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1.
The 1999 Kocaeli earthquake brought serious damage to downtown of Adapazari. To study why strong motions were generated at the town, a bedrock structure was investigated on the basis of Bouguer gravity anomaly, and SPAC and H/V analyses of microseisms. It was revealed that, the basin consists of three narrow depressions of bedrock with very steep edges, extending in E–W or NE–SW directions along the North Anatolia faults, and the depth to bedrock reaches 1000 m or more. Downtown of Adapazari is located 1–2 km apart from the basin-edge. It is considered that, the specific configuration of bedrock amplifies ground motions at the downtown area by focusing of seismic waves and/or interference between incident S-waves and surface-waves secondarily generated at the basin-edge. Studying 3D bedrock structure is an urgent issue for microzoning an urban area in a sedimentary basin.  相似文献   
2.
青藏高原周缘地区大地震发生的地球物理条件的新认识   总被引:2,自引:0,他引:2  
青藏高原周缘是我国的主要强震区之一,也是地球物理场变异带和地壳陡变带,前人研究的结果表明强震的发生与它们有密切的关系。在前人研究的基础上经过仔细分析,认为强震往往发生在地球物理场变异带和地壳陡变带等值线由密集变为舒缓或斜坡带上,这可为地震地点的预测、潜在震源区的划分、地震参数的确定,提供基本的必要条件。  相似文献   
3.
青藏高原及其邻区岩石层三维密度结构   总被引:17,自引:5,他引:17       下载免费PDF全文
搜集了青藏高原及其邻近区域的S波速度三维层析成像结果和2万多个实测重力点资料,将重力资料进行各种改正并网格化为30′×30′的布格重力异常.首先采用密度差与S波速度差之间的经验关系式,建立青藏地区岩石层密度的初始模型,再利用布格重力异常进行阻尼最小二乘法反演,得到青藏地区岩石层三维密度分布结果.反演结果表明:(1)青藏高原岩石层密度分布不仅在纵向上不均匀,而且在横向存在明显的不均匀.在深度10-70km范围内,高原整体呈低密度特性,在50-70km深度范围内低密度特征更加突出,与周缘地区存在0,1g/cm3的密度差.而在90-110km深度范围内,高原岩石层地幔显示密度高.(2)岩层密度分布与大地构造有明显相关的分区性,显示出青藏块体、巴颜喀拉块体、塔里木块体和印度块体.  相似文献   
4.
本文从理论上对相关分析法区分重力异常的可行性进行了论述,并从一元线性回归方程着手,对大地水准面上的重力值与相应的地形高程作了相关分析,通过分析,认为在区域性小比例主均衡补偿基本完善的条件下,重力值与高程有极好的线性相关关系;当计算窗口较大时,地下的局部不均匀体,不足以破坏重力值与高程的相头发一,所以,在实际工作中,利用相关分析处理重力资料的叠加场,可以收到较好的效果,且方法简单易行。  相似文献   
5.
6.
郯—庐断裂带南延入湖南的质疑   总被引:1,自引:0,他引:1  
杨舜全 《湖南地质》1990,9(2):77-82
郯—庐断裂带纵贯中国东部,规模巨大,长期、多次活动,对该区的地质发展,岩浆活动和矿产的分布均起到重要的控制作用。目前,地学界对其北段和中段的存在已无异议,但南延问题仍处于众说纷纭的争论局面。笔者通过对郯—庐断裂带基本地质特征的认识,并与湖南、江西存在的深大断裂进行对比,同意前人将郯—庐断裂带与赣江断裂相连的意见,认为它南延进入湖南的可能性不大。  相似文献   
7.
