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龙门山断裂带南段地壳电性特征:来自速度结构约束下大地电磁反演的证据 被引量:3
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作者 许乐红 谭捍东 +3 位作者 吴萍萍 彭淼 王帅军 姜枚 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2022年第9期3434-3450,共17页
龙门山断裂带区域内大震频发、构造运动活跃,其地史演化与隆升动力学机制一直未有定论.2013年4月20日雅安大地震后,于小金至雅安段布设了一条垂直于龙门山构造带长约200 km的大地电磁剖面.为了克服龙门山地形起伏影响,同时增强大地电磁... 龙门山断裂带区域内大震频发、构造运动活跃,其地史演化与隆升动力学机制一直未有定论.2013年4月20日雅安大地震后,于小金至雅安段布设了一条垂直于龙门山构造带长约200 km的大地电磁剖面.为了克服龙门山地形起伏影响,同时增强大地电磁反演的垂向分辨率,本文采用宽角折/反射地震走时反演获得的速度模型作为结构约束,通过交叉梯度项引入大地电磁非线性共轭梯度二维反演,实现了考虑地形的速度结构约束大地电磁二维算法.设计地堑-地垒模型进行合成数据反演试算,结果显示基于速度结构约束的带地形二维大地电磁反演算法能够减少由地形影响引起的假异常,同时对异常体边界轮廓的刻画更加清晰.实测数据未加地震资料约束的大地电磁二维反演结果,具有明显“低-高-低”的宏观电性特征,与前人结果基本吻合.本文将新算法应用于实测数据反演的结果表明:松潘—甘孜地块下方包含两部分低阻异常带,并有相互连通趋势.西侧低阻体埋深更深,分布于15~45 km范围内,顶部有通道延伸至地表;东侧低阻体相对变浅,向东逐渐延伸至高阻异常体之上,具有向扬子地体逆冲推覆的趋势.龙门山构造带薄皮盖层下方大规模高阻异常体厚约50 km,以Moho面为底界,且呈现北西倾向的特征,与人工地震资料推测的龙门山三条主断裂的深部延伸的产状一致. 展开更多
关键词 龙门山南段 大地电磁法 约束反演 宽角折/反射地震 交叉梯度
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Three-dimensional crustal velocity structure model of the middle-eastern north China Craton (HBCrust1.0) 被引量:31
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作者 DUAN YongHong WANG FuYun +6 位作者 ZHANG XianKang LIN JiYan LIU Zhi LIU BaoFeng YANG ZhuoXin GUO WenBin WEI YunHao 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第7期1477-1488,共12页
Lithosphere thinning and destruction in the middle-eastern North China Craton(NCC), a region susceptible to strong earthquakes, is one of the research hotspots in solid earth science. All 42 seismic wide-angle reflect... Lithosphere thinning and destruction in the middle-eastern North China Craton(NCC), a region susceptible to strong earthquakes, is one of the research hotspots in solid earth science. All 42 seismic wide-angle reflection/refraction profiles have been completed in the middle-eastern NCC. We collect all the 2-D profiling results and perform gridding of the velocity and interface depth data, building a 3-D crustal velocity structure model for the middle-eastern NCC, named HBCrust1.0, by using the Kriging interpolation method. Our result shows that the first-arrival times calculated by HBCust1.0 fit well with the observations. The result demonstrates that the upper crust is the main seismogenic layer, and the brittle-ductile transition occurs at depths near interface C(the interface between upper and lower crust). The depth of interface Moho varies beneath the source area of the Tangshan earthquake, and a low-velocity structure is found to extend from the source area to the lower crust. Based on these observations, it can be inferred that stress accumulation responsible for the Tangshan earthquake may have been closely related to the migration and deformation of the mantle materials. Comparisons of the average velocities of the whole crust, the upper and the lower crust show that the average velocity of the lower crust under the central part of the North China Basin(NCB) in the east of the craton is obviously higher than the regional average. This high-velocity probably results from long-term underplating of the mantle magma. 展开更多
关键词 Middle-eastern of the North China Craton DSS profile 3-D P-wave velocity structure Earthquake Craton destruction
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