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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.
本文应用归一化变化速率(NVRM)方法,研究了2017年九寨沟M_S7.0地震周边800km范围内25个地电阻率台站2012—2018年的连续观测数据,分析了震中区周围的地电阻率时、空演化过程.结果显示:(1)25个台站中共有14个台站在震前出现了地电阻率变化,结合本次地震震源机制等分析其时空变化,认为邻近地震破裂带的临夏、通渭、武都和宝鸡台地电阻率在震前出现了下降—折返回升型的变化,符合前人已总结的强地震前地电阻率的变化过程.(2)地震发生前震中区周围大区域内出现了地电阻率负异常变化,且以震中区为中心呈条带分布,异常区的长轴方向与地震断裂带走向或地震烈度分布的长轴方向几乎垂直,与地震主压应力轴方向吻合.本文认为九寨沟M_S7.0强震发生之前,震中区周围出现的区域性地电阻率异常空间丛集现象是很好的中期和短临前兆;地电阻率震前异常动态演化、各向异性等特征对认识本次强震发震断层活动以及震源区应力场分布有启示意义.  相似文献   

3.
利用晋蒙重力测网2007—2009年的流动重力资料,研究了原平4.2级地震前的重力场变化特征。结果表明,以4.2级地震震中为界,流动重力呈现出东西向的负条带异常,而南部、北部均上升(正异常)的特征,震中附近的大部分测点点值在震前均出现上升—下降—恢复的变化特征,地震发生在重力恢复阶段。在远离震中区的内蒙重力测网并没有出现上述重力场变化特征。  相似文献   

4.
地震孕育过程中的地表重力值会发生相应的变化,利用四川地区2018年3月—2022年4月的流动重力观测数据得到重力场等值线变化图,研究2022年芦山6.1级地震和马尔康6.0级地震前的重力变化特征。结果表明:(1)芦山6.1级地震和马尔康6.0级地震震前约一年半进入重力变化显著时期;(2)芦山6.1级地震对马尔康6.0级地震的发生有促进作用;(3)芦山6.1级地震和马尔康6.0级地震前震区重力变化等值线出现类似于四象限区域的分布特征,显示该处应力高度集中;(4)芦山6.1级地震和马尔康6.0级地震震中区处于零值线附近且零值线在此处转折弧度较大,是构造带易发震的薄弱位置。  相似文献   

5.
利用青藏高原地区2015—2020年期间流动重力观测资料,研究2021年3月19日比如6.1级地震前重力变化特征,结果表明:①本次地震前约3年的重力图像中出现穿过震中区的SN向重力变化梯度带,其形态和持续时间与现有典型指标一致,表明重力变化较为清晰地反映了本次地震孕育过程中所引起的重力异常信号;②实测重力场变化与正断型断层位错引起的重力变化在形态上基本一致,结合本次比如6.1级地震的震源机制以正断为主,推测羌塘块体EW向拉伸运动为本次地震的发震背景。  相似文献   

6.
强地震前兆异常特征与深部流体作用探讨   总被引:13,自引:3,他引:10  
杜建国  康春丽 《地震》2000,20(3):95-101
根据华北几次强震前后地下流体和重力异常特征,结合大地测深资料探讨了地震发生前后深部介质的变化和地壳浅层应力场变化特征。地震发生前震中区地下水位异常主要表现为下降型,气体异常呈上升型,重力和形变也出现异常;在外围地区地震前地下水位异常以上升型为主。 海城地震和大同–阳高地震前地下水位上升、下降异常有方向性分布的趋势,呈 X 形分布,这意味着地壳浅层应力场是压扭型的,并存在垂向应力的作用。在孕震过程中,地球深部流体向上运移,使得震源区及其附近的岩石膨胀、密度降低,震中区地壳浅层应力场呈拉张型,造成地下水储容积增大,地下水位出现了下降型异常。 在特定的构造单元内,地下流体、重力异常的空间分布特征能较好地反映地球深部物质运动和地壳浅层应力场特征。  相似文献   

7.
绘制了河北省文霸网流动重力测值的时序变化曲线和空间等值线,从动态的角度分析了观测对网区及周边地震的反应.重力异常呈现下列特征:震前异常持续时间约2年左右,变化量值在几十微伽;异常主要形态表现为持续下降,震前转折;邢台5.4级地震和文安5.1级地震前网区重力场均出现了显著的、连续的高值异常区;网区内的文安5.1级地震的震中位于重力变化零等值线附近的高梯度带上.  相似文献   