Field investigations, K-Ar age determinations and chemical data were used to describe the development of an intraplate volcanic province, the Darfur Dome, Sudan. Magmatism started 36 Ma ago at a small subvolcanic complex (Jebel Kussa) in the center of the dome and was active in the same area between 26 and 23 Ma. Two major volcanic fields (Marra Mountains and Tagabo Hills) developed between 16 and 10 Ma. Volcanism started again at 6.8 Ma with a third volcanic field (Meidob Hills) and at 4.3 Ma in the Marra Mountains and with the reactivation of the center. Activity then continued until the late Quaternary. Having started in the center of the Darfur Dome, volcanism moved in 36 Ma 200 km towards the NNE and 100 km SSW No essential difference in the alkaline magma types (basanitic to phonolitic-trachytic, with different amounts of assimilation of crustal material) in the different fields, was observed. Magmatism is thought to have been produced by a rising mantle plume and volcanism was triggered by stress resolution along the Central African Fault Zone.  相似文献   
8.
内蒙古阴山地区特异区域重磁场与深部构造   总被引:12,自引:6,他引:12       下载免费PDF全文
根据内蒙古阴山山系及邻近地区的布格重力异常分布特征,发现阴山、大青山山地和呼包盆地地区的布格重力异常分布与地形高程呈“同步型”的特异变化特征.而该地区航磁异常分布呈现为阴山山区是大面积负磁异常区,呼包盆地为强正磁异常区的特异磁异常分布特征.通过对地震、大地电磁数据、特别是重力数据资料的处理分析,给出阴山山系和呼包盆地地区的地壳结构,均表明地壳底界面都没有明显的下凹与上凸,且盆地北缘为两大块体的接触带.这些特征可能表征着阴山山系和呼包盆地重磁异常呈特异变化的一些原因.  相似文献   
9.
Anomaly analysis is used for various geophysics applications such as determination of geophysical structure's location and border detections. Besides the classical geophysical techniques, artificial intelligence based image processing algorithms have been found attractive for geophysical anomaly analysis. Recently, cellular neural networks (CNN) have been applied to geophysical data and satisfactory results are reported. CNN provides fast and parallel computational capability for geophysical image processing applications due to its filtering structure. The behavior of CNN is defined by two template matrices that are adjusted by a properly supervised learning algorithm. After training stage for geophysical data, Bouguer anomaly maps can be processed and analyzed sequentially. In this paper, CNN learning and processing capability have been improved, combining Wavelet functions and backpropagation learning algorithms. The new architecture is denoted as Wavelet-Cellular Neural networks (Wave-CNN) and it is employed to analyze Bouguer anomaly maps which are important to extract useful information in geophysics. At first, Wave-CNN performance is tested on synthetic geophysical data, which are created by a computer environment. Then, Bouguer anomaly maps of the Dumluca iron ore field have been analyzed and results are reported in comparison to real drilling results.  相似文献   
10.
Geoid, topography, and the Bouguer plate or shell   总被引:1,自引:1,他引:1  
 Topography plays an important role in solving many geodetic and geophysical problems. In the evaluation of a topographical effect, a planar model, a spherical model or an even more sophisticated model can be used. In most applications, the planar model is considered appropriate: recall the evaluation of gravity reductions of the free-air, Poincaré–Prey or Bouguer kind. For some applications, such as the evaluation of topographical effects in gravimetric geoid computations, it is preferable or even necessary to use at least the spherical model of topography. In modelling the topographical effect, the bulk of the effect comes from the Bouguer plate, in the case of the planar model, or from the Bouguer shell, in the case of the spherical model. The difference between the effects of the Bouguer plate and the Bouguer shell is studied, while the effect of the rest of topography, the terrain, is discussed elsewhere. It is argued that the classical Bouguer plate gravity reduction should be considered as a mathematical construction with unclear physical meaning. It is shown that if the reduction is understood to be reducing observed gravity onto the geoid through the Bouguer plate/shell then both models give practically identical answers, as associated with Poincaré's and Prey's work. It is shown why only the spherical model should be used in the evaluation of topographical effects in the Stokes–Helmert solution of Stokes' boundary-value problem. The reason for this is that the Bouguer plate model does not allow for a physically acceptable condensation scheme for the topography. Received: 24 December 1999 / Accepted: 11 December 2000  相似文献   
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