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Simulation of the influence of hydrophones used for the characterization of pressure field distribution in low frequency, high power ultrasonic reactor vessels

机译:模拟用于表征低频大功率超声反应堆容器中压力场分布的水听器的影响

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摘要

This paper describes the use of a finite element (FE) modeling approach to investigate the influence of different hydrophone designs in laboratory scale reactor vessels. In addition to conventional PVDF membrane and piezoceramic hydrophone, the performance of a conceptual array hydrophone, comprising a 2D matrix of PVDF array elements, will be simulated. The FE modeling concentrates on two issues: the disturbance to the field through the introduction of each hydrophone configuration; and their suitability and response to measuring non-linear effects. To simplify the model the ultrasonic transducer is not directly represented. Here, a pressure loading function is used as the excitation technique, with a sawtooth waveform applied for the simulation of the non-linear detection capability of each hydrophone configuration. The results from the simulation programme demonstrate that the dynamics of the reactor vessel are critical to optimize the performance of the ultrasonic system. In addition, the introduction of a hydrophone alters the wave propagation, and hence the field distribution beyond a given probe location. Nevertheless, the spatial pressure distribution at the active area remains reasonably accurate if within the useable bandwidth of the device. Accordingly, the broadband nature of the membrane device is suited to operation in both the linear and non-linear regimes, with the PVDF array membrane device offering a fast, convenient measurement of the pressure field distribution for industrial applications.
机译:本文介绍了有限元(FE)建模方法的使用,以研究不同水听器设计对实验室规模反应堆容器的影响。除了传统的PVDF膜和压电陶瓷水听器外,还将模拟概念性阵列水听器的性能,该概念包括PVDF阵列元件的二维矩阵。有限元建模集中在两个问题上:通过引入每个水听器配置对现场的干扰;以及它们对测量非线性效应的适用性和响应。为了简化模型,不直接表示超声换能器。在此,压力加载函数用作激励技术,并使用锯齿波形来模拟每种水听器配置的非线性检测能力。仿真程序的结果表明,反应堆容器的动力学对于优化超声系统的性能至关重要。另外,水听器的引入改变了波的传播,从而改变了超出给定探头位置的场分布。然而,如果在设备的可用带宽内,则有效区域处的空间压力分布仍然保持合理的准确度。因此,膜装置的宽带性质适合于在线性和非线性两种情况下的操作,PVDF阵列膜装置为工业应用提供了压力场分布的快速,方便的测量。

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