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Earthquake early warning system in Liaoning,China based on PRESTo 被引量:1
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作者 Wuchuan Xu Xiangyu An +2 位作者 Enlai Li Chengwei Wang Li Zhao 《Earthquake Science》 2020年第5期281-292,共12页
Liaoning is located in northeast China with a high level of seismic activity,and earthquake early warning is important for the mitigation of seismic hazard.In this work,we implement PRESTo,an open-source software plat... Liaoning is located in northeast China with a high level of seismic activity,and earthquake early warning is important for the mitigation of seismic hazard.In this work,we implement PRESTo,an open-source software platform for earthquake early warning based on regional seismic records,to the Liaoning seismic network.For the early warning of earthquakes in Liaoning,a travel-time table is created for event detection and location using an average crustal model,and the empirical relation is established between the earthquake magnitude and the initial P-wave amplitudes.Using archived seismic records of past earthquakes,we determine the optimal values for Liaoning using the core algorithms of PRESTo.Based on the optimal parameters,the uncertainty in event location is generally less than 5 km,and the lead time of the early warning is~15 s at 100-km epicentral distance.The implemented system can be directly put into routine earthquake early warning operation by linking it with the real-time data stream from the Liaoning seismic network. 展开更多
关键词 PRESTo earthquake early waring Liaoning seismic network
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Seismogenic environment and mechanism of the Yangbi M_(S)6.4 earthquake in Yunnan,China
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作者 Mengqiao Duan Kezhen Zuo +1 位作者 Cuiping Zhao Lianqing Zhou 《Earthquake Science》 2022年第4期297-310,共14页
The Yangbi M_(S)6.4 earthquake occurred on May 21,2021 in western Yunnan,China,where moderate earthquakes strike frequently.It exhibited a typical“foreshock-mainshock-aftershock”sequence and did not occur on a pre-e... The Yangbi M_(S)6.4 earthquake occurred on May 21,2021 in western Yunnan,China,where moderate earthquakes strike frequently.It exhibited a typical“foreshock-mainshock-aftershock”sequence and did not occur on a pre-existing active fault.The seismogenic environment and mechanism of this earthquake have aroused considerable research attention.In this study,we obtain the three-dimensional v_(P),v_(S)and v_(P)/v_(S)images using the v_(P)/v_(S)consistency-constrained double-difference tomography method,which improves the accuracy of v_(P)/v_(S)models.We focus on characteristics of v_(P)/v_(S)images in areas with a lateral resolution of 0.1°,and reveal the seismogenic environment of the Yangbi M_(S)6.4 earthquake.The conclusions are as follows:(1)Low velocity and high-v_(P)/v_(S)anomalies are revealed at different depths around the northern segment of the Red River fault.v_(S)and v_(P)/v_(S)images along the Weixi-Qiaohou-Weishan fault and the buried faults on its west show obviously segmented feature.(2)The source region of the Yangbi M_(S)6.4 earthquake is located in a low-v_(P)/v_(S)zone implying high medium strength.High-v_(P)/v_(S)anomalies in its NW direction indicate cracks development and the existence of fluids or partial melts,which are unfavorable for stress accumulation and triggering large earthquakes.Such conditions have also prevented the earthquake sequence from extending northwestward.(3)With the southeastward extrusion of materials from the Tibetan Plateau,fluid migration was blocked by the low-v_(P)/v_(S)body in the source region.The high-v_(P)/v_(S)anomaly beneath the source region may implies that the fluids or partial melts in the middle and lower crust gradually weakened medium strength at the bottom of the seismogenic layer,and preparing the largest foreshock in the transition zone of high to low v_(P)/v_(S).Meanwhile,tectonic stress incessantly accumulated in the brittle upper crust,eventually led to the M_(S)6.4 earthquake occurrence. 展开更多
关键词 Yangbi M_(S)6.4 earthquake v_(P) v_(S) and v_(P)/v_(S)tomography seismogenic environment and mechanism
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Application effect of high-density electrical method on detecting artificial filling layer: A case study of Chengjiangshan area of Huaibei City
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作者 LI Shuai LIU Lijia +2 位作者 JIA Xiaodong LI Zhuoyang HAN Jiangtao 《Global Geology》 2022年第3期174-181,共8页
High-density electrical method has been proved to be an effective method for probing shallow sedimentary layers.It is principally used to identify the boundary between the Quaternary soil layer and bedrock according t... High-density electrical method has been proved to be an effective method for probing shallow sedimentary layers.It is principally used to identify the boundary between the Quaternary soil layer and bedrock according to the vertical change of apparent resistivity.However,the artificial filling layer has the characteristics of heterogeneity and high porosity,which makes it challenging to detect the artificial filling layer by high-density electrical method.The key to solve this problem is to detect the difference of conductivity between the filling layer and the underlying bedrock.This paper takes the land in Chengjiangshan area of Huaibei City,Anhui Province as the detection target.On the basis of fully analyzing the physical properties of the artificial filling layer,two-dimensional high-density electrical survey and inversion are used to define the thickness of the artificial filling layer.The research shows that the highdensity resistivity method has obvious advantages in delineating the distribution of bedrock and the thickness of the filling layer,and the reliability of the high-density electrical method in the detection of the artificial filling layer,and delineates the scope of the filling layer is verified by the borehole data. 展开更多
关键词 high-density resistivity method filling layer electrical structure 2D inversion
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