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1.
太行山东缘汤阴地堑地壳结构和活动断裂探测   总被引:7,自引:1,他引:6       下载免费PDF全文
采用深、浅地震反射和钻孔地质剖面相结合的探测方法,对太行山东缘汤阴地堑的地壳结构和隐伏活动断裂进行了研究.结果表明,该区地壳厚度约36~42 km,莫霍面从华北平原区向太行山下倾伏.汤阴地堑是一个受汤东断裂控制的半地堑构造,其基底面形态与莫霍面展布呈"镜像"关系.汤东断裂是1条继承性的隐伏活动断裂,该断裂向上错断了埋深约20 m的中更新世晚期地层,向下延伸至上地壳底部.综合分析深地震反射和已有深地震宽角反射/折射剖面结果,发现深地震反射剖面上的中-下地壳强反射层和壳幔过渡带反射,与深地震宽角反射/折射剖面上出现的中-下地壳正负速度梯度变化层有着较好的对应关系,这表明本区中-下地壳和壳幔过渡带可能为一系列速度递变层或高低速物质的互变层,埋深约15~16 km的强反射带为上地壳与中-下地壳的转换带,壳幔过渡带的底界为地壳与地幔的分界.研究结果为深入理解该区的深部动力学过程、分析研究深浅构造关系、评价断裂的活动性提供了依据.  相似文献   

2.
泉州盆地及其邻区地壳深部结构的探测与研究   总被引:1,自引:1,他引:1  
泉州盆地及其邻区地处我国大陆东南沿海地震带北段。通过对泉州盆地进行深地震反射探测,获得了该地区近地表至Moho面的精细几何结构及其深浅构造关系图像。这是该区第一条深地震反射探测剖面。分析结果表明,泉州盆地及其邻区地壳厚度变化在29.5~31.0km,由上地壳和下地壳组成。上地壳和下地壳又可以各分为2层。泉州盆地及其邻区近地表至浅部断裂发育,这些断裂向地壳深部最大延伸深度为6-12km,断裂的倾角随深度增加而逐渐变小,呈铲形正断层终止于上地壳上部反射界面C1,以上。在永安-晋江断裂带之下的上地壳下部和下地壳中,存在着切割上、下地壳分界面和Moho面的高倾角深断裂,尽管深浅部断裂构造不相连接,但由于深部存在深断裂,具有发生中强以上地震的深部构造环境。这一深地震反射探测成果的获得,使得泉州盆地及其邻区深部资料解释的可靠性和探测精度比以往显著提高;深浅部构造组合取得了统一的解释结果;地壳的分层和结构特征更为确切和精细;首次发现了上地壳的拉张性构造及铲式正断层组合特征。不仅有助于泉州及其邻区地震危险性的综合判定,而且对深化东南沿海地震带及台湾海峡深部动力学过程的认识具有重要意义。  相似文献   

3.
采用深、浅地震反射相结合的探测方法,对临汾盆地的地壳结构和隐伏活动断裂进行了研究.结果表明,研究区地壳具有清晰的上、中、下地壳结构特征,其地壳厚度约为38~42 km.临汾盆地为典型的半地堑沉积盆地,盆地沉积层最深处约为5~6 km.莫霍面在临汾盆地下方出现约3 km的上隆,其展布形态与盆地基底呈“镜像”对应关系,显示出临汾盆地为拉张作用下的纯剪切盆地模式.深地震反射剖面揭示的一系列铲状或面状正断层在剖面上表现为“负花状”构造特征,其中,罗云山山前断裂和浮山断裂为临汾盆地的东、西边界控制断裂,具有规模大、切割深度深和多期活动的特点,对临汾盆地的形成、地层沉积和褶皱以及地震活动都有重要的控制作用.研究结果为深入理解该区的深部动力学过程、分析研究深浅构造关系、评价断裂的活动性提供了依据.  相似文献   

