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1.
通过强震震例阐述了重力观测在地震预测中的作用,分析了强震震间期与同震及震后重力场变化特征、区域重力场变化及其与强震活动的关系。强震前区域重力场出现大范围的有序性变化,震源区附近产生与地震孕育发生有关的局部重力异常区,并沿区域主要发震构造断裂带出现显著的重力变化梯度带;强震一般发生在重力变化高梯度带转弯附近或重力变化四象限分布特征中心附近;重力场动态变化图像能够较清晰地反映强震孕育、发展、调整过程的重力变化信息,并基于震例提出了强震震前重力变化的“场-源-带”基本模式。最后,提出我国重力监测预报发展中仍存在的问题,并对利用重力监测资料开展地震预测预报研究进行了展望。  相似文献   

2.
鲁甸M_S6.5、芦山M_S7.0、汶川M_S8.0地震前区域重力场时变   总被引:2,自引:1,他引:1  
利用川滇地区不同时-空尺度的重力复测资料,系统分析了区域重力场时-空动态变化及其与2014年云南鲁甸MS6.5、2013年四川芦山MS7.0和2008年四川汶川MS8.0地震发生的关系。结果表明:1)强震发生前,重力场出现较大空间范围的区域性重力异常及与测区主要断裂构造带走向基本一致的重力变化高梯度带,可能反映地震前区域应力场的增强及沿主要断裂带在地震孕育发生期间发生了引起地表重力变化效应的构造活动或变形;2)多时-空尺度的重力场动态变化图像均出现较显著的相对重力异常变化,随着累计时间的增长,重力变化更为显著,可视为强震的中期前兆信息,强震主要发生在重力场变化分布差异较为剧烈的地区;3)重力场动态变化对强震的地点预测具有重要指示作用,大区域重力网能较好地判断强震主体地区,时-空分辨率较高的省局区域重力网能较好地判定强震发震地点,为更好地判定强震发震位置,则需要相应的更密集的观测网点控制;4)文章第一作者在汶川、芦山、鲁甸地震前的中期预测尤其是地点预测均取得较好成效。基于上述认识,进而强调在研究区形成的一些重力变化异常部位可能仍存在大震中-长期危险背景,需继续加强监视。  相似文献   

3.
从重力场、地磁场和地热场等方面分析了山西断陷带地球物理场所具有的特征,论述了地球物理场特征及其揭示的深部构造与强震活动的关系,初步建立了山西断陷带强震发生的模式,指出,与强震活动密切相关的区域地球物理场特征及深部构造,是进行地震预报和地震区划等不可缺少的依据,也是今后进一步研究地震成因必须十分重视的问题.  相似文献   

4.
基于2015年以来南北地震带南段相对重力和绝对重力观测资料,系统分析了区域重力场动态变化及其与2021年5月21日漾濞MS6.4地震的关系.结果表明:(1)区域重力场变化与维西—乔后断裂关系密切,反映了2015—2021年期间该断裂活动引起了地表重力场变化;(2)与漾濞地震孕育有关的重力场经历了“弱变化—区域性异常—局部异常—四象限分布异常—大范围的正异常—反向变化发震”的演化过程;(3)重力场累积变化和差分变化图像均反映出漾濞震前两年出现显著的重力异常变化,地震发生在重力变化梯度带、四象限中心和零等值线拐弯附近;(4)重力场动态演化图像较好地反映了漾濞MS6.4地震孕育发生过程中出现的中期前兆现象,并基于该现象在漾濞MS6.4地震前作过一定程度的中期预测,尤其是强震地点判定.  相似文献   

5.
利用南北地震带2014-2017年期间的流动重力观测资料,系统分析了区域重力场变化及其与2017年8月8日四川九寨沟7.0级地震发生的关系.结果表明:①区域重力场异常变化与北西西向塔藏断裂和南北向岷江断裂带在空间上关系密切,反映了沿控震断裂在2013-2017年期间发生了引起地表重力变化效应的地壳变形和构造活动.②九寨沟地震前,测区内出现了大空间范围的区域性重力异常,而震源区附近产生了局部重力异常,沿塔藏断裂带形成了重力变化高梯度带,其中,甘肃玛曲、迭部、青海河南蒙古族自治县、四川若尔盖、九寨沟一带重力差异变化达100×10-8m·s-2以上;这些可能反映九寨沟地震前,区域及震源区附近均产生与该地震孕育、发生有关的构造运动或应力增强作用.③九寨沟地震震中位于重力差异运动剧烈的鞍部等值线附近,与断裂走向基本一致的重力变化高梯度带零值线上,这一观测事实进一步佐证了重力场动态变化图像对强震地点预测具有重要的指示意义.  相似文献   

