Estimating depth and explosive charge weight for an extremely shallow underwater explosion of the ROKS Cheonan sinking in the Yellow Sea

So Gu Kim , Yefim Gitterman , Orlando Camargo Rodriguez
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Abstract

We estimated the detonation depth and net explosive weight for a very shallow underwater explosion using cutoff frequencies and spectral analysis. With detonation depth and a bubble pulse the net explosive weight for a shallow underwater explosion could simply be determined. The ray trace modeling confirms the detonation depth as a source of the hydroacoustic wave propagation in a shallow channel. We found cutoff frequencies of the reflection off the ocean bottom to be 8.5 Hz, 25 Hz, and 43 Hz while the cutoff frequency of the reflection off the free surface to be 45 Hz including 1.01 Hz for the bubble pulse, and also found the cutoff frequency of surface reflection to well fit the ray-trace modeling. We also attempted to corroborate our findings using a 3D bubble shape modeling and boundary element method. Our findings led us to the net explosive weight of the underwater explosion offshore of Baengnyeong-do for the ROKS Cheonan sinking to be approximately 136 kg TNT at a depth of about 8 m within an ocean depth of around 44 m.

黄海天安舰沉没极浅层水下爆炸深度及装药重量估算
我们利用截止频率和频谱分析估计了一次极浅水下爆炸的引爆深度和净炸药重量。利用爆深和气泡脉冲,可以简单地确定浅层水下爆炸的净爆炸重量。射线迹模型证实了爆炸深度是水声波在浅通道中传播的一个来源。我们发现海底反射的截止频率为8.5 Hz、25 Hz和43 Hz,而自由表面反射的截止频率为45 Hz,其中气泡脉冲的截止频率为1.01 Hz,并且发现表面反射的截止频率很好地符合射线追踪模型。我们还尝试使用三维气泡形状建模和边界元素方法来证实我们的发现。我们的研究结果表明,韩国天安舰沉没的白翎岛近海水下爆炸的净爆炸重量约为136公斤TNT,爆炸深度约为8米,海洋深度约为44米。
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