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Modeling shock waves generated by explosive volcanic eruptions

机译:模拟爆炸性火山爆发产生的冲击波

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Atmospheric shock waves induced by explosive volcanic eruptions can provide valuable information about eruption characteristics. Shock waves are manifested as pressure-density gradients that can be remotely observed with relatively little noise. Field measurements of expanding shock waves can be directly recorded by pressure transducers or imaged under the proper illumination and atmospheric conditions. In this paper, an open-ended shock tube was used to generate weak shock waves in the laboratory that are representative of explosive volcanic eruptions. They indicate that strong shock wave theory can be used for modeling moderate volcanic eruptions. Based on that finding, we use strong shock theory to estimate the sudden explosive energy released from several explosive eruptions. Our energy calculations are well correlated with total energy estimates derived from plume height or erupted mass.
机译:爆炸性火山爆发引起的大气冲击波可以提供有关喷发特征的有价值的信息。冲击波表现为压力密度梯度,可以以相对较小的噪声远程观察到。扩展的冲击波的现场测量值可以通过压力传感器直接记录,也可以在适当的光照和大气条件下成像。在本文中,开放式冲击管在实验室中用于产生微弱的冲击波,这些冲击波是爆炸性火山爆发的代表。他们表明强冲击波理论可用于模拟中等火山爆发。基于此发现,我们使用强冲击理论来估计几次爆炸爆发中释放的突然爆炸能量。我们的能量计算与从羽高或爆发质量得出的总能量估算值有很好的相关性。

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