6.
2013年四川芦山Ms7.0地震前的重力变化   总被引:6,自引:0,他引:6       下载免费PDF全文
利用川西地区2010-2012年期间的流动重力观测资料,系统分析了区域重力场变化及其与2013年4月20日四川芦山7.0级地震发生的关系.结果主要表明:①区域重力场异常变化与北东向龙门山断裂带南段和北北西向马尔康断裂带在空间上关系密切,反映沿该两断裂带(段)在2010-2012年期间发生了引起地表重力变化效应的构造活动或变形.②芦山7.0级地震前,测区内出现了较大空间范围的区域性重力异常,而震源区附近产生了局部重力异常,沿龙门山断裂带南段形成了重力变化高梯度带,其中,宝兴、天全、康定、泸定、石棉一带重力差异变化达100×10-8m·s-2以上;这些可能反映芦山地震前,区域及震源区附近均产生与该地震孕育、发生有关的构造运动或应力增强作用.③重力场差分动态演化图像和重力场累积变化动态图像均反映芦山7.0级地震孕育过程的最后2~3年出现较显著的流动重力异常变化,可视为该地震的中期前兆信息;本文第一作者等也曾基于该流动重力异常变化在芦山7.0级地震前做过一定程度的中期预测,尤其是地点预测.本文的例子再次证明流动重力观测能较好地捕捉到强震孕育发生过程中,特别是该过程最后阶段的重力异常变化信息.因此,区域流动重力场观测对未来强震的中-长期预测,尤其是在发震地点的判定上具有优势.  相似文献   

7.
青藏高原东北缘强震前兆特征研究——流动重力方法   总被引:4,自引:1,他引:4  
通过整理和解剖青藏高原东北缘地震重力观测资料,分析研究了青藏高原东北缘重力场时空变化及其与地震活动的关系,研究了强震孕育发生过程重力异常特征及震后异常效应。  相似文献   

8.
梁伟锋  祝意青  徐云马  刘练  郭树松  刘芳 《地震研究》2012,35(3):318-322,441
系统深入地分析了2005~2009年华北地区流动重力观测资料,提取2006年河北省文安县MS5.1地震前后0.5a、1a等不同时间尺度可靠的重力场动态变化信息,研究其与地震活动的关系。结果显示:文安地震孕育阶段,测区出现较大范围的区域性重力异常,并产生与地震孕育有关的局部重力异常区及重力变化高梯度带。重力场动态图像较清晰地反映了区域重力场的有序性演化与地震活动。  相似文献   

9.
对川西地区2000~2001年雅江—康定间6.0级地震前后的重力观测资料进行了处理,绘制了重力场变化等值线图和三维曲面图,从动态的观点研究了雅江地震前后重力场的图像变化特征。结果表明:①重力变化与构造环境变化有关,地震前重力场有明显的异常变化。②雅江地震前后重力场空间分布图较好地反映了鲜水河断裂带及北西向的理塘断裂和北东的玉龙西断裂构造活动弓l起的重力变化。③地震发生在重力异常下降区及高梯度带附近。  相似文献   

10.
汶川M_S8.0地震前后的重力场动态变化   总被引:4,自引:0,他引:4       下载免费PDF全文
利用国家重大科学工程"中国地壳运动观测网络"1998—2008年绝对重力和相对重力的观测资料,获得了南北地震带地区的重力场及其动态变化,从动态的观点研究了2008年5月12日汶川8.0级地震前后区域重力场演化特征及其与地震活动的关系.重力场变化既具有时-空分布的不均匀性,同时又具有与活动断裂构造密切相关和与地震孕育发展有着内在联系.重力场动态变化图象较清晰地反映了汶川大地震孕育、发生过程中出现的重力前兆信息.  相似文献   

