期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Joint Inversion of the 3D P Wave Velocity Structure of the Crust and Upper Mantle under the Southeastern Margin of the Tibetan Plateau Using Regional Earthquake and Teleseismic Data 被引量:12
1
作者 LI Dahu LIAO Hua +4 位作者 DING Zhifeng ZHAN Yan WU Pingping XU Xiaoming ZHENG Chen 《Acta Geologica Sinica(English Edition)》 CAS CSCD 2018年第1期16-33,共18页
The special seismic tectonic environment and frequent seismicity in the southeastern margin of the Qinghai-Tibet Plateau show that this area is an ideal location to study the present tectonic movement and background o... The special seismic tectonic environment and frequent seismicity in the southeastern margin of the Qinghai-Tibet Plateau show that this area is an ideal location to study the present tectonic movement and background of strong earthquakes in China's Mainland and to predict future strong earthquake risk zones. Studies of the structural environment and physical characteristics of the deep structure in this area are helpful to explore deep dynamic effects and deformation field characteristics, to strengthen our understanding of the roles of anisotropy and tectonic deformation and to study the deep tectonic background of the seismic origin of the block's interior. In this paper, the three-dimensional (3D) P-wave velocity structure of the crust and upper mantle under the southeastern margin of the Qinghai-Tibet Plateau is obtained via observational data from 224 permanent seismic stations in the regional digital seismic network of Yunnan and Sichuan Provinces and from 356 mobile China seismic arrays in the southern section of the north-south seismic belt using a joint inversion method of the regional earthquake and teleseismic data. The results indicate that the spatial distribution of the P-wave velocity anomalies in the shallow upper crust is closely related to the surface geological structure, terrain and lithology. Baoxing and Kangding, with their basic volcanic rocks and volcanic clastic rocks, present obvious high-velocity anomalies. The Chengdu Basin shows low-velocity anomalies associated with the Quaternary sediments. The Xichang Mesozoic Basin and the Butuo Basin are characterised by low- velocity anomalies related to very thick sedimentary layers. The upper and middle crust beneath the Chuan-Dian and Songpan-Ganzi Blocks has apparent lateral heterogeneities, including low-velocity zones of different sizes. There is a large range of low-velocity layers in the Songpan-Ganzi Block and the sub-block northwest of Sichuan Province, showing that the middle and lower crust is relatively weak. The Sichuan Basin, which is located in the western margin of the Yangtze platform, shows high-velocity characteristics. The results also reveal that there are continuous low-velocity layer distributions in the middle and lower crust of the Daliangshan Block and that the distribution direction of the low-velocity anomaly is nearly SN, which is consistent with the trend of the Daliangshan fault. The existence of the low-velocity layer in the crust also provides a deep source for the deep dynamic deformation and seismic activity of the Daliangshan Block and its boundary faults. The results of the 3D P-wave velocity structure show that an anomalous distribution of high-density, strong-magnetic and high-wave velocity exists inside the crust in the Panxi region. This is likely related to late Paleozoic mantle plume activity that led to a large number of mafic and ultra-mafic intrusions into the crust. In the crustal doming process, the massive intrusion of mantle-derived material enhanced the mechanical strength of the crustal medium. The P-wave velocity structure also revealed that the upper mantle contains a low-velocity layer at a depth of 80-120 km in the Panxi region. The existence of deep faults in the Panxi region, which provide conditions for transporting mantle thermal material into the crust, is the deep tectonic background for the area's strong earthquake activity. 展开更多
关键词 3D P-wave velocity structure China seismic array detection Panxi region Chuan-DianBlock daliangshan Block southeastern margin of Qinghai-Tibet Plateau
下载PDF
基于地质建造的西南山区成土母质分类方案——以大凉山区为例 被引量:8
2
作者 欧阳渊 张景华 +3 位作者 刘洪 黄瀚霄 张腾蛟 黄勇 《中国地质调查》 2021年第6期50-62,共13页
为适应生态地质调查和评价工作对成土母质研究的要求,以四川大凉山区为例,提出基于地质建造的成土母质分类方案,即以地质构造演化和地质建造环境为依据,结合残坡积物的成因类型对成土母质进行分类。大凉山区的成土母质可划分为第四纪冲... 为适应生态地质调查和评价工作对成土母质研究的要求,以四川大凉山区为例,提出基于地质建造的成土母质分类方案,即以地质构造演化和地质建造环境为依据,结合残坡积物的成因类型对成土母质进行分类。大凉山区的成土母质可划分为第四纪冲洪积物、新近纪—第四纪砂泥岩类残坡积物、侏罗纪—白垩纪泥质岩类残坡积物、三叠纪砂泥岩类残坡积物、中生代中酸性岩类残坡积物、二叠纪基性—超基性岩类残坡积物、震旦纪—三叠纪砂泥岩类残坡积物、震旦纪—三叠纪碳酸盐岩类残坡积物、元古宙中酸性岩类残坡积物、元古宙火山碎屑岩类残坡积物、元古宙基性—超基性岩类残坡积物、元古宙变质岩类残坡积物等12类。研究表明,大凉山区成土母质和土壤存在差异性,但同一成土母质上的不同土壤类型具有一定相似的地球化学特征,不同成土母质形成的同一种土壤类型存在较大的地球化学差异。因此,基于地质建造的成土母质分类方案既能有效反映不同构造背景和成岩环境下的成土母质差异,又能有效表征成土母质与其上土壤的内在联系。 展开更多
关键词 土壤 成土母质 地质建造 生态地质调查 大凉山区
下载PDF
大凉山次级块体及邻区震源机制解与区域应力场特征分析 被引量:18
3
作者 祁玉萍 张致伟 +4 位作者 龙锋 肖本夫 梁明剑 路茜 江鹏 《地震地质》 EI CSCD 北大核心 2018年第2期377-395,共19页
基于Cut-And-Paste(CAP)全波形拟合反演震源机制解方法和阻尼线性逆推法(DRSSI),采用分区域选取地壳速度模型的形式,计算得到大凉山次级块体及邻区(101.5°~104.5°E,26.5°~30.5°N)震源机制解和区域应力场。结合构造... 基于Cut-And-Paste(CAP)全波形拟合反演震源机制解方法和阻尼线性逆推法(DRSSI),采用分区域选取地壳速度模型的形式,计算得到大凉山次级块体及邻区(101.5°~104.5°E,26.5°~30.5°N)震源机制解和区域应力场。结合构造地质、GPS观测数据等已有研究资料综合分析认为,大凉山次级块体及邻区震源机制解主要以走滑和逆冲机制为主,其空间分布特征与地质构造活动性质较吻合;区域应力场方向与GPS速度场运动方向基本一致,优势方向为NW-SE和NWW-SEE向,整个区域主要以走滑和逆冲性质为应力特征。震源机制解和区域应力空间分布特征表明大凉山次级块体在川滇块体、巴颜喀拉块体和华南块体三者联合作用的影响下形成了现今的应力格局,川滇块体相对向SE滑移以及青藏高原物质的E、SE向逃逸为大凉山次级块体及其周围地区强烈变形及大尺度位移的主要动力来源。 展开更多
关键词 大凉山次级块体 震源机制解 区域应力场 CAP方法 线性阻尼法
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部