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Wireless Monitoring of Tank Levels in Nuclear Reactor Containment

机译:核反应堆遏制罐水平的无线监控

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Aging plants and reduced workforces are causing commercial nuclear power reactors to accumulate comprehensive equipment condition information, while at the same time reducing or eliminating the labor costs of manual inspection/data collection. Advancements in both sensor development and wireless technology have resulted in the implementation of measurement devices on important systems that have provided greater information, while alleviating the manual condition monitoring and testing burden on maintenance personnel. Through research and development (R&D) sponsored by a Department of Energy (DOE) Xlerator grant through the Small Business Innovation Research (SBIR) program, a monitoring application has been identified inside the containment of a pressurized water reactor (PWR) that can benefit from the introduction of wireless technology. The identified application uses wireless level sensors to monitor the amount of oil present in the oil collection tanks. The host utility for this project is the Arkansas Nuclear One (ANO) power generating station. ANO system engineers want to be able to assess the amount of oil in the tanks to prevent overflows, as well as to detect any discrepancies between the oil feed and collection tanks, which could indicate an oil leak somewhere in the system. The use of wireless sensors will give greater visibility to the oil level of the tanks without the material and labor cost associated with cable installation.
机译:衰老的植物和降低劳动力是造成商业核能反应堆中积累的综合设备状态信息,而在同一时间减少或消除人工检测/数据采集的劳动力成本。在这两个传感器的发展和无线技术的进步已导致测量设备上已经提供了更大的信息,同时缓解手动状态监测和维护人员的负担测试重要制度的实施。通过通过小企业创新研究(SBIR)计划由能源部(DOE)Xlerator补助的部门资助的研究与发展(R&d),监视应用程序已经确定了压水反应堆(PWR),可以从中受益的安全壳内引进无线技术。所识别的应用程序使用无线水平传感器,以监测在油收集箱本油的量。该项目的主工具是阿肯色州核一号(ANO)发电站。 ANO系统工程师希望能够评估在坦克的油量,防止溢出,以及检测供油和收集池,这可能表明在系统漏油的地方之间的差异。使用无线传感器将给予更大的能见度到坦克的油位不带电缆安装相关的材料和人工成本。

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