11.
Based on the mobile gravity observation data in 2014-2016 in Guangxi and its adjacent areas, this paper systematically analyzed the changes of regional gravity field and its relation to the MS5.4 Cangwu, Guangxi earthquake on July 31, 2016, and combined with GPS observation data and seismic geological survey results, discussed the temporal and spatial distribution characteristics of the changes of regional gravity field and its mechanism. The results show that:(1) Before and after the MS5.4 Cangwu earthquake, the gravity anomaly changes near the earthquake area were closely related to the major faults in space, which reflects the crustal deformation and tectonic activities that caused the surface gravity change along the seismogenic fault in the period of 2014-2016; (2) The gravity changes near the epicenter before and after the MS5.4 Cangwu earthquake showed an evolution process in which the positive gravity anomaly zone changed to the negative gravity anomaly zone, a gravity gradient belt appeared along NNE direction and the earthquake occurred in its reverse change process; (3) The epicenter of the MS5.4 Cangwu earthquake located both near the gravity gradient belt and in the zero transition zone of the surface strain gradient and the edge of the high maximum shear strain rate area, the observational fact further proved that the dynamic image of gravitational field and deformation field have important instruction significance to the location prediction of strong earthquakes; (4) in recent years, the gravity dynamic change in northwestern Guangxi presented a four-quadrant distribution pattern, and there is the risk of generating earthquake of magnitude about 5 in the center of the quadrants.  相似文献   

12.
分析了北祁连河西地区近期大地垂直形变演化特征,结果表明,该地区地壳形变逆继承性运动弱,继承性运动强。研究了垂直形变异常与地震的对应关系,地震发生在垂直形变隆起区的边缘形变高梯度带上。指出该地区的中段形变异常明显,已形成强震的孕震背景。  相似文献   

13.
鄂西三峡区域重力场特征及其地震构造意义   总被引:1,自引:0,他引:1       下载免费PDF全文
深大断裂的强烈活动不仅能造成深部地壳界面不连续(变异)和重力场的异常分布,同时在上部地壳有相应的显示。基于这一思路,本文利用重力资料计算反演了鄂西三峡地区地壳厚度分布、重力均衡状态,进而着重研究了地表线性断(破)裂系统和现代地壳运动特征(包括地震活动)。由此得出结论:三峡东部NNE向延伸的重力异常梯级带不是现代强烈活动的深部断裂(块)作用结果,即其深部似不存在孕育和发生强震的构造条件  相似文献   

14.
Xianshuihe Fault, a main strong earthquake activity belt in southwest China, begins from Ganzi in the northwest, passes through Luhuo, Daofu, and Kangding, and then extents along the Dadu River valley. The fault is divided into two parts at Shimian, one part turns to south and converses to Anninghe Fault extending further to south, the other part, continuing to extend to southeast, cutting through Xiaoxiangling and then changing to Daliangshan Faults in the north of the Yuexi Basin, has the length of about 400km. Since 1700AD, there have happened 22 earthquakes larger than magnitude 6.0 and 8 earthquakes larger than magnitude 7.0. In this paper, we systematically collated and computed the gravity repetition measurement data along the Xianshuihe fault zone since 1988, and by referring to the anomaly index of gravity field of the predecessor achievements, analyzed the spatial-temporal variation of the regional gravity field and the relation to the occurrence of ≥ MS5.0 earthquakes. The mechanism of the regional gravity changes is further studied, and also the implication of strong earthquake risk because of the dynamic variation of gravity field in the near future is discussed.The results show that:1)The mobile gravity observation has the ability to detect crustal activity and MS ≥ 5.0 earthquake events. 2)There is definite correspondence between interannual gravitational field change and the 8 earthquakes among the 13 MS ≥ 5.0 earthquakes occurring in the surveying area since 1988, which can be determined according to the change of interannual gravitational field. Three M ≥ 6.0 earthquakes occurred 3~4 years after the abnormal image was developed, 4 earthquakes that occurred in the region of no data available were not determined. 3)A significant feature of the spatial-temporal variation of the regional gravity is a north-south run-through image before 2004, and characterized by the alternatively positive or negative variation in different year, the earthquakes of MS ≥ 5.0 occurring in this period were not distributed along the fault. Gravity variation magnitude indicates that there were two similar crustal material movement waves before 2004, corresponding to the course of earthquake space-time distribution from strong to weak in the study area. After 2010, the variation image shows that the local positive and negative zones are concurrent within a year, different from the image before 2004, and earthquakes of MS ≥ 5.0 basically occurred on the fault. It is believed that the variation of gravity field since 1988 and the seismic distribution fit with the geodynamic mode of strong and weak stages of the northeast motion of Indian plate. According to the conclusion we can try to optimize gravity anomaly index. After the Kangding earthquake in 2014, the north segment of Moxi Fault was still subject to negative high value changes till 2017 and then the gravity variation was further developed to a four quadrant distribution image. Based on the analysis of this paper and the previous variation trend of gravity field, we believe that the north segment of Moxi Fault has the background of medium-long term, strong or large earthquake risk.  相似文献   