4.
新疆深断裂与地震活动   总被引:4,自引:0,他引:4  
黄河源 《内陆地震》1992,6(4):340-350
论述了新疆的深断裂与深断裂格局、深断裂格局与深断裂关系的基本特征以及活动深断裂同地震活动的关系。  相似文献   

5.
天山北缘的地壳结构和1906年玛纳斯地震的地震构造   总被引:19,自引:3,他引:19       下载免费PDF全文
长86km、南北向横跨乌鲁木齐坳陷的深地震反射剖面,揭示了北天山山前地壳的薄皮构造特征.共深度点叠加剖面的石河子以南部分显示了天山北缘平行山体的第一和第二排背斜构造.与双程时间分别为2.5~3.0s和5.5~6.0s的反射事件对应的滑脱构造,将地壳深部构造与地表逆断裂 褶皱构造联系在一起.玛纳斯断裂以铲形方式向下延伸,在2.5s左右深度归并于第一滑脱面,向南与清水河断裂汇合.在5.5~6.0s深度上为与玛纳斯下背斜相连的主滑脱面.它们最终汇集到准噶尔南缘断裂.石河子以北的坳陷沉积深度达12~14km.沿剖面的莫霍界面深度在准噶尔盆地为45km 左右,往南加深至50km.对该区域内的深地震测深剖面和布格重力异常资料的分析结果,与深反射剖面的地壳结构图象具有一致性.深地震反射剖面通过1906年玛纳斯7.7级地震宏观震中区,共深度点叠加剖面用于推断玛纳斯7.7级地震与北天山山前地壳构造之间的关系:玛纳斯地震属于一类褶皱地震,其发震构造是由准噶尔南缘断裂、清水河逆冲断裂、滑脱面和玛纳斯浅部断坡组成的断层系.   相似文献   

6.
大同 阳高震区及其邻区壳幔速度结构与深部构造   总被引:8,自引:1,他引:7       下载免费PDF全文
张成科  张先康 《地震地质》1998,20(4):104-398
利用通过本区6条宽角反射/折射剖面资料对大同 阳高震区及邻区地壳上地幔速度结构与构造进行了详细的研究。结果表明,地壳上地幔速度结构与构造在纵向和横向上具有明显的不均一性。浅部基底断裂发育,而在其深部,根据波组特征、壳内界面及速度等值线起伏变化和低速异常体的边界等推测有3处地壳深断裂带。本区最明显的上地壳低速体位于大同—阳原附近,其南界存在地壳深断裂,大同 阳高地震群与该低速异常体和深断裂有关  相似文献   

7.
穿过天津地区张渤带的长86 km、NE向深地震反射剖面揭示了该区清晰的地壳精细结构图像和断裂的深浅构造特征,为研究张渤地震构造带的深部孕震环境和构造模式提供了地震学证据,对探讨晚中生代以来华北裂陷盆地的深部动力学过程及演化具有重要意义.结果表明,天津地区张渤带地壳以结晶基底反射TG为界,分为上下两部分;上地壳反射波组丰富,分层特征明显,界面起伏形态清楚,清晰地刻画出冀中坳陷新生代沉积分层、箕状沉积凹陷的底界、潮白河断裂、蓟运河断裂及丰台—野鸡坨断裂的几何结构;地壳内部结晶基底(TG)至Moho之间,显示出近于"反射透明"的地震波场特征,无明显震相,这与华北其他地区的深地震反射剖面结果明显不同;地壳厚度为30.0~34.5 km,总体变化趋势为中段地壳厚而南北端相对较薄,Moho在横向上显示出明显的不均匀和横向间断特征,在Moho被错断处存在两个明显的反射事件RA和RC,RA可能是软流圈热物质上涌的侧向残留物,叠层状反射震相RC则表现出壳幔过渡带特征;剖面揭示了2条错断Moho的超壳深大断裂(FD1和FD2)和9条上地壳断裂,深大断裂应是软流圈热物质上涌,造成上地幔隆起而形成的,上地壳断裂与地壳垂直运动及侧向引张力有关;超壳深断裂(FD1和FD2)为本区深部热物质的上涌与能量交换提供了通道,而与之对应的地壳浅部断裂(F3和F9),则为能量调整提供了可能的条件,断裂邻近区域可能是未来发生强震的地区,值得注意.  相似文献   