8.
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   

9.
1966年云南东川6.5级地震的热异常时空结构分析   总被引:4,自引:0,他引:4  
本文分析了1966年云南东川6.5级地震前后浅层地温异常的时空结构及降水异常的水平结构。分析表明,震前数月浅层地温稳定维持正异常,发震前一个月激剧增温,发震当月达最大,震后降低;震前震中区为负地温距平区,随发震时刻临近,负距平区迅速演变为正距平区,而且强度和面积都不断增大,至发震时达最大,震后不断减小;热异常是从深层传向地表的;震中区震前为旱区,震后为涝区。本文还讨论了震源处热信息传到地表的条件和可能机制,认为在水热活动异常的断裂带上,至少对于浅源地震,对流传热是一种较为可能的传热机制。  相似文献   

10.
利用晋蒙重力测网2007—2009年的流动重力资料,研究了原平4.2级地震前的重力场变化特征。结果表明,以4.2级地震震中为界,流动重力呈现出东西向的负条带异常,而南部、北部均上升(正异常)的特征,震中附近的大部分测点点值在震前均出现上升—下降—恢复的变化特征,地震发生在重力恢复阶段。在远离震中区的内蒙重力测网并没有出现上述重力场变化特征。  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.
利用GPS TEC和法国DEMETER卫星ISL探测器的观测数据,分析了汶川地震前电离层变化.结果表明,电离层TEC在5月6-10日地方时下午有连续的负异常现象,5月9日地方时下午有明显的正异常现象.电离层TEC异常的范围主要位于震中南部区域,EW方向上1 100 ~1 670km,SN方向上1 600 ~3 700km.5月6日的负异常偏震中东南,5月7日的负异常偏震中西南,5月9日的正异常偏震中东南.震中西南和南部地区负异常较东南地区明显,震中南部和东南地区正异常程度较西南地区偏高,震中位置所对应南半球磁力线共轭区都出现了一定程度的正或负扰动.DEMETER卫星观测的电子密度Ne和离子密度N.在5月6-10日也出现了明显的负异常,异常分布与电离层TEC异常分布较为一致,主要集中在震中南部.震中所在的经度带上存在2个负异常峰值,且在纬度上关于地磁赤道对称.最后在上述异常的基础上,对基于岩石圈-大气层-电离层耦合的地震电离层异常机理开展了初步讨论.  相似文献   

13.
依据EIGEN-6C4重力模型和ETOPO1高程模型数据,围绕新疆精河6.6级地震展开岩石圈均衡与挠曲机理研究,得到如下结论:(1)震中附近的布格与自由空气重力异常分别为-221和-92mGal(10~(-5 )m·s~(-2)),震中位于重力异常高梯度带上;(2)震中周边地区地壳厚度约为50km,密度结构总体变化平缓,东西方向地壳厚度变化较小,但自南向北地壳厚度逐渐变薄,精河6.6级地震初始破裂发生在上中地壳分界面附近;(3)震中附近岩石圈承载的垂向构造应力为20MPa左右,震中位于岩石圈垂向构造应力极大值附近的高梯度带上;(4)地震周边地区岩石圈有效弹性厚度最优解为26km,加载比最优解为F_1=1,F_2=F_3=0,表明该区域岩石圈相对坚硬,且导致岩石圈变形的初始加载全部来自地表.  相似文献   

14.
This paper analyzes the characteristics of time sequence changes of gravity points near the epicenter, different changes of measuring lines and gravity changes of measuring areas in point-line-area manner respectively with the 5-period mobile gravity data through densified observation by the South Xinjiang Observation Network after the 2015-2016 Akto earthquake in Xinjiang. The gravity observation results before the earthquake indicate that the Wuqia-Bulungkol area near the epicenter presented the trend of gravity value increasing since 2015, but the gravity value decreased half a year before the earthquake, and witnessed a high gradient zone of gravity changes during some periods before the earthquake. The gravity observation results after the earthquake show that there is a trend of opposite changes in gravity difference on the northern and southern sides of Bulunkou, and good correspondence exists between the characteristics of gravity field changes near the epicenter before and after the earthquake and the geologic structure distribution in the area.  相似文献   

15.
AbstractThe relation between the gravity variation features and M_S=8.1 earthquake in Qinghai-Xizang monitoring area isanalyzed preliminarily,by using spatial dynamic variation results of regional gravity field from absolute gravityand relative gravity observation in 1998 and 2000.The results show that:1)M_S=8.1 earthquake in Kulun mountainpass western occurred in the gravity variation high gradient near gravity's high negative variation; 2)The maintectonic deformation and energy accumulation before M_S=8.1 earthquake are distributed at south side of theepicenter;3)The range of gravity’s high negative variation at east of the M_s=8.1 earthquake epicenter relativelycoincides with that rupture region according to field geology investigation; 4)Gravity variation distribution in highnegative value region is just consistent with the second shear strain’s high value region of strain field obtainedfrom GPS observation.  相似文献   

