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Signal Analysis and Waveform Reconstruction of Shock Waves Generated by Underwater Electrical Wire Explosions with Piezoelectric Pressure Probes

机译:压电压力探头在水下爆炸中产生的冲击波的信号分析和波形重构

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摘要

Underwater shock waves (SWs) generated by underwater electrical wire explosions (UEWEs) have been widely studied and applied. Precise measurement of this kind of SWs is important, but very difficult to accomplish due to their high peak pressure, steep rising edge and very short pulse width (on the order of tens of μs). This paper aims to analyze the signals obtained by two kinds of commercial piezoelectric pressure probes, and reconstruct the correct pressure waveform from the distorted one measured by the pressure probes. It is found that both PCB138 and Müller-plate probes can be used to measure the relative SW pressure value because of their good uniformities and linearities, but none of them can obtain precise SW waveforms. In order to approach to the real SW signal better, we propose a new multi-exponential pressure waveform model, which has considered the faster pressure decay at the early stage and the slower pressure decay in longer times. Based on this model and the energy conservation law, the pressure waveform obtained by the PCB138 probe has been reconstructed, and the reconstruction accuracy has been verified by the signals obtained by the Müller-plate probe. Reconstruction results show that the measured SW peak pressures are smaller than the real signal. The waveform reconstruction method is both reasonable and reliable.
机译:由水下电线爆炸(UEWE)产生的水下冲击波(SW)已经得到了广泛的研究和应用。这种SW的精确测量很重要,但是由于它们的高峰值压力,陡峭的上升沿和非常短的脉冲宽度(几十微秒),很难实现。本文旨在分析两种商用压电压力探头获得的信号,并从压力探头测得的失真压电信号中重建正确的压力波形。结果发现,PCB138和Müller板式探头均具有良好的均匀性和线性度,因此可用于测量相对SW压力值,但它们均无法获得精确的SW波形。为了更好地逼近真实SW信号,我们提出了一种新的多指数压力波形模型,该模型考虑了早期的较快压力衰减和较长时间的较慢压力衰减。根据该模型和能量守恒定律,重构了PCB138探针获得的压力波形,并通过Müller平板探针获得的信号验证了重构精度。重建结果表明,测得的软件峰值压力小于实际信号。波形重构方法既合理又可靠。

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