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Identification and Authentication of Copper Canisters for Spent Nuclear Fuel by a Portable Ultrasonic System

机译:便携式超声波系统识别和认证铜罐用于废核燃料的核燃料

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The long-term storage of nuclear-spent fuel in geological repositories has introduced the need to develop new technologies for safeguarding the fuel. Continuity of knowledge about the fuel's location must be maintained during transport of the copper canisters that contain the fuel from the encapsulation plant to the final repository. Among the possible different containment and surveillance measures are the identification and authentication of each canister. The authors propose an innovative solution for this purpose, which is based on the ultrasonic acquisition of two fingerprints: an artificial code realized by chamfers machined in the inner surface of the copper lid (identification) and a natural signature due to the weld between the lid and the tube (authentication). Several prototypes of ultrasonic acquisition devices have been developed and tested on real copper samples to validate the identification and authentication concepts. This article describes the design of a new, optimized version of the ultrasonic acquisition device. The aim of this new design is to provide a solution for the identification and authentication of copper canisters using a portable device that is cost-effective and easy to use, which does not require the presence of an inspector in the field. The mechanical design of the reader has been upgraded with the introduction of a stepper motor and a new probe holder that includes a beam splitter to acquire two fingerprints simultaneously. The new device has been tested on copper samples, both with and without chamfers, and the results are reported in this article. The implementation of the seal fingerprint acquisition device (SFAD) within the new portable acquisition system is discussed at the end of this article with the goal of improving the electronic performance of the acquisition device in the field.
机译:地质存储库中核花费的长期储存介绍了需要开发用于保护燃料的新技术。在将铜罐的运输过程中,必须保持关于燃料位置的知识的连续性,这些铜罐在将封装工厂与最终存储库中的燃料的运输过程中。在可能的不同遏制和监测措施中,是每个罐的识别和认证。作者提出了一种创新的解决方案,该目的是基于两个指纹的超声波获取:由铜盖(识别)内表面中的倒角实现的人工代码和由于盖子之间的焊接,自然签名和管(身份验证)。在真正的铜样本上开发并测试了几种超声波采集设备的原型,以验证识别和认证概念。本文介绍了超声波采集设备的新优化版本的设计。这种新设计的目的是提供一种解决方案,用于使用具有成本效益且易于使用的便携式设备的铜罐识别和认证,这不需要在现场中存在检查器。通过引入步进电机和新的探针支架,读取器的机械设计已经升级,该探针支架包括分束器同时获取两个指纹。新设备已经在铜样品上进行测试,无论有倒角,也都在本文中报告。在本文结束时讨论了新的便携式采集系统内的密封指纹获取装置(SFAD)的实现,其目的是提高现场采集装置的电子性能。

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