16.
利用新疆地区北疆测网2015~2017年观测的共4期流动重力资料,分析研究区半年、1年尺度重力变化特征,并采用小波分解方法,对2017年8月9日精河MS6.6地震前重力变化异常进行分解,分离了不同深度的重力异常。结果表明,震中附近的精河地区从2015年开始一直处于重力负值变化,同时,震中周围的重力正值变化集中区逐步向震中地区迁移,地震发生前震中以南60km处出现重力变化零值线,并且零值线两侧的重力累积变化量达到70μGal。小波分解后,4阶细节图较好地反映了精河地震前的重力异常,其与地震孕育发生有较好的对应性。  相似文献   

17.
The main rupture of Ludian MS6.5 earthquake is directed to the northwest, which occurred in the east of Xianshuihe-Xiaojiang fault zone. The epicenter is in the transitional zone of the Sichuan-Yunnan block and the South China block, where there are many slip and nappe structures. Some controversy still remains on the earthquake tectonic environment. So, Bouguer gravity anomalies calculated by EGM2008 were broken down into 1-5 ranks using the way of Discrete Wavelet Transform(DWT), then we get the lateral heterogeneity in different depths of the crust. The distribution characteristics of Bouguer gravity anomaly are analyzed using measured gravity profile data. We also get its normalized full gradient(NFG)picture, and study the differences between different depths in crust. The results show that: (1)the characteristic of Buoguer gravity anomaly in southwest to northeast is high-low-high between the Lianfeng Fault(LFF)and Zhaotong-Ludian Fault(ZLF). The mainshock and aftershocks are distributed in the middle of the low-value zone, which means that the east moving materials of Qinghai-Tibet plateau broke through the southern section of Lianfeng Fault(LFF), moving along the Baogunao-Xiaohe zone(low-value belt)to the southeast, stopped by the Zhaotong-Ludian Fault(ZLF), and then earthquake occurred.(2)The third-order discrete wavelet transform(DWT)details show that: there is a good consistency between the negative gravity anomaly in upper crust and the distribution of major faults, which reflects that the rupture caused by the movements of the faults in crust has reduced gravity anomaly. There is a NW-trending negative anomaly belt near the epicenter, which may has some relationship to the southward development of the Daliangshan Fault(DLSF). So we speculate that the southward movement of Daliangshan Fault is the main direct force source of Ludian earthquake.(3)In the picture of the fourth-order DWT details, there is an obvious positive gravity anomaly under the epicenter of Ludian earthquake, which confirms the presence of a high-density body in the middle crust. While the fifth-order DWT details show that: A positive anomaly belt is below the epicenter too, which may be caused by mantle material intruding to the lower crust. Tensile force in crust caused by mantle uplift and extrusion-torsion force caused by Indian plate push are the main force source in the tensile and strike slip movement of the Ludian earthquake.(4)The normalized total gradient of Bouguer gravity anomalies of Huili-Ludian-Zhaotong profile shows that: there is obvious ‘deformation’ in the Xiaojiang fault zone which dips to the east and controls the local crust movement. There is a local ‘constant body’ at the bottom of the epicenter. The stable constant body in density has limiting effects to the earthquake rupture, which is the reason that the earthquake rupture' scale in strike and in depth are limited.(5)The ability of earthquake preparation in Zhaotong-Ludian Fault is lower than the Xianshuihe-Xiaojiang fault zone, and the maximum earthquake capacity in this area should be around magnitude 7.  相似文献   

18.
云南地区近期强震重复发生时地震学的动态演化特征   总被引:3,自引:0,他引:3  
蔡静观  张喜玲 《地震研究》1997,20(4):357-364
通过地强震重复发生的滇西北、滇东北、滇西南澜沧江以西3个地震区多项地震活动性和地震波参数的动态追踪,发现在同一地震区重复发生的强震,震前的异常形态可以具有相惟性,反向变化的特征。如滇东北地区中小地震在1985年禄劝强震前的活跃和1995年武定强震前的平静;澜沧地震叶波速比月均值在1988年澜沧--耿马大震前的低值异常和1995年孟连西中缅边境大震前的高值异常。本同时以b值和波速比为例,讨论了强震  相似文献   

19.
利用北天山地区2016~2019年观测的4期流动重力观测资料,分析研究一年尺度的重力场动态变化特征,并利用小波分析方法,将不同场源深度的重力异常进行分离。通过功率谱分析,获取各阶小波重力细节对应的场源深度。研究结果表明,2017年8月9日精河MS6.6地震前,震中位于负值集中区,四阶小波重力细节显示震中附近出现明显的四象限分布;2020年1月16日库车MS5.6地震前,震中位于负值区,小波重力细节整体量值较小;功率谱估算的场源近似深度与2次地震的震源深度相近。  相似文献   

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