection of the incident microwave signal owing to the permittivity contrast between dry and wet insulation. This paper reviews the underpinning principles of long-range guided microwave testing and presents a new study aimed at demonstrating the sensitivity of the technique in the presence of complex water saturation gradients inside the insulation.
机译:绝缘腐蚀(CUI)是石油和天然气行业中管道故障的常见原因。由于存在绝缘层和防止直接进入管道表面的保护性金属包层,因此采用常规检查技术对其进行检测具有挑战性。当前,由于水是腐蚀的必要先兆,因此正在开发几种技术来检测湿绝缘层。在这些方法中,有人提出了引导式微波测试,作为筛查延长管道的一种经济有效的方法。管道和金属包层自然形成一条大的同轴传输线,绝缘层在其中充当电介质并支持微波信号的传播。通过从沿管道的一个位置永久安装的天线阵列发射微波信号来执行检查。然后根据雷达原理检测湿绝缘。由于干绝缘和湿绝缘之间的介电常数差异,水导致入射微波信号的部分反射。本文回顾了远程引导微波测试的基本原理,并提出了一项旨在证明该技术在绝缘体内存在复杂水饱和梯度的情况下的灵敏度的新研究。

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