利用中美合作在青藏高原布设的11台 PASSCAL 宽频带数字地震仪记录到的瑞利面波资料,测得青藏高原内不同块体的瑞利面波相速度(周期为10—120s),并反演了不同路径的地壳上地幔 S 波速度结构,发现青藏高原 S 波速度结构的横向变化显著....利用中美合作在青藏高原布设的11台 PASSCAL 宽频带数字地震仪记录到的瑞利面波资料,测得青藏高原内不同块体的瑞利面波相速度(周期为10—120s),并反演了不同路径的地壳上地幔 S 波速度结构,发现青藏高原 S 波速度结构的横向变化显著.亚东—安多裂谷带的面波频散与相邻的块体差异最大,温泉至日喀则路径的相速度比其它路径的相速度明显偏高.该路径的地壳平均速度为3.79km/s,比其它路径的地壳平均速度3.40—3.50km/s高得多.青藏高原内不同块体的地壳中均有低速层存在,但低速层的厚度和速度不尽相同.位于北部的松潘甘孜块体。其地壳较薄约为65km,Sn 速度为4.48km/s,而且在约120km 深处的上地幔中存在一厚度为60km,速度为4.15km/s 的上地幔低速层.其它路径的上地幔速度相近,均没有明显的上地幔低速层出现.羌塘块体与拉萨块体的瑞利波相速度和 S 波速度结构极为相似,上地幔顶部的速度较松潘甘孜块体略高.在青藏高原广大地区中,地壳的平均速度低,普遍存在地壳低速层;上地幔顶部的横波速度为4.50—4.65km/s,上地幔中或者没有低速层或者低速层埋藏较深.展开更多
利用中国27个地震基准台和世界标准地震台网 WWSSN 西南亚3个台站记录的中国大陆及邻近地区79个地震共238条路径的长周期面波资料,应用适配滤波频时分析技术和改进的分格频散反演方法,得到该地区147个4°×4°斜方格的纯路...利用中国27个地震基准台和世界标准地震台网 WWSSN 西南亚3个台站记录的中国大陆及邻近地区79个地震共238条路径的长周期面波资料,应用适配滤波频时分析技术和改进的分格频散反演方法,得到该地区147个4°×4°斜方格的纯路径群速度频散值,进而反演得到华南地区深至170km 左右的三维 S 波速度构造.结果表明:华南地区各一级构造单元之间有明显差异,一级单元内的次级构造单元也有一定差异.东部地壳较薄,由东往西逐渐变厚,厚度为30—43km 左右.地壳中 S 波平均速度,东北部最低,西部最高,约为3.48—3.68km/s,在大范围内未发现明显的地壳低速层.华南大部分地区存在上地幔低速层,低速层起始深度为75—106km 左右,低速层中 S 波最小速度约为4.28—4.38km/s.尽管华南大部分地区存在上地幔低速层,但各主要层位分界明显,层面平缓,在较大尺度地下构造横向变化较小,除西部褶断区、东南沿海断裂系等边缘区域为构造活动区外,华南主体的地壳上地幔构造仍属于较稳定的大陆块体构造.展开更多
The cross-well acoustic tomography as an advanced technique in 1980's is widely researchedand improved now. It is found that the velocity of oil-layer is lower than that Of country rock byabout ten percent accordi...The cross-well acoustic tomography as an advanced technique in 1980's is widely researchedand improved now. It is found that the velocity of oil-layer is lower than that Of country rock byabout ten percent according to some reports abroad. It had been tested to drive oil by steam inoil--field. In China the first test of cross-well acoustic tomography was performed in Fuyu oilfield, Jinn Province, in Dec. 1992. Through data processing in detail, an acoustic tomogram wasobtained, in which the distribution and inclination of oil layers between two boreholes are well revealed and coincident with the logging results. SOme technical problems existed in this experiment are POinted.展开更多
The average swelling height of Qinghai-Xizang Plateau(Tibet) is about 4.1 km.The area is about 2 300 000 km2.It is the highest and the largest plateau in the world.Mount Qomolangma,the highest peak in the world,is loc...The average swelling height of Qinghai-Xizang Plateau(Tibet) is about 4.1 km.The area is about 2 300 000 km2.It is the highest and the largest plateau in the world.Mount Qomolangma,the highest peak in the world,is located in the southern fringe of the plateau,and its height is still increasing.What is the driving force for the rising of the Qinghai-Xizang plateau?How high will the plateau still rise from now on? These questions are much concerned by people.In this paper the distribution of the pressure at different depths in the region of Qinghai-Xizang Plateau are derived according to the three-dimensional structures of the S-wave velocity in the crust and upper mantle.The crust and upper mantle structures of the Qinghai-Xizang Plateau is deliberated on the basis of the distribution with a comprehensive analysis on the rock types,earthquakes and the relative crust movements.Then the two questions raised above are discussed.展开更多
In this paper, 238 Rayleigh wave path data are selected and processed by the matched-filtering frequency-time analysis technique and the grid dispersion inversion method to obtain the 3D S-wave velocity structure of C...In this paper, 238 Rayleigh wave path data are selected and processed by the matched-filtering frequency-time analysis technique and the grid dispersion inversion method to obtain the 3D S-wave velocity structure of China mainland and its adjacent sea regions. The results show that the velocity structure relates to geotectonic division, Bouguer gravity anomaly is basically controlled by the relief of Moho discontinuity, the buried depth of LVL in upper mantle concerns the surface heat flow deeply. In this paper, authors indicate the main characteristics of the velocity structure in tectonic active and stable regions.展开更多