8.
大同阳高震区及其邻区壳幔速度结构与深部构造   总被引:2,自引:1,他引:1       下载免费PDF全文
利用通过本区6条宽角反射/折射剖面资料对大同阳高震区及邻区地壳上地幔速度结构与构造进行了详细的研究。结果表明,地壳上地幔速度结构与构造在纵向和横向上具有明显的不均一性。浅部基底断裂发育,而在其深部,根据波组特征、壳内界面及速度等值线起伏变化和低速异常体的边界等推测有3处地壳深断裂带。本区最明显的上地壳低速体位于大同—阳原附近,其南界存在地壳深断裂,大同阳高地震群与该低速异常体和深断裂有关。  相似文献   

9.
大同—阳高震区深部构造背景   总被引:6,自引:0,他引:6  
利用通过本区的宽角反射/折射剖面资料对大同-阳高震区及邻区地壳上地幔速度结构与构造进行了详细的研究,结果表明,地壳上地幔速度结构与构造在纵向和横向上具有明显的不均一性,浅部基底断裂发育,对应其深部,根据波组特征,壳内界面及速度等值线起伏变化和低速异常体的边界等推测了地壳深断裂带,区内最明显的上地壳低速体位于大同-阳原附近,其南界存在地壳断裂,大同-阳高地震群与该低速异常体和深断裂有关。  相似文献   

10.
北京地区地壳精细结构的深地震反射剖面探测研究   总被引:20,自引:4,他引:16       下载免费PDF全文
长度100 km、NW向穿过三河—平谷8.0级地震区和北京地区主要断裂构造的深地震反射剖面,揭示了该区地壳精细结构图像和断裂的深浅构造特征.结果表明,该区地壳以TWT6~7 s左右的强反射带为界分为上地壳和下地壳,上地壳厚约18~21 km,下地壳厚约13~15 km.剖面TWT3~4 s以上,反射层位丰富,构造形态清晰,且在剖面上具有明显不同的构造特征;在三河—平谷地震区以西,剖面揭示了2~3组反射能量较强的反射震相和一系列错断基底面的断裂,在三河—平谷地震区以东,为一套自东向西倾伏的密集强反射层,这套反射具有典型的沉积盆地特征,盆地最深处约为8~9 km.剖面揭示的地壳深断裂倾角陡直,该断裂切割、扰动了下地壳物质和壳幔过渡带,向上延伸至上地壳,将地壳深部构造与浅部断裂联系在一起,构成了该区最主要的深浅构造特征.  相似文献   

11.
通过对沈阳市深、浅部构造资料的分析发现,地表NE向断裂十分发育,它们控制了断隆与断凹的形成与发展.在地下7km以上为基岩隆起和凹陷区,与地表构造一致,深部18~20km以上有12条面状铲形正断层,在下地壳有2条深断裂发育.与地表王钢堡-新城子断裂、永乐-清水台断裂相对应的深部F3断裂和F6断裂由于其切割深、活动新,可能是关涉沈阳市地震活动的构造.  相似文献   

12.
Introduction Both Sichuan and Yunnan are provinces with more earthquakes. Based on catalogue of strong earthquakes in China compiled by the Prediction Department of China Earthquake Administration, there are 639 M5.0 earthquakes during 26 B.C.~A.D. 2001. Among them, 475 are M=5.0~5.9 events, 124 are M=6.0~6.9 events, 39 are M=7.0~7.9 events, and one is M=8 event occurred in Sichuan and Yunnan area. Here is one of the areas where seismic activities are most active in China. Sichuan-Yun…  相似文献   

