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341.
介绍了中国及邻区地震目录数据库的开发状况,从历史强震、近代强震及强震震源深度等几个方面,结合我国及邻区板块构造以及应力状态、壳幔结构的东西部差异对我国强震的空间格局进行了较为系统的分析.公元1900年以前我国华北地区的强震呈现出大梯形格局,而公元1900年之后我国强震则以西部的巨大扇形为主要特征,其中震源深度最深的区域分别位于大扇形的2个顶点处,即兴都库什-帕米尔以及缅印交界地区.就我国强震所特有的空间分布格局对我国强震的线性以及区域性迁移模式进行了总结和分析,其中线性迁移模式又可细分为前进跳跃式和钟摆式.对文中涉及的强震迁移机制分别利用断层破裂、弹簧-滑块、壳幔的结构性差异以及它们之间的相对运动等模型进行了初步的解释.  相似文献   
342.
2-D crustal velocity structure and vp/vs are obtained by processing and interpretation of S-wave data from Maqen-Jingbian deep seismic sounding(DSS)profile.The result shows that there exist obvious differences in 2-D S-wave velocity structure and vp/vs ratio structure along the profile.The S-wave velocities are low and vp/vs ration is high for the westem section of the profile and Haiyuan region,while they are normal for the middle and eastern sections.The changes in lithologic characters of two major anomalous zones are discussed according to lateral variation of S-wave velocity structure and vp/vs ratio structure.It is concluded that the development and occurrence of the Haiyuan strong earthquake is not only related to tectonic activities,but also to lithologic characters of the region.  相似文献   
343.
This paper briefly reviews main progress in the research on lithospheric structure and continental geodynamics made by Chinese geophysicists during last 4 years since 22nd IUGG general assembly in July 1999. The research mainly covers the following fields: investigations on regional lithospheric structure, DSS survey of crust and upper mantle velocity structure, study on present-day inner movement and deformation of Chinese mainland by analyz-ing GPS observations, geodynamics of Qingzang plateau, geophysical survey of the Dabie-Sulu ultra-high pressure metamorphic belt and probing into its formation mechanism, geophysical observations in sedimentary basins and study on their evolution process, and plate dynamics, etc.  相似文献   
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346.
Crustal structure beneath the Songpan—Garze orogenic belt   总被引:2,自引:0,他引:2  
The Benzilan-Tangke deepseismic sounding profile in the western Sichuan region passes through the Song-pan-Garze orogenic belt with trend of NNE.Based on the travel times and the related amplitudes of phases in the record sections,the 2-D P-wave crustal structure was ascertained in this paper.The velocity structure has quite strong lateral variation along the profile.The crust is divided into 5layers,where the first,second and third layer belong to the upper crust,the forth and fifth layer belong to the lower crust.The low velocity anomaly zone gener-ally exists in the central part of the upper crust on the profile,and it integrates into the overlying low velocity basement in the area to the north of Ma‘erkang.The crustal structure in the section can be divided into 4parts:in the south of Garze-litang fault,between Garze-Litang fault and Xianshuihe fault,between Xianshuihe fault and Longriba fault and in the north of Longriba fault,which are basically coincided with the regional tectonics division.The crustal thickness decreases from southwest to northeast along the profile,that is ,from62km in the region of the Jinshajiang River to 52km in the region of the Yellow River.The Moho discontinuity does not obviously change across the Xianshuihe fault basesd on the PmP phase analysis.The crustal average velocity along the profile is lower,about 6.30 km/s.The Benzilan-Tangke profile reveals that the crust in the study area is orogenic.The Xianshuihe fault belt is located in the central part of the profile,and the velocity is positive anomaly on the upper crust,and negative anomaly on the lower crust and upper mantle.It is considered as a deep tectonhic setting in favor of strong earthquake‘s accumulation and occurrence.  相似文献   
347.
