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1.
断层形变的应变强度比动态图像与震例综合研究   总被引:5,自引:0,他引:5  
探索由跨断层水准和基线资料提取应变强度比(趋势因子SRT及压性因子SRC),并借助最小二乘配置获得其域连续变化的动态图像的方法。利用中国西部甘宁青及川滇地区80年代后期至2000年7月的最新跨断层形变资料,运用该方法获得了研究的应变强度比动态演化特征。结合姚安(Ms6.5) 、景泰(Ms5.9)等震例进行综合研究,给出了中短期强震危险区动态图像预报的判定依据。  相似文献   

2.
川滇地区应变强度比动态图像分析   总被引:5,自引:0,他引:5  
利用从跨断层形变资料中获取应变强度比动态图像的方法,结合震例对川滇地区80年代以来跨断层形变资料选择方法不同所获得的应变强度比分布动态图像的2种结果进行分析,并给出中短期强震危险区判定指标  相似文献   

3.
利用从区域精密水准重复测量资料中分离提取区域性垂直应变率与跨断层形变观测相配合生成的动态图像方法,分析了发生于滇西和祁连山-河西地形变监测区及附近的丽江(Ms7.0)、门源(Ms6.4)等中强以上过程中的区域垂直应变率动态演化特征;在此基础上,对孕震过程区域垂直应变率动态信息的时空非均匀性与应变能积累状况的研究探讨,提出了一些根据区域垂直应变率动态信息判定中短期强震危险区的判据。  相似文献   

4.
民乐-山丹地震的区域构造变形背景与中短期前兆   总被引:9,自引:1,他引:9  
利用青藏块体北缘地区2001~2003年GPS水平运动资料和1988—2003年跨断层短水准流动观测资料,借助改进的负位错模型及断层形变应变强度比一时变曲线,研究了与2003年10月25日民乐-山丹Ms6.1,Ms5.8地震孕育有关的区域构造变形背景与中短期前兆异常。分析表明,在昆仑山Ms8.1大震引起的大区域形变调整-短期松弛-开始恢复的背景下,民乐-山丹地震震源位于可能反映应变能积累加速的块体边界压性锁定段之间的剪应力强度增强段北侧;距震中最近的石灰窑口跨断层短水准流动场地在震前3个月呈现显著应变强度比异常,而震前10余天至数月内整个监测区异常个数、震前3个月相对近源区异常集中与局部增强均是对这两次地震的某种预示。  相似文献   

5.
借助最小二乘配置整体解算地壳视应变场   总被引:31,自引:4,他引:27  
研究利用多手段(GPS、跨断层等)形变资料,结合定点应变数据解算地壳视应变场的方法,包括利用间接平差法求单元内部的均匀视应变及借助最小二乘配置求水平视应变连续分布。对华北地区GPS监测网1992年、1995年和1996年3期成果进行计算分析,得到其视应变场动态图像。  相似文献   

6.
根据建立的数学模型,对山西地区跨断层观测资料进行整理计算,得到断层形变速率、异常强度值、异常强度等值线和区域性异常变化的时序曲线,并根据断层形变异常强度值及时空演化等特征,结合山西地区中、强地震,研究断层形变异常强度与地震的关系,发现在山西地区发生MS≥4.0地震前1年左右或稍长时间,断层形变异常强度均出现强烈异常,表现为R5,可以作为中、强地震孕育发生的前兆标志。  相似文献   

7.
李媛  刘希康  刘峡  周伟  杜雪松  张立成 《地震》2017,37(2):106-114
基于青藏高原东北缘地区跨断层短水准资料, 采用形变异常强度、 断层合成速率和断层形变趋势累积等多种研究方法, 利用“点-线-面”相结合的研究思路, 全面分析了2013年岷县漳县MS6.6地震前的应变背景、 断层活动和短期形变特征。 结果显示: ① 该地震处于垂直形变累积率的高值区, 应变积累程度较高; ② 断裂带之间存在显著的运动差异, 发震断裂震前中短期运动速率显著增强, 并造成区域运动的不均衡, 西秦岭局部地区应变积累增加; ③ 随着强震的逼近, 震前显著异常场地分布明显向近震区迁移和集中, 且异常强度也随之增大。 以上结果对强震发生危险地点和发生时间有短期指示意义, 因此, “点-线-面”相结合的研究方法有利于认识地震前兆信息, 对地震孕育背景判定及地震危险性分析具有重要意义。  相似文献   

8.
景泰5.9级地震的断层形变异常及中短期预报   总被引:10,自引:0,他引:10       下载免费PDF全文
初步研究了2000年6月6日甘肃景泰5.9级地震蕴育过程中近源区及外围地区断层形变异常的时空分布特征:震前断层形变异常分布范围广、异常形态复杂,断层形变(应变)类信息指标图象异常区明显.不同地域断层形变异常形态及幅度存在显著差异,与异常所处的构造部位密切相关:海原断裂带西段出现的,,相断层形变异常,显示了近源区断层运动由准线性走向非线性的过程,与断层形变(应变)类信息指标高值异常区相配合,反映蕴震区应变积累程度高;而构造汇聚部位的六盘山断裂带等远场区较大幅度的突跳尖点异常,并不反映所在地的应变积累,而可能是蕴震过程区域构造应力场增强的一个标志.在此基础上,结合对景泰5.9级地震中短期预报经验教训的初步总结,研究和探讨了断层形变异常在震情判定中的应用.   相似文献   

