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Study of propagation behaviour of Partial Discharge acoustic signals in a 3-D model tank

机译:3-D模型储罐中局部放电声信号的传播特性研究

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In this paper an attempt is made to simulate the propagation behaviour of Partial Discharge (PD) acoustic emission (AE) signals in a simple experimental tank. The mathematical model has been developed in the form of partial differential equations (PDEs) for PD acoustic wave propagation in transformer oil and also in a steel tank. The PD is modelled as a point source at the centre of the tank. A Finite Element Analysis tool (FEMLAB), has been used to simulate the propagation of the acoustic waves. The reflection and transmission behaviour of the AE wave front on the steel wall tank is studied. It was also observed experimentally that for an impulsive PD event, when an AE signal travelling in the oil falling on the tank wall, that nearly 82% of the signal is reflected at a frequency of approximately 154 kHz. Hence nearly 18% of the acoustic wave would be transmitted through the tank wall. The theoretical and experimental results are in good agreement. This result is important as it helps quantify and understand the significant amount of energy from an acoustic PD source which may be lost prior to being measured by an acoustic sensor.
机译:在本文中,尝试模拟简单实验槽中的局部放电(PD)声发射(AE)信号的传播行为。数学模型已经以偏微分方程(PDE)的形式开发,用于变压器油中的PD声波传播以及钢罐中的PD声波传播。 PD被建模为坦克中心的点源。有限元分析工具(FEMLAB)已被用于模拟声波的传播。研究了钢壁罐的AE波前的反射和传输行为。当实验上也观察到脉冲PD事件,当在落在罐壁上的油中行进的AE信号时,该信号的近82%以约154kHz的频率反射。因此,近18%的声波将通过罐壁传递。理论和实验结果符合良好。该结果很重要,因为它有助于量化和理解来自声学PD源的大量能量,这可能在通过声学传感器测量之前丢失。

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