Segmental nature of the Red River fault revealed by seismic anisotropy and geological structures

Y Li, Y Gao - Science China Earth Sciences, 2024 - Springer
As the western boundary of the Sichuan-Yunnan block (SYB), the Red River fault (RRF) is a
major fault that controls deep crustal movement and deformation in the southeast margin of …

[HTML][HTML] Assessment of strong earthquake risk in the Chinese mainland from 2021 to 2030

Z Shao, Y Wu, L Ji, F Diao, F Shi, Y Li, F Long… - Earthquake Research …, 2023 - Elsevier
The long-term earthquake prediction from 2021 to 2030 is carried out by researching the
active tectonic block boundary zones in the Chinese mainland. Based on the strong …

[HTML][HTML] 中国陆区活动地块边界带主要断层10 年尺度强震发生概率

王芃, 邵志刚, 刘晓霞, 尹晓菲 - 地球物理学报, 2022 - dzkx.org
中国陆区孕震环境具有“垂向分层, 横向分块” 的特征, 活动地块边界带对中国陆区的强震具有
控制作用, 针对活动地块边界带主要断层开展10 年尺度强震危险性定量研究对抗震设防工作有 …

Ten-year probability of strong earthquakes on major faults in boundaries of active blocks in Chinese continent

P WANG, ZG SHAO, XX LIU, XF YIN - Chinese Journal of Geophysics, 2022 - en.dzkx.org
Seismogenic environment in Chinese continent is layered vertically and partitioned
horizontally. The boundaries of active blocks controlled strong earthquakes in Chinese …

Study of the Interseismic Deformation and Locking Depth along the Xidatan–Dongdatan Segment of the East Kunlun Fault Zone, Northeast Qinghai–Tibet Plateau …

S Kang, L Ji, L Zhu, C Liu, W Zhang, N Li, J Xu, F Jiang - Remote Sensing, 2023 - mdpi.com
The East Kunlun fault zone (EKFZ), located northeast of the Qinghai–Tibet Plateau, has
experienced several strong earthquakes of magnitude seven or above since 1900. It is one …

Geochemical features and seismic imaging of the tectonic zone between the Tibetan Plateau and Ordos Block, central northern China

Y Li, Z Chen, A Sun, Z Liu, A Caracausi, G Martinelli… - Chemical …, 2023 - Elsevier
Abstract The Tibetan Plateau is growing by both vertical uplift and horizontal extension. It is
a continuing debate how the Tibetan Plateau interacts with its surrounding plates and …

[HTML][HTML] 利用加卸载响应比探查强震成核过程——以2020 年新疆伽师6.4 级地震为例

贾东辉, 余怀忠, 陈界宏, 晏锐, 刘杰, 赵彬彬, 李泽平… - 地球物理学报, 2024 - dsjyj.com.cn
加卸载响应比(LURR) 是基于非均匀脆性介质损伤演化提出的一种中短期地震预测方法,
以往的研究中多以地震活动为响应量计算LURR, 地球物理观测资料应用较少 …

[HTML][HTML] 青藏高原东北隅断层活动及地壳变形模式

徐炜祥, 苏小宁, 虞思晗, 朱庆 - 地球物理学报, 2024 - dzkx.org
精准分析青藏高原东北隅断层活动和地壳变形模式对于理解区域大地震空间分布特征和地震
危险性分析具有重要意义. 本文在已有GPS 速度场的基础上, 通过建立由21 个GPS …

Seismic Hazard Analysis of China's Mainland Based on a New Seismicity Model

W Xu, J Wu, M Gao - International Journal of Disaster Risk Science, 2023 - Springer
Based on the seismic source model in the Fifth Generation Seismic Ground Motion
Parameters Zonation Map of China (FGSGMPZMC), a new seismic fault model, the new …

[HTML][HTML] Geological risk assessment of traffic engineering construction among 7.0–8.5 magnitude earthquake areas: Practice from the Sichuan-Tibet transport corridor …

N Zhong, X Zhang, C Guo, Z Yang, H Yu, R Wu… - China Geology, 2024 - Elsevier
At least 13 active fault zones have developed in the Ya'an-Linzhi section of the Sichuan-
Tibet transport corridor, and there have been undergone 17 MS≥ 7.0 earthquakes, the …