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Deciphering acoustic emission signals in drought stressed branches: the missing link between source and sensor

机译:干旱胁迫分支中声发射信号的破译:源和传感器之间的缺失环节

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摘要

When drought occurs in plants, acoustic emission (AE) signals can be detected, but the actual causes of these signals are still unknown. By analyzing the waveforms of the measured signals, it should, however, be possible to trace the characteristics of the AE source and get information about the underlying physiological processes. A problem encountered during this analysis is that the waveform changes significantly from source to sensor and lack of knowledge on wave propagation impedes research progress made in this field. We used finite element modeling and the well-known pencil lead break source to investigate wave propagation in a branch. A cylindrical rod of polyvinyl chloride was first used to identify the theoretical propagation modes. Two wave propagation modes could be distinguished and we used the finite element model to interpret their behavior in terms of source position for both the PVC rod and a wooden rod. Both wave propagation modes were also identified in drying-induced signals from woody branches, and we used the obtained insights to provide recommendations for further AE research in plant science.
机译:当植物中发生干旱时,可以检测到声发射(AE)信号,但是这些信号的实际原因仍然未知。但是,通过分析测量信号的波形,应该可以追踪AE源的特性并获取有关潜在生理过程的信息。在分析过程中遇到的一个问题是,波形从源到传感器的变化很大,并且对波传播的了解不足阻碍了该领域的研究进展。我们使用有限元建模和著名的笔形导联中断源来研究分支中的波传播。首先使用聚氯乙烯圆柱棒确定理论传播模式。可以区分两种波传播模式,我们使用有限元模型根据PVC棒和木棒的源位置来解释它们的行为。在木质分支的干燥诱导信号中也确定了两种波传播模式,我们利用获得的见解为植物科学中的AE进一步研究提供了建议。

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