9.
用DDA模拟华北地区的无震断层滑动和断块形变   总被引:6,自引:0,他引:6  
华北地区的地质构造具有典型的断块系统特征。用非连续形变分析(DDA)方法模拟了该地区的长期形变,包括无震断层滑动和断块形变。通过模拟我们发现:(1)断层沿不同方向的滑动通常与ENE-WSW向的区域构造挤压一致。(2)如果沿主要活动断层的平均无震滑动速度与跨断层大地测量观测的结果一样是每年零点几毫米的量级,那么断块内的典型应变速率是10^-8/a或更小量级,所以一些小区域的观测报告所得的应变率10^-6/a就不能代表该地区的形变速率。(3)对一条断层,由相邻断块内刚体旋转引起的断层滑动方向可能与区域构造挤压引起的滑动方向相反。但由于由构造挤压引起的滑动量级远大于由断块旋转引起的断层滑动,因此,一般来讲,断层滑动图像总体上与这一地区构造挤压方向一致,也就是说,由区域挤压引起的滑动控制了整个滑动情况。(4)根据(3),某些观测到的与ENE构造挤压方向相反的滑动可能是由某些更为局部化的因素引起的,没有构造意义。  相似文献   

10.
对北天山地区2016年12月8日呼图壁M_S6.2地震周边300 km范围内跨断层精密水准资料进行分析,运用二倍均方差对异常进行判定,计算出2012~2016年断层的趋势累积率Dc,认为地震前存在着一定范围的应力积累、加速运动、尖点突跳等中短期前兆异常,地震发生在形变异常显著及断层形变趋势累积率高值区域。  相似文献   

11.
IntroductionOn June 6, 2000, an earthquake of MS=5.9 occurred in Jingtai county, Gansu Province. The epicenter (37.1(N, 104.0(E) was located in Maomaoshan-Laohushan zone of the western segment of Liupanshan-Haiyuan fault along the northeastern margin of Qinghai-Xizang Plateau, where is the middle-eastern part of crustal deformation monitoring area of Gansu-Ningxia- Qinghai region. There are more than 50 spanning-fault mobile monitoring sites in the earthquake area and its vicinity (Fig…  相似文献   

12.
为了研究与总结2008年5月12日汶川8.0级地震前GPS与跨断层资料反映的龙门山断裂带及其周边地区的运动、构造变形、应变积累演化过程,以及汶川地震临震阶段可能的物理机制,本文综合1999~2007期GPS速度场、1999~2008年大尺度GPS基线时间序列、1985~2008年跨断层短水准等资料进行了相关分析与讨论。结果表明:(1)GPS速度剖面结果显示,宽达500km的川西高原在震前有明显的连续变形,而四川盆地一侧和跨龙门山断裂带基本没有变形趋势,表明震前川西高原在持续不断地为已经处于闭锁状态的龙门山断裂带提供能量积累。(2)GPS应变率结果显示,震前龙门山断裂带中北段的NW侧EW向挤压变形明显,变形幅度从远离断裂带较大到靠近断裂带逐渐减小,而断裂带变形微弱;龙门山断裂带西南段周边形成了显著的EW向挤压应变集中区,应变积累速率明显大于中北段。(3)断层闭锁程度反演结果显示,除了汶川地震的震源位置闭锁相对较弱,且西南段有大概20km宽度断层在12~22.5km深度为蠕滑状态以外,震前整条龙门山断裂基本处于强闭锁状态。(4)大尺度GPS基线结果显示,跨南北地震带区域的NE向基线从2005年开始普遍出现压缩转折,反映NE向地壳缩短的相对运动增强。(5)跨断层短水准场地结果显示,震前年均垂直变化速率和形变累积率很低,表明断层近场垂向活动很弱、闭锁较强。通过以上分析认为,在相对小尺度的地壳变形中,震前龙门山断裂带深浅部均处于强闭锁状态,断裂带水平与垂直变形都很微弱,这可能经历了一个缓慢的过程,而且越是临近地震的发生,微弱变形的范围可能越大;在相对大尺度的地壳变形中,震前龙门山断裂带西侧的巴颜喀拉块体东部地区经历了地壳缓慢且持续的缩短挤压变形,为龙门山断裂带应变积累持续提供了动力支持。  相似文献   