15.
山西断陷带地热分布的某些特征   总被引:1,自引:0,他引:1  
利用山西断陷带的大地热流、地温梯度和温泉分布的资料,研究了地热分布与重力场、地壳深部构造和地震分布的关系。认为,区域性重力负异常多反映的是沉积盆地或凹陷;而在温泉附近,由于地壳深部高密度的熔融物质沿断裂上涌而形成重力正异常;在同一深度上,地壳和岩石圈薄的断陷盆地内部,其热流和温度都为高值;指出山西断陷带内的构造活动性、壳幔突变带、重磁力等值线密集带、大地热流和地温梯度高值区以及温泉密集分布带与地震活动之间都有着内在的联系。  相似文献   

16.
To research the faults distribution and deep structures in the southern segment of Tan-Lu fault zone(TLFZ) and its adjacent area, this paper collects the Bouguer gravity data and makes separation by the multi-scale wavelet analysis method to analyze the crustal transverse structure of different depths. Meanwhile Moho interface is inversed by Parker variable density model. Research indicates that the southern segment of TLFZ behaves as a NNE-directed large-scale regional field gravity gradient zone, which separates the west North China-Dabie orogen block and the east Yangtze block, cutting the whole crust and lithosphere mantle. There are quite differences of density structures and tectonic features between both sides of this gradient belt. The sedimentary and upper crustal density structure is complex. The two east branches of TLFZ behave as linear gravity anomalous belt throughout the region, whereas the two west branches of TLFZ continue to extend after truncating the EW-trending gravity anomaly body. The lower crustal density structure is relatively simple. TLFZ behaves as a broad and gentle low abnormal belt, which reflects the Cretaceous-Paleogene extension environment caused graben structure. The two west branches of TLFZ, running through Hefei city, extend southward along the west margin of Feidong depression and pinch out in Shucheng area due to the high density trap occlusions in the south of Shucheng. The Feizhong Fault, Liu'an-Hefei Fault, and Feixi-Hanbaidu Fault intersect the two west branch faults of TLFZ without extending to the east. Recent epicenters are mainly located in conversion zones between the high-density and the low-density anomaly, especially in TLFZ and the junction of the faults, where earthquakes frequently occurred in the upper and middle crust. As strong earthquakes rarely occur in the southern segment of TLFZ, considering its deep feature of abrupt change of the Moho and intersections with many EW-trending faults, the hazard of strong earthquake cannot be ignored.  相似文献   

17.
从构造单元,活动断裂,地球物理场,海底地形等方面分析了1994年9月16日台湾海峡7.3级地震发生的构造环境。研究认为,地震发生在陆壳向过渡壳变化的位置上。历史上地震活动沿深部构造变异带分布,该区地质构造,震源深度,地震类型,地震波特性等都有别于海峡中,北部,具有南海系的特征。  相似文献   