13.
INTRODUCTIONQuanzhou Citylocates on the southeast coast of Fujian Province .Tectonically,it locates in thevolcanic fault depression zone in East Fujian betweenthe Wuyi-Daiyunfolded doming-upregion of theSouth China block and the depression zone of the Taiwan Straits . Being on the north segment of thesoutheast seismic belt of China , many destructive earthquakes inthe history affected the area and theregional seismicityis closelyrelated withfaulting.Inthe Quanzhou basin,large-scalelo…  相似文献   

14.
The study area is located at the junction of the northern margin of the Qinling orogenic belt and the southern margin of the North China Block. In order to study the fine crustal structure and the deep-shallow structural features of faults in this area, we conducted deep seismic reflection profiling with the seismic profile of 100km long, directing NE-SW in Zhumadian City, Henan Province, and got clear lithospheric structure images along the profile. As regards the data acquisition, we applied the geometry of 25m group interval, 1000 recording channels and more than 60 folds. Seismic wave exploding applies the 30kg shots of dynamite source with the borehole depth of 25m. The shot interval is 200m. In data processing, we focused on improving the signal-to-noise ratio. Data processing methods mainly include first break removal, tomographic static correction, abnormal amplitude elimination, amplitude compensation, pre-stack denoising, surface consistent deconvolution, velocity analysis, several iterations of the residual static correction, dip moveout, post-stack time migration and post-stack denoising, etc. The profile with high signal-to-noise ratio was obtained. The reflection wave group characteristics is obvious in the crust, which reflects abundant information about geological structure. Along the profile, the crust is characterized by double-layer reflection structure, and the Moho surface is composed of a series of laminated arc-shaped strong reflections. The thickness of the upper crust is about 14.8~20.7km, and the total thickness of the crust is about 32.0~35.1km. The upper crust is dominated by the inclined, densely stratified or arc-shaped reflections. The lower crust is dominated by arc-shaped and inclined reflection, and there is a reflective transparent zone under the Moho surface. The reflection sequences with different directions and shapes in the upper crust constitute the nappe structure in southwest segment and the structural model of two concaves with one uplift in NE segment, which correspond to the north Qinling nappe, Zhumadian-Huaibin depression, Pingyu-Xiping uplift and a secondary depression, respectively. There are abundant arc-shaped reflection sequences in the lower crust, which may represent multi-stage magmatic activities. The deep seismic reflection profile shows that faults in the upper crust are well developed. According to the characteristics of reflected wave field in the profile, four groups of fault structure which contain ten faults with different scales are interpreted. Among them, faults FP1, FP2 and FP3 constitute the thrust fault system in the northern margin of Qinling Mountains, and FP5 and FP7 are boundary faults of Zhumadian-Huaibin depression. These faults are all developed within the upper crust. In addition, the Fault FPM is a large fault that cuts through the lower crust and Moho surface. The deep seismic reflection profile reveals the crustal structure and deep-shallow structural features of faults at the junction of the northern margin of the Qinling orogenic belt and the southern margin of the North China block, which provides seismological evidence for the analysis of structural differences, the deep earth's interior processes and deep-shallow structural relationships between the Qinling-Dabie orogenic belt and the southern margin of the North China block. The lower crust of the study area is divided into two parts by deep faults that dislocate the Moho surface. These two parts have distinct reflective structures, suggesting that the area has experienced intense complex tectonic movements. The faults in the upper crust control the formation of basin-mountain structure and stratigraphic deposition of this area. And deep faults in the crust that disrupt Moho surface create conditions for the upwelling and energy exchange of deep materials. All of these have regulated the composition of material and the distribution of energy in the crust. The deep faults cutting through the lower crust and Moho surface and the south-dipping arc-shaped and inclined strong reflection sequences developed in the lower crust should indicate the large-scale subduction of the southern margin of the North China block towards the south-trending Qinling orogenic belt.  相似文献   

