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Ultrasonic Method for Nuclear Fuel Rods Pressure and Gas Composition Released Measurement

机译:核燃料杆压力和气体成分释放测量的超声波方法

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The objective of this work was to develop a nondestructive 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. 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 acoustic 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声学方法,可以轻松地进入照射燃料棒中的两个重要信息:在标准LWR燃料棒的上层室内的内部气体混合物中的压力和组成。在1993年开始的第一次尝试使得能够通过燃料杆包层从压电换能器注入声电源的聚焦传感器的开发成为可能的聚焦传感器。这一步骤是在1999年实现的,并由第一专利涵盖。然而,由于LWR燃料棒中的上弹簧存在,初始问题并不完全解决。该弹簧主要诱导声振幅响应的大幅减少,这种解决方案不适用。该方法最近已经修改了几个方面:传感器的设计,以优化通过包层杆的声学功率注入,以及包括时间和频率空间中的信号处理。发现单个λ/ 2层(代替λ/ 4中的标准溶液),低阻抗材料(与换能器和管壁阻抗相比)作为水,是水的更好的匹配层。

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