首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 140 毫秒
1.
向志勇  沈军  李军  吴传勇 《内陆地震》2009,23(2):215-225
乌鲁木齐市雅玛里克断裂是博格达弧形构造第二排断裂的西翼尾段部分.断裂从乌鲁木齐市中部通过,基本由两条断层构成,断裂构造地貌明显,断裂带的宽度可达百余米.通过该断裂错动第四纪地层和变动地貌面的反复勘察,大量断层地质剖面的观察,与断层活动相关的第四纪堆积物的年代测定,经分析认为雅玛里克断裂最新活动时代具有"西老东新"空间变化特点.断裂活动时代大体分为3段:葛家沟以西至雅玛里克山西北麓,为中更新世晚期活动;葛家沟以东到铁厂沟,为晚更新世活动;铁厂沟以东为全新世活动.  相似文献   

2.
选用了浅层地震、地质雷达探测方法,同时结合微地貌测量、工程地质勘探、地基开挖验证等手段对乌鲁木齐南胡闹市区某超市工程场地及附近的活动断了探层进行测研究。研究结果确定了分布于该区的断层均属雅玛里克断裂带的次级断层,断层数目为5条.对这些断层活动性进行了评价,并对选用探测手段的适应性进行了初步分析和讨论.  相似文献   

3.
乌鲁木齐城市活断层发震构造模型初探   总被引:7,自引:0,他引:7  
沈军  宋和平  李军 《内陆地震》2007,21(3):193-204
根据地表活断层资料、深地震反射剖面资料、石油地震剖面资料、流动地震观测和小震精确定位资料,通过与北天山山前典型发震构造的对比及逆断裂-褶皱与推覆构造的基本结构特征,初步建立了乌鲁木齐目标区发震构造模型。乌鲁木齐目标区可分为2个主要的地震构造,它们均是逆冲推覆构造。西侧为北天山山前逆冲推覆构造,由根部逆断裂、中部滑脱面和前缘挤压褶皱隆起带组成,根部逆断裂及前缘挤压褶皱带上发育全新世活断层,滑脱构造具有自南向北扩展的特点,未来的7级强震可能发生在根部断裂附近,而前缘挤压褶皱隆起构造,即西山隆起及其相伴生的西山断层和王家沟断层组、九家湾断层组,不具备发生大于6.5级地震的条件。东侧为博格达弧形推覆构造的西翼,其发震构造也由根部逆断层、中部滑脱层和前缘挤压褶皱隆起带组成,推覆构造具有自南向北扩展的特点。现今的推覆体前缘为阜康南断裂和古牧地背斜。该推覆构造带内部的雅玛里克断层、白杨南沟断层、碗窑沟断层和八钢-石化断裂,不是全新世活动断层,不具备发生大于6.5级地震的条件。  相似文献   

4.
新疆古牧地断裂全新世的断错活动   总被引:5,自引:1,他引:4  
新疆古牧地断裂是一条全新世活动断裂,全新世以来有4 次明显的断错活动,历次活动的TL时间分别为11.03±0.89 kaB.P.,9.73±0.79 kaB.P.,8.32±0.67 kaB.P.和6.82±0.54~4.87±0.39 kaB.P.,断错活动间隔为1.3±0.1~2.0±0.15 ka。全新世时期累积垂直断距大于5.03m ,平均活动速率大于0.41 m m /a  相似文献   

5.
乌鲁木齐市区断层附近原地应力测量研究   总被引:3,自引:0,他引:3       下载免费PDF全文
利用水压致裂原地应力测试技术,在乌鲁木齐市区碗窑沟断裂东段、雅玛里克断裂东段和西山断裂带中、东段开展了断层附近原地应力测量研究,得到了地表浅部构造应力的大小、方向和分布特征。钻孔HFZK3位于碗窑沟断裂东段的南侧,孔深62.13m;钻孔HFZK5位于雅玛里克断裂东段的南侧,孔深30.00m;钻孔HFZK9和HFZK12都位于西山断裂带的中、东段,孔深分别为34m和54.5m。根据实测的地应力资料,断层附近最大水平主压应力方向为NE—NEE向,与区域构造应力SN—NNE向主压方向有一些差异,说明受断层活动影响,断层附近的应力状态与区域应力场明显不同。利用地应力实测资料研究了断层的活动性,在测量深度域内水平和垂直应力的关系为σH>σh>σV,该应力状态有利于逆断层活动,与地质资料反映的以逆断层活动为主基本一致。利用库仑摩擦滑动准则,摩擦强度取0.6~1.0进行分析,断层附近的现今地应力状态达到或超过产生逆断层摩擦滑动的临界值,表明测区现今构造活动以逆断层为主。研究区的3条断层不具备发生走滑断层活动的可能性,其中雅玛里克断裂东段、西山断裂带中段和东段具有发生逆断层活动的可能性,相比而言,西山断裂带中段危险性更大  相似文献   