文摘利用中美合作在青藏高原布设的11台 PASSCAL 宽频带数字地震仪记录到的瑞利面波资料,测得青藏高原内不同块体的瑞利面波相速度(周期为10—120s),并反演了不同路径的地壳上地幔 S 波速度结构,发现青藏高原 S 波速度结构的横向变化显著.亚东—安多裂谷带的面波频散与相邻的块体差异最大,温泉至日喀则路径的相速度比其它路径的相速度明显偏高.该路径的地壳平均速度为3.79km/s,比其它路径的地壳平均速度3.40—3.50km/s高得多.青藏高原内不同块体的地壳中均有低速层存在,但低速层的厚度和速度不尽相同.位于北部的松潘甘孜块体。其地壳较薄约为65km,Sn 速度为4.48km/s,而且在约120km 深处的上地幔中存在一厚度为60km,速度为4.15km/s 的上地幔低速层.其它路径的上地幔速度相近,均没有明显的上地幔低速层出现.羌塘块体与拉萨块体的瑞利波相速度和 S 波速度结构极为相似,上地幔顶部的速度较松潘甘孜块体略高.在青藏高原广大地区中,地壳的平均速度低,普遍存在地壳低速层;上地幔顶部的横波速度为4.50—4.65km/s,上地幔中或者没有低速层或者低速层埋藏较深.
文摘利用中国27个地震基准台和世界标准地震台网 WWSSN 西南亚3个台站记录的中国大陆及邻近地区79个地震共238条路径的长周期面波资料,应用适配滤波频时分析技术和改进的分格频散反演方法,得到该地区147个4°×4°斜方格的纯路径群速度频散值,进而反演得到华南地区深至170km 左右的三维 S 波速度构造.结果表明:华南地区各一级构造单元之间有明显差异,一级单元内的次级构造单元也有一定差异.东部地壳较薄,由东往西逐渐变厚,厚度为30—43km 左右.地壳中 S 波平均速度,东北部最低,西部最高,约为3.48—3.68km/s,在大范围内未发现明显的地壳低速层.华南大部分地区存在上地幔低速层,低速层起始深度为75—106km 左右,低速层中 S 波最小速度约为4.28—4.38km/s.尽管华南大部分地区存在上地幔低速层,但各主要层位分界明显,层面平缓,在较大尺度地下构造横向变化较小,除西部褶断区、东南沿海断裂系等边缘区域为构造活动区外,华南主体的地壳上地幔构造仍属于较稳定的大陆块体构造.
文摘The cross-well acoustic tomography as an advanced technique in 1980's is widely researchedand improved now. It is found that the velocity of oil-layer is lower than that Of country rock byabout ten percent according to some reports abroad. It had been tested to drive oil by steam inoil--field. In China the first test of cross-well acoustic tomography was performed in Fuyu oilfield, Jinn Province, in Dec. 1992. Through data processing in detail, an acoustic tomogram wasobtained, in which the distribution and inclination of oil layers between two boreholes are well revealed and coincident with the logging results. SOme technical problems existed in this experiment are POinted.
文摘The average swelling height of Qinghai-Xizang Plateau(Tibet) is about 4.1 km.The area is about 2 300 000 km2.It is the highest and the largest plateau in the world.Mount Qomolangma,the highest peak in the world,is located in the southern fringe of the plateau,and its height is still increasing.What is the driving force for the rising of the Qinghai-Xizang plateau?How high will the plateau still rise from now on? These questions are much concerned by people.In this paper the distribution of the pressure at different depths in the region of Qinghai-Xizang Plateau are derived according to the three-dimensional structures of the S-wave velocity in the crust and upper mantle.The crust and upper mantle structures of the Qinghai-Xizang Plateau is deliberated on the basis of the distribution with a comprehensive analysis on the rock types,earthquakes and the relative crust movements.Then the two questions raised above are discussed.
基金Project supported by the National Natural Science Foundation of China.
文摘In this paper, 238 Rayleigh wave path data are selected and processed by the matched-filtering frequency-time analysis technique and the grid dispersion inversion method to obtain the 3D S-wave velocity structure of China mainland and its adjacent sea regions. The results show that the velocity structure relates to geotectonic division, Bouguer gravity anomaly is basically controlled by the relief of Moho discontinuity, the buried depth of LVL in upper mantle concerns the surface heat flow deeply. In this paper, authors indicate the main characteristics of the velocity structure in tectonic active and stable regions.