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Benchmarking parameters for remote electrochemical corrosion detection and monitoring of offshore wind turbine structures

机译:海上风机结构远程电化学腐蚀检测和监测的基准参数

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The remote location and position of offshore wind turbine structures severely limits the application of in situ corrosion detection methods such as ultrasonic, acoustic emission, and X-ray. A real-time remote sensing (RTRS) technology can be implemented to provide autonomous detection and monitoring, providing exhaustive and detailed information on the corrosion process. Utilizing the concept of Internet of Things (IoT) through the integration with satellite and terrestrial communication network, iWindCr, a technology development project funded by the Innovate UK, aims to design a wireless sensor network (WSN) of smart miniaturized sensors for corrosion detection and monitoring of the offshore wind turbine structures. This paper discusses the rationale and challenges around the iWindCr WSN design, particularly in the development of a miniaturized system and in relation to the provision of power and power consumption. The later has led to the selection and the integration of the electrochemical analysis techniques, namely open circuit potential (OCP) and zero resistance ammeter (ZRA) on the sensor interface system. The verification of these techniques for the corrosion detection sensor has resulted in a database consisting of the corrosion parameter outputs or threshold values of metals specific to offshore wind turbine structures, in this case tower, foundation, and nacelle (gearbox). The database provides end-users with the benchmark that can be used to detect physical changes during the course of corrosion or passive film damage. These parameters are incorporated in the user interface data analytic software, enabling the quantification of corrosion or film damage.
机译:海上风力涡轮机结构的遥远位置和位置严重限制了现场腐蚀检测方法的应用,例如超声波,声发射和X射线。可以实施实时遥感(RTRS)技术来提供自主检测和监控,从而提供有关腐蚀过程的详尽而详尽的信息。通过与卫星和地面通信网络的集成,利用物联网(IoT)的概念,由创新英国(Innovate UK)资助的一项技术开发项目iWindCr旨在设计一种智能小型传感器的无线传感器网络(WSN),用于腐蚀检测和监测。监测海上风力发电机的结构。本文讨论了围绕iWindCr WSN设计的原理和挑战,特别是在小型化系统的开发中以及在提供电源和功耗方面。后者导致了电化学分析技术的选择和集成,即传感器接口系统上的开路电势(OCP)和零电阻电流表(ZRA)。对用于腐蚀检测传感器的这些技术的验证已形成一个数据库,该数据库由腐蚀参数输出或特定于海上风力涡轮机结构(在这种情况下为塔架,基础和机舱(齿轮箱))​​的金属阈值组成。该数据库为最终用户提供了基准,可用于检测腐蚀或钝化膜损坏过程中的物理变化。这些参数已整合到用户界面数据分析软件中,从而能够定量分析腐蚀或薄膜损坏。

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