6.
葛鸣  赵纯青 《内陆地震》2015,(2):134-140
雅玛里克断裂是博格达弧形构造中一条区域性断裂,为博格达弧前的古生界与中生界的分界。断裂西起雅玛里克山,向东经水磨沟、铁厂沟、三工河延伸到吉木萨尔以东,全长约100 km。断裂走向NE,倾向SE,倾角60~80°,运动性质复杂,局部为正断,局部为逆冲。以雅玛里克断裂西翼尾部七纺以西市区段的一条分支为目标区,选取适合本地区的观测系统和震源,建立浅层速度模型,获取了较为清晰的浅层人工地震时间剖面,并对其进行了地质解译,分辨出了第四系界线,断层上断点的埋深,对断层进行精定位。  相似文献   

7.
在地质调查与盆地区浅层人工地震初步勘探基础上,在西秦岭北缘断裂带漳县盆地隐伏段的盆地内布设了3条浅层人工地震详勘测线,用于精确定位该断层的空间展布,判定其浅地表活动特征。在此基础上,用钻孔联合剖面方法对人工地震探测结果进行验证,同时确定了各地震测线处断层上断点的位置和埋深,通过钻孔揭露断层错断地层的特点,认为西秦岭北缘断裂漳县盆地隐伏段错断全新统,指示该断层全新世以来活动性较强。  相似文献   

8.
冷龙岭活动断裂的滑动速率研究   总被引:20,自引:0,他引:20       下载免费PDF全文
根据对冷龙岭断裂重点地段的野外调查,研究了该断裂的几何特征及浮雕劝速率。结果表明:该断裂为一条全新世活动断层,由一组近于平行的次级断裂所组成。按总体特征可将该断裂分为3段,中更新世以来各时代的断裂平均滑动速率分别为:中更新世:2.14~4.64mm/a,晚更新世:2.86~4.07mm/a,全新世:3.35~4.62mm/a,全新世以来该断裂平均垂直滑动速率为0.38mm/a。  相似文献   

9.
西藏地区地壳活动强烈,活动断层发育,存在很大的地震灾害风险,因此查清活动断层的分布是一项重要工作。遥感解译是查明活动断层最有效的手段,其核心技术是正确把握活动断层的典型遥感影像特征。文中结合1︰100万全国地震构造图(西藏区)编制工作,利用高分辨率卫星遥感影像对西藏地区改则幅(I45)全新世活动断层的典型遥感影像特征进行了研究,确定了区内全新世活动断裂玛尔盖茶卡断裂、日干配错断裂、依布茶卡地堑、青蛙湖断裂、东查断裂、其香错断裂中段的空间展布。结合前人的研究成果及区域对比分析,讨论了区内全新世断裂的最新活动时代、活动性质和活动强度,以及区内活动断裂的整体构造运动特征和发震能力。研究区北部的玛尔盖茶卡断裂和南部的日干配错断裂、其香错断裂为较大规模的NEE向左旋走滑断裂,具备发生约7.5级地震的能力。中部还发育了NEE向依布茶卡地堑、青蛙湖断裂和NW向东查断裂这3条规模相对较小的全新世断层,具备发生约7级地震的能力。上述断裂反映了该区受到SN向挤压,形成“V”字形共轭系统,总体运动特征表现为块体向E挤出的动力环境。  相似文献   