18.
Northwest Guangxi is located in the Youjiang fold belt and the Hunan-Guangxi fold belt of secondary structure unit of South China fold system. The South China fold was miogeosyncline in the early Paleozoic, the Caledonian fold returned and transformed into the standard platform, and the Indosinian movement ended the Marine sedimentary history, which laid the basic structural framework of this area. Since the neotectonic period, large areas have been uplifted intermittently in the region and Quaternary denudation and planation planes and some faulted basins have been developed. Affected by the strong uplift of Yunnan-Guizhou plateau, the topography of the region subsides from northwest to southeast, with strong terrain cutting and deep valley incision. Paleozoic carbonate rocks and Mesozoic clastic rocks are mainly exposed on the earth's surface, and its geomorphology is dominated by corrosion and erosion landforms. The dating results show that most of the structures in northwest Guangxi are middle Pleistocene active faults, and the movement mode is mainly stick-slip. According to the seismogeological research results of the eastern part of the Chinese mainland, the active faults of the middle Pleistocene have the structural conditions for generating earthquakes of about magnitude 6. In the northwest Guangxi, the crustal dynamic environment and geological structure are closely related to Sichuan and Yunnan regions. Under the situation that magnitude 6 earthquakes occurred successively in Sichuan and Yunnan region and magnitude 7 earthquakes are poised to happen, the risk of moderately strong earthquakes in the northwest Guangxi region cannot be ignored. Based on the analysis of deep structure and geophysical field characteristics, it is concluded that the Tian'e-Nandan-Huanjiang area in the northwestern Guangxi is not only the area with strong variation of the Moho surface isobath, but also the ML3.0 seismic gap since September 2015, and the abnormal low b value area along the main fault. Regions with these deep structural features often have the conditions for moderately strong earthquakes. The paper systematically analyzes the spatial and temporal distribution features and mechanism of regional gravitational field and horizontal crust movement and further studies and discusses the changes of regional gravitational field, crustal horizontal deformation and interaction between geologic structure and seismic activity based on 2014-2018 mobile gravity measurements and 2015-2017 GPS observation data in the northwestern Guangxi. The results show that:1)On July 15, 2017, a MS4.0 earthquake in Nandan happened near the center of four quadrants of changes of gravity difference, and the center of abnormal area is located at the intersection of the Mulun-Donglang-Luolou Fault, the Hechi-Nandan Fault and the Hechi-Yizhou Fault. The dynamic graph of differential scale gravitational field reflects the gravity changes at the epicenter before and after the Nandan earthquake, which is a process of system evolution of "local gravity anomaly to abnormal four-quadrant distribution features → to earthquake occurring at the turning point of gravity gradient zone and the zero line to backward recovery variation after earthquake". Meanwhile, according to the interpretation of focal mechanism of the Nandan earthquake, seismogram and analysis of seismic survey results, the paper thinks that the four-quadrant distribution of positive and negative gravity, which is consistent with the effect of strike-slip type seismogenic fault before Nandan earthquake, demonstrates the existence of dextral strike-slip faulting; 2)The pattern of spatial distribution of gravitational field change in northwestern Guangxi is closely related to active fault. The isoline of cumulative gravity generally distributes along Nandan-Hechi Fault and Hechi-Yizhou Fault. The gravity on both sides of the fault zone is different greatly, and gradient zone has influences on a broad area; the spatial distribution of deformation field is generally featured by horizontal nonuniformity. Tian'e-Nandan-Huanjiang area is located at the high gradient zone of gravity changes and the horizontal deformation surface compressional transition zone, as well as near the intersection of Hechi-Yizhou Fault, Hechi-Nandan Fault and Du'an-Mashan Fault; 3)The geometric shape of gravitational field in northwestern Guangxi corresponds to the spatial distribution of horizontal crustal movement, which proves the exchange and dynamic action of material and energy in the region that cause the change and structural deformation of fault materials and the corresponding gravity change on earth's surface. The recent analysis of abnormal crustal deformation in northwestern Guangxi shows that Tian'e-Nandan-Huanjiang is a gradient zone of abnormal gravity change and also a horizontal deformation surface compressional transition zone. It locates at the section of significant change of Moho isobaths, the seismicity gap formed by ML3.0 earthquakes and the abnormal low b-value zone. According to comprehensive analysis, the region has the risk of moderately strong earthquake.  相似文献   

19.
2003年民乐MS6.1级地震前的重力变化研究   总被引:5,自引:1,他引:4  
以河西地区的流动重力监测资料为基础,分析了2003年10月25日民乐Ms6.1级地震前的重力场变化,认为在空间分布上,地震发生前观测区出现了区域性的重力异常变化及与构造活动断裂走向基本一致的重力变化高梯度带,并在震中或邻区产生局部重力变化异常区。在时间序列上,地震发生前,重力段差和重力测点先是增强,然后反向减弱,并在反向过程中发震。  相似文献   

20.
青藏块体北缘跨断层测量资料宏观分析   总被引:1,自引:1,他引:1  
赵振考  陈兵 《中国地震》1996,12(4):358-366
本文在系统整理青藏块体北缘跨断层测量资料的基础上,进行了形变类型的划分,探讨了不同类型形变所反映的断层运动性能。  相似文献   

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