华南东部吉安—福州剖面岩石圈电性结构研究  被引量:15

The lithospheric electrical structure of Ji'an-Fuzhou profile in the east part of South China

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作  者:胡祥云[1] 毕奔腾 刘国兴[3] 韩江涛[3] 蔡建超[1] 彭荣华[1] 徐珊[1] 

机构地区:[1]中国地质大学地球物理与空间信息学院地球内部多尺度成像湖北省重点实验室,武汉430074 [2]中国地质科学院岩溶地质研究所,广西桂林541004 [3]吉林大学地球探测科学与技术学院,长春130026

出  处:《地球物理学报》2017年第7期2756-2766,共11页Chinese Journal of Geophysics

基  金:国家自然科学基金(41630317;41474055);"深部探测技术与实验研究专项"课题(SinoProbe-02-04);湖北省自然科学基金创新群体项目(2015CFA019)联合资助

摘  要:为了研究华南东部地区岩浆活动的深部构造背景,对吉安一福州宽频大地电磁测深剖面数据进行了系统的分析和处理,并利用非线性共轭梯度法进行二维反演,得到了武夷隆起带及周缘地区的岩石圈电性结构;结合区域重磁资料,详细分析了研究区内地壳、上地幔电性结构特征及地质含义.结果表明:华南东部地区岩石圈电性结构存在明显的分区性,并且壳内普遍发育不同成因的高导层,揭示出华南东部地区不同构造单元内的岩浆活动具有不同的成岩构造背景.其中,东南沿海褶皱带深部热侵蚀活跃,岩石圈物质和结构被强烈改造,电阻率普遍较低,软流圈上涌并伴随玄武岩浆底侵,导致岩石圈、地壳剧烈减薄;而武夷隆起带岩石圈电阻率相对较高,印支-燕山早期陆内挤压变形的构造形迹明显,晚中生代岩石圈拉张伸展作用对该地区岩石圈的物质结构有一定的改造.As having experienced multi-stage tectonic magmatic activity, the structure of the lithosphere in the east part of South China is very complicated and the distribution of magma has obvious regularity. In order to study the deep tectonic background of magmatic activity of the different blocks in the east part of South China, this paper has processed a series of qualitative and quantitative analysis based on the Jitan-Fuzhou magnetotelluric sounding profile data crossing the east part of South China. The subsurface dimensionality was analyzed by the Bahr phase decomposition, the geoelectric strike with different frequencies was obtained by the single-site multi frequency Groom-Bailey decomposition. Finally, the non-linear conjugate gradients (NLCG) method was used to calculate the 2D resistivity structure in our research area. The electrical structure model shows that there are significant differences between the two blocks--Wuyi uplift belt and Southeast coastal fold belt. It can be vertically divided into four electrical layers of the high resistivity layer in upper crust, the low resistivity layer in mid-lower crust, the sub-high resistivity layer in the lithosphere mantle, the low resistivity in the asthenosphere. In the upper crust, the high resistivity layer more than 10000 flm thick indicates the distribution of granite whose bottom interface is about 15 ~ 20 km deep. In the mid-lower crust, the high-conductivity layer in the Wuyi uplift belt is thin and of small scale. It is associated with the thrust faults. However, in the Southeast coastal fold belt, the high-conductivity layer is thicker and larger. It is uplifted in a mushroom shape. The resistivity in lithosphere mantle gradually reduces from inland to coast. Due to the limited detecting depth, the lithosphere- asthenosphere boundary (LAB) is not showed in the Wuyi uplift belt which indicates that the depth of the LAB is more than 100 kin. In the Southeast coastal fold belt, the thickness of the lithosphere is reduced to 60km, and the astheno

关 键 词:华南东部 大地电磁测深 岩石圈 电性结构 高导层 岩浆活动 

分 类 号:P313[天文地球—固体地球物理学]

 

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