Chen Yong, Hu Jiupeng, Peng Fei
School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, China.
Institute of Geophysics, China Earthquake Administration Seismic Observation and Geophysical Imaging Laboratory, Beijing 100081, China.
Sci Bull (Beijing). 2018 Sep 15;63(17):1159-1166. doi: 10.1016/j.scib.2018.06.015. Epub 2018 Jun 30.
The Wenchuan earthquake is a natural disaster. Its occurrence and aftermath have demonstrated the critical roles of seismology and earthquake engineering in reducing seismic hazards and damages. However, their existing limitations should also be underscored. This article summarized and reviewed the current scientific understanding of earthquake ruptures, and new insights gained since the Wenchuan event. This study focused on the related challenges to seismology and earthquake engineering as follows: (1) The under-estimation of earthquake risks before occurrences. (2) The current limited data regarding large earthquakes in continental thrust fault systems. (3) The causal relationship between the Wenchuan earthquake and the reservoir impoundment in its vicinity. (4) The identification of low-velocity zone in the crust and its seismogenical role. (5) The casualties and economic losses from a cascade of diverse natural hazards triggered by the ruptures, and the excellent earthquake resistance associated with tunnels in mountainous terrain.
汶川地震是一场自然灾害。其发生及后续情况彰显了地震学和地震工程学在降低地震灾害及损失方面的关键作用。然而,它们现存的局限性也应予以强调。本文总结并回顾了当前对地震破裂的科学认识,以及自汶川地震以来获得的新见解。本研究聚焦于地震学和地震工程学面临的相关挑战如下:(1)震前对地震风险的低估。(2)目前大陆逆冲断层系统中关于大地震的数据有限。(3)汶川地震与其附近水库蓄水之间的因果关系。(4)地壳中低速带的识别及其孕震作用。(5)破裂引发的一系列多样自然灾害造成的人员伤亡和经济损失,以及山区隧道卓越的抗震性能。