10.
乌鲁木齐城市活断层探测与地震危险性评价主要成果简介   总被引:2,自引:0,他引:2  
沈军  宋和平 《地震地质》2008,30(1):273-288
以乌鲁木齐市建成区和规划区作为探测目标区,对区内的活动断层及其深部发震构造进行了系统的探测,对活动断层的危险性和危害性进行了初步评价。根据断层活动性鉴定,确定目标区内存在2组全新世活动断层,即王家沟断层组和九家湾断层组。前者为近EW向的北倾逆断层,后者为NE走向的北倾正断层。晚更新世活动断层为八钢-石化隐伏断层、西山断层、碗窑沟断层和白杨南沟断层。深部发震构造探测揭示出目标区所处的北天山山前薄皮推覆构造及其前缘逆断层-褶皱的清楚结构,结合流动地震观测和小震精确定位等,建立了目标区活动断层的发震构造模型。通过古地震探槽和地震活动性研究对目标区全新世活动断层和晚更新世活动断层的地震危险性进行了评价;并在此基础上对可能发生的直下型大地震所引起的强地震动进行了预测,对全新世活动断层可能产生的地表错动带和晚更新世活动断层可能引起的地表变形带进行了预测  相似文献   

11.
蔡仲琼  张元胜 《内陆地震》1991,5(4):296-304
在新疆首次应用气体地球化学方法探测乌鲁木齐地区的主要隐伏活动断层。查明了碱沟-雅玛里克山北麓水磨沟活动断层隐伏段的位置,并可划分为南支(二叠纪与三叠纪地层的分界线)与北支(三叠纪与侏罗纪地层的分界线)。认为有可能存在通过市区的北西-南东向隐伏活动断层,并给乌鲁木齐河顺河断层的存在提供了气体地球化学依据。根据断层气体释放强度的分析,认为六道湾-西山马料地-头屯河一带,可能是目前工作区内构造断裂的主要活动地带。由于该方法实用、简捷、价廉、效果良好、结果可靠,可在今后的工作中大力推广,但方法本身尚待进一步完善与提高。  相似文献   

12.
活断层地震地表破裂“避让带”宽度确定的依据与方法   总被引:44,自引:16,他引:28       下载免费PDF全文
基于不同类型活断层产生的地震地表破裂带宽度和跨断层探槽地质剖面的地层强变形带宽度等观测事实 ,结合地面建筑设施毁坏带与活断层密切的空间位置关系 ,采用统计分析方法 ,确定了活断层“避让带”宽度为 30m。各活断层更为准确的避让带宽度可通过分析跨断层探槽地质剖面上地层的变形特征加以验证或修订 ;活断层斜列阶区、平行次级断层围限区、走向弯曲区等特殊地域的避让带宽度为这些地域宽度与两外侧各 15m之和。建议有关部门进行活断层“避让带”立法与执法管理 ,并加强活断层鉴定及其地表活动线几何结构形态的准确定位工作 ,积极而有效地减轻地震灾害  相似文献   

13.
太行山山前断裂位于太行山脉与华北平原过渡地带,是华北及我国东部地区一条重要的构造带,有关该断裂带的活动性有以下观点:1)它属深大断裂带;2)它是活动断裂带和地震构造带;3)它不是地震构造带。。为研究和评价该断裂的活动性,利用最近获得的地震资料和钻探联合剖面研究了太行山山前断裂的深部构造背景和第四系以来的活动特征。钻探验证以及研究结果与表明:太行山山前断裂不是岩石圈深大断裂,该断裂在第四系仅错断了中更新世QP2早期,中更新世QP2晚期和晚更新世地层没有发生错断。由此得出,太行山山前断裂不是活动断裂,也不是岩石圈深大断裂。该研究结果为跨越太行山山前断裂的城市进行规划和建设提供了重要的地质和地球物理资料,对于首都圈地震危险性评价也具有十分重要的意义。  相似文献   

14.
万全断裂是洋河盆地北缘断裂带组成断裂之一,控制沿线构造活动及地貌发育。断裂走向NE,倾向SE,在沟口处隐伏于第四纪覆盖层,采用电阻率成像和浅层地震联合勘探方法,获得该断裂隐伏段落综合物探异常,结合地质地貌调查,判定隐伏段落展布的具体位置、产状、活动特征及地下结构特征等。研究结果表明,万全断裂隐伏段落走向NE,倾向SE,倾角约75°,上断点埋深约20 m,20—240 m深度可见断裂破碎带(宽约10—20 m)物探异常特征及断裂两侧地层结构差异。该联合探测模式可有效探测复杂地质构造条件下的隐伏活动断裂,具有较强实用性,值得推广。  相似文献   

