首页> 外文期刊>地震学报(英文版) >Constraints on rupture speed of the 2001 Ms 8.1 West Kunlun Mountain Pass earthquake by co-seismic surface rupture slip displace-ments based on the slip-weakening mechanism with frictional undershoot involved
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Constraints on rupture speed of the 2001 Ms 8.1 West Kunlun Mountain Pass earthquake by co-seismic surface rupture slip displace-ments based on the slip-weakening mechanism with frictional undershoot involved

机译:基于滑动弱化机制并涉及摩擦下冲的同震表面破裂滑动位移对2001年西昆仑山口8.1级地震地震破裂速度的约束

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With co-seismic surface rupture slip displacements provided by the field observation for the 2001 Ms8.1 West Kunlun Mountain Pass earthquake, this paper estimates the rupture speed on the main faulting segment with a long straight fault trace on the surface based on a simple slip-weakening rupture model, in which the frictional over-shoot or undershoot are involved in consideration of energy partition during the earthquake faulting. In contrast to the study of Bouchon and Vallée, in which the rupture propagation along the main fault could exceed the local shear-wave speed, perhaps reach the P-wave speed on a certain section of fault, our results show that, under a slip-weakening assumption combined with a frictional undershoot (partial stress drop model), average rupture speed should be equal to or less than the Rayleigh wave speed with a high seismic radiation efficiency, which is consistent with the result derived by waveform inversion and the result estimated from source stress field. Associ-ated with the surface rupture mechanism, such as partial stress drop (frictional undershoot) associated with the apparent stress, an alternative rupture mechanism based on the slip-weakening model has also been discussed.
机译:利用现场观测到的2001年西昆仑山Ms8.1地震的同震表面破裂滑移位移,本文基于简单滑移估算了主要断层段的破裂速度,并在表面上具有长的直线断层迹线。 -Weakning断裂模型,其中考虑了地震断裂过程中的能量分配,其中包括摩擦上冲或下冲。与Bouchon和Vallée的研究相反,在该研究中,沿主断层的破裂传播可能会超过局部切波速度,在断层的某个断面可能达到P波速度,我们的结果表明,在滑移下-弱化假设与摩擦下冲(局部应力降模型)相结合,平均破裂速度应等于或小于具有较高地震辐射效率的瑞利波速度,这与通过波形反演得出的结果和估计的结果相一致从源应力场。与表面破裂机制有关,例如与表观应力有关的局部应力下降(摩擦下冲),还讨论了一种基于滑动弱化模型的替代破裂机制。

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