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The 2024 M_(j) 7.6 Noto Peninsula, Japan earthquake caused by the fluid flow in the crust
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作者 Yuzo Ishikawa Ling Bai 《Earthquake Research Advances》 CSCD 2024年第3期1-6,共6页
On January 1, 2024 at 16:10:09 JST, an M_(j) 7.6 earthquake struck the Noto Peninsula in the southern part of the Sea of Japan. This location has been experiencing an earthquake swarm for more than three years. Here, ... On January 1, 2024 at 16:10:09 JST, an M_(j) 7.6 earthquake struck the Noto Peninsula in the southern part of the Sea of Japan. This location has been experiencing an earthquake swarm for more than three years. Here, we provide an overview of this earthquake, focusing on the slip distribution of the mainshock and its relationship with the preceding swarm. We also reexamined the source areas of other large earthquakes that occurred around the Sea of Japan in the past and compared them with the Matsushiro earthquake swarm in central Japan from1964 to 1968. The difference between the Matsushiro earthquake swarm and the Noto earthquake swarm is the surrounding stress field. The Matsushiro earthquake swarm was a strike-slip stress field, so the cracks in the crust were oriented vertically. This allowed fluids seeped from the depths to rise and flow out to the surface. On the other hand, the Noto area was a reverse fault stress field. Therefore, the cracks in the earth's crust were oriented horizontally. Fluids flowing underground in deep areas could not rise and spread over a wide area in the horizontal plane. This may have caused a large amount of fluid to accumulate underground, triggering a large earthquake. Although our proposed mechanism does not take into account other complex geological conditions into consideration, it may provide a simple way to explain why the Noto swarm is followed by a large earthquake while other swarms are not. 展开更多
关键词 The M 7.6 Noto Peninsular earthquake earthquake swarm Fluid triggering strike-slip fault reverse fault
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四川盆地南部地震区发震构造及其新构造背景 被引量:13
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作者 张岳桥 《地质学报》 EI CAS CSCD 北大核心 2020年第11期3161-3177,共17页
近10年以来,在四川盆地南部的川黔滇交界地区发生了一系列中、强地震,其发震机理引起了广泛的关注和讨论。本文基于历史地震震中分布和区域活动断裂构造编图,发现四川盆地南部地震主要集中在4个地震亚区,分别为马边—永善、鲁甸、长宁... 近10年以来,在四川盆地南部的川黔滇交界地区发生了一系列中、强地震,其发震机理引起了广泛的关注和讨论。本文基于历史地震震中分布和区域活动断裂构造编图,发现四川盆地南部地震主要集中在4个地震亚区,分别为马边—永善、鲁甸、长宁和自贡—荣昌等地震亚区,华蓥山断裂带西南段是其中一条重要的地震构造边界带。通过综合分析主、余震分布特征、震源深度和震源机制解等资料,认为该地震区存在2类发震断层,其中马边—永善、鲁甸、长宁地震亚区以基底断层走滑型或走滑逆冲型地震为主,而自贡—荣昌亚区则以浅层滑脱断层逆冲型地震为主。区域挤压应力方向从WNW-ESE向至ENE-WSW向。双震型地震频发,一次走滑地震往往会触发一组共轭基底断层的同时活动。这些地震构造特征表明它们不同于盆地西缘的龙门山—岷山逆冲走滑型地震构造带,也不同于鲜水河—安宁河—小江走滑型地震构造带,属于一个新生的克拉通地震构造区,因西南扬子地块遭受青藏高原的向东推挤和压迫,构造应力通过"大凉山地块"传递并作用到四川盆地南部,导致扬子地块的断块型结构及其基底断层的逆冲走滑活动,进而主导了该地区的一系列中、强地震的破裂事件。 展开更多
关键词 四川盆地南部地震区 地震分区特征 基底走滑型和走滑逆冲型地震 浅层逆冲型地震 构造应力场
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