日本地球惑星科学連合2025年大会

講演情報

[J] ポスター発表

セッション記号 S (固体地球科学) » S-SS 地震学

[S-SS10] 地震発生の物理・断層のレオロジー

2025年5月30日(金) 17:15 〜 19:15 ポスター会場 (幕張メッセ国際展示場 7・8ホール)

コンビーナ:柴田 律也(防災科学技術研究所)、澤井 みち代(千葉大学)、奥田 花也(海洋研究開発機構 高知コア研究所)、津田 健一(清水建設 株式会社 技術研究所)

17:15 〜 19:15

[SSS10-P03] Unexpected rupture triggering behavior of subshear and free-surface-induced supershear ruptures on stepover: which is more dangerous?

*Zijia Wang1、Zhenguo Zhang1 (1.Department of Earth and Space Sciences, Southern University of Science and Technology)


キーワード:Strike-slip stepover, Dynamic stress, Rupture triggering, Jump distance, Subshear rupture, Free-surface-induced supershear

The ability of a rupture to propagate across a stepover plays a critical role in determining the earthquake’s final magnitude and potential damage. This study systematically investigated the jump distances of 3D strike-slip faults based on the rate- and state-dependent friction law with strong rate weakening. We found that the jump distances for extensional and compressional steps can reach 5.45 km and 4.5 km, respectively. Moreover, we compared the rupture triggering behavior of subshear and free-surface-induced (FSI) supershear ruptures on the secondary fault. Unexpectedly, both simple and barrier models have demonstrated that, compared to FSI supershear rupture, subshear rupture can result in a larger jump distance for the compressional step due to its stronger dynamic stress perturbation. The free surface also plays an important role in this process. Due to the different stress disturbance modes, the triggering ability on the extensional step does not increase. However, when considering the rate-strengthening layer and depth-dependent stresses, subshear rupture also shows a stronger triggering ability for the extensional step. Our findings were further confirmed by models with different overlap distances. These results emphasize the high cascading rupture potential of subshear ruptures and provide important insights for assessing seismic hazards of multi-fault systems.