15.
跨1679年三河-平谷8.0级地震区完成的单次覆盖深地震反射剖面和浅层地震反射剖面,揭示了三河-平谷地震区的地壳结构和断裂的深、浅构造特征.结果表明,该区地壳以TWT6~7 s左右的强反射带为界分为上地壳和下地壳,上地壳厚约18~21 km,下地壳厚约13~15 km.剖面揭示的地壳深断裂和浅部活动断裂具有上下一致的对...  相似文献   

16.
The interaction zone between southern Tianshan and northern Tarim is located at the northeast side of Pamir. It is a region with high seismicity. We constructed a seismotectonic model for the west part of this zone from geological profiles, deep crust seismic detection and earthquake focal mechanisms data. Based on the synthesized geological features, deep crust structure, and earthquake focal mechanisms, we think that the main regional tectonic feature is that the Tianshan tecto-lithostratigraphic unit overthrusts on the Tarim block. The Tianshan tectonic system includes the Maidan fault and thrust sheets in front of the fault; The Tarim tectonic system includes the underground northern Tarim margin fault, conjugate faults in basement and overthrust fault in shallow. The northern Tarim margin fault is a high angle fault deep in the Tarim crust, adjusting different trending deformation between Tianshan and Tarim. It is a major active fault that can generate large earthquakes. The other faults, such as the Tianshan overthrust system and the Tarim basement faults in this area may generate moderately strong earthquakes with different styles.  相似文献   

17.
首都圈地震活动构造成因的小震精定位分析   总被引:13,自引:0,他引:13       下载免费PDF全文
应用双差地震定位法对首都圈及其邻区1980~2004年发生的地震进行重新定位,进行首都圈的地震构造成因分析表明:重定位的地震表现为与区域构造更为密切的“井”字形活动分布,地震震源分布证实了人工地震勘探所推断的深大断裂的存在;首都圈地区的地震多发生于地壳的中、上部,可能存在局域构造块体运动变形和深部构造动力作用的二种不同地震构造成因;地震活动图像表明中强震易发生在上下地壳相交的脆-韧性转换带中,并揭示了首都圈地区潜在的地震空区和陡倾角的隐伏断层.  相似文献   

18.
山西五台山地区地壳深部结构特征研究   总被引:11,自引:3,他引:11       下载免费PDF全文
利用穿过山西断陷带及五台山区的宽角反射/折射地震测深剖面所获得的资料对该区地壳结构进行研究,结果表明:五台山地区地壳呈明显的分层结构,上下地壳的分界是以壳内较为连续可靠的反射波P3所反映的界面为标志的,上地壳的厚度为23~28km,莫霍界面的深度为39~43km,五台山区是本区M界面最深的地区;地壳结构非均匀变化强烈的地区发生在五台山及其邻近地区,上地壳内较大范围低速异常体的存在和壳内强反射波组的出现可视为地壳深部岩浆活动的一种标志;壳内界面的中断、Pm波的局部不连续和地壳深断裂的存在等诸多现象均表明该地区地壳结构发生了强烈的挤压、变形和构造活动,从而形成了该地区复杂的地形地貌和地壳深浅部异常的结构特征.  相似文献   

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IntroductionIn order to gain a clear idea of the deep tectonic environment of Xingtai earthquake area,three wide-angle deep seismic renectionlrefraction profiles have been conducted through the are4they are Yuanshi--Ji'nan profile, Renxian--Wuqing profile and Tat' an--LongyaM inzhou profi I e.The Yuanshi--Ji'nan profile passes through the epicenter of the Ms=7.2 main shock andTat' ~ongyaO--X inzhou profi ie passes through the ep icenter of the Ms=6. 8 earthquake. Duringthe "Eighth Five-…  相似文献   

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