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Ultrasonic method for nuclear fuel rods pressure and gas composition released measurement

机译:核燃料棒压力和气体成分释放的超声测量

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The objective of this work was to develop a non-destructive acoustic method giving an easy access to two important pieces of information in the irradiated fuel rods: the pressure and the composition of the internal gas mixture in the upper plenum of a standard LWR fuel rod. A first attempt started in 1993 made possible the development of a focused sensor, able to inject acoustic power from a piezoelectric transducer, through the fuel rod cladding and excite the internal gas mixture. This step was achieved in 1999 and covered by a first patent [1]. However, the initial problem was not totally solved because of the presence of the upper spring in the LWR fuel rod. This spring mainly induced a large decrease in the acoustic amplitude response and this solution was not applicable. The method has been revised recently for several aspects: the design of the sensor to optimize the acousmtic power injection through the cladding rod, and the entire experimental protocol, including the signal processing in the time and frequency spaces. A single λ/2 layer (instead of the standard solution in λ/4) of low impedance material (compared to the transducer and tube wall impedance) as water, was found to be a better matching layer.
机译:这项工作的目的是开发一种非破坏性的声学方法,该方法可轻松访问受辐照的燃料棒中的两个重要信息:标准LWR燃料棒上腔中内部气体混合物的压力和成分。 1993年开始的首次尝试使聚焦传感器的开发成为可能,该传感器能够通过压电棒包层注入压电换能器产生的声能,并激发内部气体混合物。该步骤于1999年实现,并获得了第一项专利[1]的保护。但是,由于LWR燃料棒中存在上部弹簧,因此最初的问题尚未完全解决。该弹簧主要引起声振幅响应的大幅降低,因此该解决方案不适用。该方法最近在几个方面进行了修改:优化传感器以优化通过包层的声功率注入的传感器设计,以及整个实验方案,包括在时空频率空间中的信号处理。发现低阻抗材料(与换能器和管壁阻抗相比)的单个λ/ 2层(而不是λ/ 4中的标准溶液)是更好的匹配层。

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