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A Comparative Study of the Elastic Wave Radiation from Earthquakes and Underground Explosions

机译:地震与地下爆炸产生的弹性波辐射的比较研究

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摘要

A detailed analysis of the surface wave radiation from two underground explosions (BILBY and SHOAL) and an earthquake near Fallon, Nevada, whose epicentre is only 60 km from SHOAL, indicates that: (1) at long periods the surface wave radiation from the earthquake can be explained by a pure quadrupole (double couple) source, but at higher frequencies the radiation pattern contains asymmetries which suggest effects due to rupture propagation; these would require higher-order multipole terms in the source equivalent representation; (2) the surface waves from the explosions can be explained by superimposed monopole and quadrupole sources, with no indication of higher-order multipole terms, at least in the period range comparable to that in which the earthquake signal was recorded; (3) the principal conclusion of this study is that the anomalous radiation from the explosions is probably due to stress relaxation around the shock-generated shatter zone and not due to earthquake triggering. Comparative analysis of SHOAL and FALLON shows that: (1) the ratio of the Love wave amplitude generated by the earthquake to the Love wave amplitude from the explosion increases with period, which implies a larger source dimension for FALLON; (2) the normalized spectral ratio of Love wave amplitude to Rayleigh wave amplitude, considered as a function of period, is nearly constant and close to unity for the explosions, but larger for the earthquake by a factor of two or three, and increasing with period. These differences might be useful in distinguishing earthquakes from explosions (at least in the magnitude range of the events used in this study, m_b 4.4 and above), as well as for estimating source parameters, such as stress, which are of fundamental geophysical interest.
机译:对两次地下爆炸(BILBY和SHOAL)和内华达法伦附近地震发生的表面波辐射的详细分析表明,震中距SHOAL仅60 km,其结果是:(1)长期以来,地震的表面波辐射可以用纯四极(双耦合)源来解释,但是在较高频率下,辐射方向图包含不对称性,这表明由于破裂传播而产生的影响;这些将需要在源等效表示中使用高阶多极项; (2)爆炸的表面波可以用叠加的单极和四极源解释,至少在与记录地震信号相当的周期范围内,没有高阶多极项的指示; (3)这项研究的主要结论是,爆炸产生的异常辐射很可能是由于激波破碎区周围的应力松弛所致,而不是由于地震触发所致。 SHOAL和FALLON的对比分析表明:(1)地震产生的Love波振幅与爆炸产生的Love波振幅之比随周期增加,这意味着FALLON的震源尺寸较大; (2)被视为周期的函数的爱波振幅与瑞利波振幅的归一化频谱比几乎恒定且在爆炸中接近于单位,但在地震中则大两倍或三倍,并随期。这些差异可能有助于区分地震和爆炸(至少在本研究中使用的事件的震级范围内,m_b 4.4及以上),以及估计震源参数,例如地球物理基本原理。

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