The data from two deep seismic sounding profiles was processed and studied comprehensively. The results show that crnst-mantle structures in the investigated region obviously display layered characteristics and velocity structures and tectonic features have larger distinction in different geological structure blocks. The boundary interface C between the upper and lower crust and Moho fluctuate greatly. The shallowest depths of C (30.0km) and Moho (45.5km) under Jiashi deepen sharply from Jiashi to the western Kunlun mountain areas, where the depths of C and Moho are 44.0km and 70.0km, respectively. The higher velocity structures in the Tarim massif determine its relatively “stable“ characteristics in crust tectonics. The phenomenon in the Jiashi region, where the distribution of earthquake foci mostly range from 20kin to 40kin in depth, may infer that the local uplift of C and Moho interface, anomalonsly lower velocity bodies and deep large faults control earthquake occurrence and seismogenic processes in the Jiashi strong earthquake swarm.  相似文献   
348.
潘一矿8煤层煤体结构特征及煤与瓦斯突出区域性预测   总被引:2,自引:0,他引:2  
长期以来,煤与瓦斯突出一直是困扰煤矿安全生产的一大问题。安徽煤田地质局勘查研究院开展的《两淮煤田煤层气储层特征研究》、《煤体结构判识技术在煤矿煤与瓦斯突出预测工作中的应用研究》等课题,在利用钻孔测井曲线判识煤体结构方面取得了突破性进展,并成功地将此技术应用于煤矿安全生产,预测矿井未开拓区域内主要煤层的煤体结构分布,进而为煤与瓦斯突出区域性预测提供了新的手段。  相似文献   
349.
煤岩显微组分热解气相色谱特征与化学结构剖析   总被引:3,自引:0,他引:3       下载免费PDF全文
煤结构是目前地球化学研究领域中的一个难点,但却具有极其重要的理论及实际意义,本文采用分步热解气相色谱技术将树皮体,镜质体和丝质体分解为分子量较小的可测定的有机化合物,在此基础上,据不同温度下热解产物的组成特征来还原显微组分的化学结构,实验结果表明,煤显微组分主要由四大类官能团组成,一是热稳定性较低的NOS杂原子官能团;二是脂族(脂链、脂环)结构;三是苯、烷基苯(甲苯、二甲苯)、萘等芳香族化合物,四是热稳定性很高的难以分解的稠环芳烃。上述四类化合物集中于显微组分的不同结构简单中,树皮体和镜质体结构单元外侧主要由热稳定性较低的杂原子化合物以及分子量较小的苯和烷基苯组成,而丝质体结构单元外侧则主要以短链脂族结构为主,三组分结构核部由热稳定性很高的难以分解的稠环芳烃组成。连结核部稠环芳烃与结构单元外侧杂原子等官能团的主要是热稳定性较高的脂链结构,煤显微组分热成烃主要按结构中各官能团键的强弱随热演化程度的加深依次脱除,生成油气,基本上属平行独立依次反应机制,亦“官能团脱除型”,此外,还包括少量的长链脂族结构裂解为短链脂肪烃的“解聚”过程。  相似文献   
350.
The Jiaocbang arcuate structure is one of the numerous arcuate structural belts in Sichuan. The present paper gives a further argument about the characteristics of that arcuate structure and the new activity of the Songpinggou fault and affirms that the Songpinggou fault is an active fault in the Holocene epoch. The Diexi M7.5 earthquake took place in 1933 on the west wing of that arcuate structure, near the apex of the arc. Many authors have given quite different opinions about the genetic structure of that earthquake. The authors have made on-the-spot investigations time and again over recent years. Besides this, the authors have also further studied the shape of intensity contour lines, the distribution characteristics of ground surface seismic hazards, the left-lateral dislocation of buildings along the Songpinggou fault, the NWtrending ground fissures that developed on the ground surface after earthquake, and so on. On this basis, it is still considered that the seismogenic fault of the 1933 Diexi M7.5 earthquake was the Songpinggou fault on the west wing of the Jiaochang arcuate structure.  相似文献   
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