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云南腾冲火山区上部地壳三维地震速度层析成像 被引量:48
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作者 楼海 王椿镛 +1 位作者 皇甫岗 秦嘉政 《地震学报》 CSCD 北大核心 2002年第3期243-251,共9页
根据 1 999年腾冲火山区人工地震探测资料 ,用层析成像方法反演了腾冲火山区上地壳三维 P波速度结构 .层析成像结果显示出 ,在腾冲火山区下方的上地壳内存在明显的 P波低速区 ,该低速区在地下 7~ 8km深度 ,可能与上地壳内的岩浆囊或部... 根据 1 999年腾冲火山区人工地震探测资料 ,用层析成像方法反演了腾冲火山区上地壳三维 P波速度结构 .层析成像结果显示出 ,在腾冲火山区下方的上地壳内存在明显的 P波低速区 ,该低速区在地下 7~ 8km深度 ,可能与上地壳内的岩浆囊或部分熔融体有关 .层析结果还显示出低速区主体在热海地区的东北侧 .地表附近的低速区可能是构造破裂发育地区形成了有利于深部热流体上升的通道 ,因此 。 展开更多
关键词 云南 地壳 腾冲火山区 三维地震层析成像 岩浆囊 P波低速区 深部热流体
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三维地震波层析成像技术在隧道超前地质预报中的应用 被引量:7
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作者 朱超 许兆义 王晓 《北京交通大学学报》 CAS CSCD 北大核心 2010年第4期31-35,共5页
超前地质预报是隧道施工中不可或缺的必要步骤,是降低施工过程地质灾害发生、减少灾害损失的重要手段.三维地震波层析成像技术是利用地震波反射原理,采用地震层析成像及全息岩土成像技术的新型超前地质预报技术,在国内应用较少.文中介... 超前地质预报是隧道施工中不可或缺的必要步骤,是降低施工过程地质灾害发生、减少灾害损失的重要手段.三维地震波层析成像技术是利用地震波反射原理,采用地震层析成像及全息岩土成像技术的新型超前地质预报技术,在国内应用较少.文中介绍了三维地震波层析成像技术的工作原理及方法,并结合工程地质类比法,对新建大瑞铁路尖山岭隧道进行了超前地质预报.研究结果表明,三维地震波层析成像技术对隧道超前地质预报效果良好,准确率达到90%. 展开更多
关键词 隧道工程 超前地质预报 三维地震层析成像
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富水断层破碎带隧道超前预报的地震波三维层析成像应用研究 被引量:2
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作者 孙立军 《西部探矿工程》 CAS 2015年第11期158-161,共4页
富水断层破碎带的超前预报是隧道施工地质超前预报的重要内容之一,依托某在建隧道工程,通过现场测试试验,研究了地震波三维层析成像方法的应用技术,总结了现场测试的基本步骤、富水断层破碎带的地质解释判别特征,成果对于富水断层破碎... 富水断层破碎带的超前预报是隧道施工地质超前预报的重要内容之一,依托某在建隧道工程,通过现场测试试验,研究了地震波三维层析成像方法的应用技术,总结了现场测试的基本步骤、富水断层破碎带的地质解释判别特征,成果对于富水断层破碎带隧道超前预报具有参考意义。 展开更多
关键词 富水断层破碎带 隧道施工 地质超前预报 地震三维层析成像
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Research on the 3-D Seismic Structures in Qinghai-Xizang Plateau 被引量:1
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作者 Ding Zhifeng, He Zhengqin, Wu Jianping, and Sun WeiguoInstitute of Geophysics, China Seismological Bureau, Beijing 100081, China 《Earthquake Research in China》 2002年第1期27-38,共12页
Based on the recording data from the analogue and broadband digital seismic stations in and around Qinghai-Xizang (Tibet) Plateau, the three dimensional (3-D) seismic velocity structures in Qinghai-Xizang Plateau were... Based on the recording data from the analogue and broadband digital seismic stations in and around Qinghai-Xizang (Tibet) Plateau, the three dimensional (3-D) seismic velocity structures in Qinghai-Xizang Plateau were obtained by using the regional body wave tomography and surface wave tomography. The results from these two tomography methods have similar characteristics for P- and S-wave velocity structures in crust and upper mantle. They show that there are remarkable low velocity zones in the upper crust of Lhasa block in the southern Qinghai-Xizang Plateau and the lower crust and upper mantle of Qiangtang block in the northern Qinghai-Xizang Plateau. These phenomena may be related to the different steps of collision process in southern and northern Qinghai-Xizang Plateau. 展开更多
关键词 Qinghai-Xizang Plateau Seismic tomography 3-D velocity structure
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Three-dimensional crustal velocity structure and activity characteristics of the Madoi Ms7.4 earthquake in 2021
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作者 Ma Yong Zhang Hai-Jiang +1 位作者 Gao Lei and Chen Zhi-Gang 《Applied Geophysics》 SCIE CSCD 2022年第4期590-602,605,共14页
In this paper,using natural earthquake P-wave arrival time data recorded by the seismic network in the surrounding area of Madoi,the three-dimensional fine P-wave crustal velocity structure at depths above 60 km in th... In this paper,using natural earthquake P-wave arrival time data recorded by the seismic network in the surrounding area of Madoi,the three-dimensional fine P-wave crustal velocity structure at depths above 60 km in the epicenter of the Madoi Ms7.4 earthquake was inverted using the double-difference seismic tomography method.On the basis of the relocation of the source of the aftershock sequence,we summarized the strip-shaped distribution characteristics along the strike of the Jiangcuo fault,revealing the significant heterogeneity of the crustal velocity structure in the source area.Research has found that most of the Madoi Ms7.4 aftershocks were located in the weak area of the high-speed anomaly in the upper crust.The focal depth changed with the velocity structure,showing obvious fluctuation and segmentation characteristics.There was a good correspondence between the spatial distribution and the velocity structure.The high-velocity bodies of the upper crust in the hypocenter area provided a medium environment for earthquake rupture,the low-velocity bodies of the middle crust formed the deep material,and the migration channel and the undulating shape of the high-speed body in the lower crust corroborated the strong pushing action in the region.The results confirmed that under the continuous promotion of tectonic stress in the Madoi area,the high-speed body of the Jiangcuo fault blocked the migration of weak materials in the middle crust.When the stress accumulation exceeded the limit,the Madoi Ms7.4 earthquake occurred.Meanwhile,the nonuniform velocity structure near the fault plane determined the location of the main shock and the spatiotemporal distribution of the aftershock sequence. 展开更多
关键词 Madoi Ms7.4 earthquake double-difference tomography 3D velocity structure seismic activity characteristics
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