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Airwaves generated by an underwater explosion: Implications for volcanic infrasound

机译:水下爆炸产生的无线电波:对火山次声的影响

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A shallow explosion in a fluid is one of the fundamental processes of airwave generation in volcanic eruptions. To better understand the mechanism of the airwave generation, underwater explosion experiments were conducted. Although the underwater explosions have been intensely studied over the last century, airwaves have received little attention. In this study, pressure waves were measured in air and under water, and the corresponding motion of the water surface was captured by a high-speed video camera. Airwaves and associated styles of the surface motion show similarities determined by the scaled depth, defined as the depth divided by the cubic root of the explosion energy. The air waveforms are quite different from the pressure waves measured in the water and cannot be completely explained by linear transmission of pressure waves from water to air. The mechanism of airwave generation is a combination of wave transmission and dynamics of the interface boundary. The first mechanism directly reflects the explosion source, and the same source is also observed as the underwater pressure waves. On the other hand, the second is not necessarily visible in the underwater pressure waves but will provide information on the mechanical properties and behavior of the material above the explosion source. Each mechanism is analyzed in the experiments.
机译:流体中的浅层爆炸是火山喷发中产生电波的基本过程之一。为了更好地了解电波产生的机理,进行了水下爆炸实验。尽管在上个世纪对水下爆炸进行了深入的研究,但电波几乎没有受到关注。在这项研究中,测量了空气和水下的压力波,并通过高速摄像机捕获了水面的相应运动。无线电波和相关的表面运动样式显示出相似性,该相似性由缩放深度确定,缩放深度定义为深度除以爆炸能量的立方根。空气波形与水中测得的压力波完全不同,无法完全用压力波从水到空气的线性传输来完全解释。产生电波的机制是波的传播和界面边界动力学的结合。第一种机制直接反映了爆炸源,并且还观察到了与水下压力波相同的爆炸源。另一方面,第二个不一定在水下压力波中可见,但会提供有关爆炸源上方物质的机械性能和性能的信息。实验中分析了每种机制。

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