13.
基于强震前主破裂潜在变化过程中产生的地壳形变异常及伴随地壳形变而产生的地下水化学前兆现象随时间变化显示出的动态异常,依据河北怀来地震台形变、地下流体观测资料,研究了1998年河北张北M6.2地震前地形变、地下流体异常特性及同步性,认为其有由短期向临震演化的不同阶段的群体演化特征。形变异常早于流体异常出现,临震异常集中,反映明显。断层气CO2、水汞体应变异常同时在震前2个月出现,显示出异常的集中性、同步性。  相似文献   

14.
Based on GPS velocity during 1999-2007, GPS baseline time series on large scale during 1999-2008 and cross-fault leveling data during 1985-2008, the paper makes some analysis and discussion to study and summarize the movement, tectonic deformation and strain accumulation evolution characteristics of the Longmenshan fault and the surrounding area before the MS8.0 Wenchuan earthquake, as well as the possible physical mechanism late in the seismic cycle of the Wenchuan earthquake. Multiple results indicate that:GPS velocity profiles show that obvious continuous deformation across the eastern Qinghai-Tibetan Plateau before the earthquake was distributed across a zone at least 500km wide, while there was little deformation in Sichuan Basin and Longmenshan fault zone, which means that the eastern Qinghai-Tibetan Plateau provides energy accumulation for locked Longmenshan fault zone continuously. GPS strain rates show that the east-west compression deformation was larger in the northwest of the mid-northern segment of the Longmenshan fault zone, and deformation amplitude decreased gradually from far field to near fault zone, and there was little deformation in fault zone. The east-west compression deformation was significant surrounding the southwestern segment of the Longmenshan fault zone, and strain accumulation rate was larger than that of mid-northern segment. Fault locking indicates nearly whole Longmenshan fault was locked before the earthquake except the source of the earthquake which was weakly locked, and a 20km width patch in southwestern segment between 12km to 22.5km depth was in creeping state. GPS baseline time series in northeast direction on large scale became compressive generally from 2005 in the North-South Seismic Belt, which reflects that relative compression deformation enhances. The cross-fault leveling data show that annual vertical change rate and deformation trend accumulation rate in the Longmenshan fault zone were little, which indicates that vertical activity near the fault was very weak and the fault was tightly locked. According to analyses of GPS and cross-fault leveling data before the Wenchuan earthquake, we consider that the Longmenshan fault is tightly locked from the surface to the deep, and the horizontal and vertical deformation are weak surrounding the fault in relatively small-scale crustal deformation. The process of weak deformation may be slow, and weak deformation area may be larger when large earthquake is coming. Continuous and slow compression deformation across eastern Qinghai-Tibetan Plateau before the earthquake provides dynamic support for strain accumulation in the Longmenshan fault zone in relative large-scale crustal deformation.  相似文献   

15.
华北地区断层形变异常与地震活动   总被引:2,自引:0,他引:2  
根据断层形变求解的华北地区异常参数和应变累积率, 研究了华北主要断裂带的断层形变异常及其应震特征。 同一断裂带上的形变异常与该带上的地震有较好的对应性。 河套—张家口—蓬莱活动构造带上发生的强震, 北京地区的断层形变异常参数在总体上几乎都有明显的前兆性异常。 山西带北部的断层形变异常参数对山西断陷带及其延伸部位上的强震同样有较好的反映。 断层应变累积率反映了应力的积累程度, 其值相对较大时, 测点所在地区的地震较活跃, 反之亦然。  相似文献   

16.
Based on the GPS velocity field data of 1999-2007 and 2011-2013,we used the least squares configuration method and GPS velocity profile results to synthetically analyze the dynamic evolution characteristics of crustal deformation in the Yunnan area before and after the Wenchuan earthquake. The dynamic evolution of GPS velocity field shows that the direction is gradually changed from the south in the southern part of the Sichuan-Yunnan block to the south-west in the southern Yunnan block and there is a clear relative motion characteristic near the block boundary fault zone. Compared with the GPS velocity of 1999-2007, the results of 2011-2013 also reflect segmental deformation characteristics of the block boundary fault zone. Southeast movement shows a significant increase, which may be related to crustal deformation adjustment after the Wenchuan earthquake. The dynamic evolution of strain parameters shows a pattern of "extension in the middle and compression at both ends" in the whole area and the distribution of deformation (shear, extension or compression) is closely related to the background motion and deformation characteristics of the main fault zone. Compared with the results of the period of 1999-2007, the extensional deformation zone of 2011-2013 is expanded eastward and southward. The compressional deformation of the eastern boundary (the Xiaojiang fault zone) of the Sichuan-Yunnan block is no longer significant, which is mainly concentrated in the northern section of the Xiaojiang fault zone and may be related to the post-seismic deformation adjustment of the Wenchuan earthquake. The GPS velocity profile results show that the left-lateral slip velocity of the Xiaojiang fault zone reduced gradually from north to south (10mm/a-5mm/a), and the width of the northern section is wider. The right-lateral slip rate of the Honghe fault zone is about 4mm/a, and the deformation width is wider. The dynamic results show that the Wenchuan earthquake has little effect on the deformation modes of these two fault zones.  相似文献   

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