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首页> 外文期刊>Nuclear Science, IEEE Transactions on >An Innovative Acoustic Sensor for In-Pile Fission Gas Composition Measurements
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An Innovative Acoustic Sensor for In-Pile Fission Gas Composition Measurements

机译:用于桩中裂变气体成分测量的创新声传感器

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In this article we propose a new method able to determine the fission gas composition using in situ ultrasonic waves measurements. To do so an acoustic resonator was connected to a fuel rodlet, in order to perform speed of sound measurements of gas mixture (Helium and fission gases) inside the plenum. By using a dedicated signal processing the peaks due to resonant frequencies inside the gas mixture were successfully extracted from the output signal. From these data, the variations of helium and fission gas molar fraction were calculated using an adapted virial state equation. It will be proved that these data provide important information about the kinetics of gas release and about the effects of high neutron and gamma irradiation on piezoceramic sensors.
机译:在本文中,我们提出了一种能够使用原位超声波测量确定裂变气体成分的新方法。为此,将声学谐振器连接到燃料棒上,以便对充气室内的气体混合物(氦气和裂变气体)进行声速测量。通过使用专用信号处理,成功地从输出信号中提取了混合气体内部共振频率引起的峰值。从这些数据,使用适应的病毒态方程计算氦气和裂变气体摩尔分数的变化。可以证明,这些数据提供了有关气体释放动力学以及高中子和伽马射线辐照对压电陶瓷传感器影响的重要信息。

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