15.
从顺义地表破裂带分析顺义-良乡断裂北段的活动性   总被引:7,自引:1,他引:6       下载免费PDF全文
胡平  罗华春  孟勇琦 《地震地质》2000,22(2):123-128
沿北京顺义 -良乡断裂北段存在地表破裂带。对这条破裂带进行了成因分析、野外调查、化探和槽探研究 ,认为该破裂带反映了顺义 -良乡断裂北段的现今活动性。今后应注意沿该段断裂的地震活动并在建设规划中充分考虑它对工程可能造成的灾害  相似文献   

16.
Tanlu fault zone is the largest strike-slip fault system in eastern China. Since it was discovered by aeromagnetics in 1960s, it has been widely concerned by scholars at home and abroad, and a lot of research has been done on its formation and evolution. At the same time, the Tanlu fault zone is also the main seismic structural zone in China, with an obvious characteristic of segmentation of seismicity. Major earthquakes are mostly concentrated in the Bohai section and Weifang-Jiashan section. For example, the largest earthquake occurring in the Bohai section is M7.4 earthquake, and the largest earthquake occurring in the Weifang-Jiashan section is M8.5 earthquake. Therefore, the research on the active structure of the Tanlu fault zone is mainly concentrated in these two sections. With the deepening of research, some scholars carried out a lot of research on the middle section of Tanlu fault zone, which is distributed in Shandong and northern Jiangsu Province, including five nearly parallel fault systems, i.e. Changyi-Dadian Fault(F1), Baifenzi-Fulaishan Fault(F2), Yishui-Tangtou Fault(F3), Tangwu-Gegou Fault(F4) and Anqiu-Juxian Fault(F5). They find that the faults F3 and F5 are still active since the late Quaternary. In recent years, we have got a further understanding of the geometric distribution, active age and active nature of Fault F5, and found that it is still active in Holocene. At the same time, the latest research on the extension of F5 into Anhui suggests that there is a late Pleistocene-Holocene fault existing near the Huaihe River in Anhui Province. The Tanlu fault zone extends into Anhui Province and the extension section is completely buried, especially in the Hefei Basin south of Dingyuan. At present, there is little research on the activity of this fault segment, and it is very difficult to study its geometric structure and active nature, and even whether the fault exists has not been clear. Precisely determining the distribution, active properties and the latest active time of the hidden faults under urban areas is of great significance not only for studying the rupture behavior and segmentation characteristics of the southern section of the Tanlu fault zone, but also for providing important basis for urban seismic fortification. By using the method of shallow seismic prospecting and the combined drilling geological section, this paper carries out a detailed exploration and research on the Wuyunshan-Hefei Fault, the west branch fault of Tanlu fault zone buried in Hefei Basin. Four shallow seismic prospecting lines and two rows of joint borehole profiles are laid across the fault in Hefei urban area from north to south. Using 14C, OSL and ESR dating methods, ages of 34 samples of borehole stratigraphic profiles are obtained. The results show that the youngest stratum dislocated by the Wuyunshan-Hefei Fault is the Mesopleistocene blue-gray clay layer, and its activity is characterized by reverse faulting, with a maximum vertical offset of 2.4m. The latest active age is late Mesopleistocene, and the depth of the shallowest upper breaking point is 17m. This study confirms that the west branch of Tanlu fault zone cuts through Hefei Basin and is still active since Quaternary. Its latest activity age in Hefei Basin is late of Middle Pleistocene, and the latest activity is characterized by thrusting. The research results enrich the understanding of the overall activity of Tanlu fault zone in the buried section of Hefei Basin and provide reliable basic data for earthquake monitoring, prediction and earthquake damage prevention in Anhui Province.  相似文献   

17.
The time-dependent probabilistic seismic hazard assessment of the active faults based on the quantitative study of seismo-geology has the vital practical significance for the earthquake prevention and disaster management because it describes the seismic risk of active faults by the probability of an earthquake that increases with time and the predicted magnitude. The Poisson model used in the traditional probabilistic method contradicts with the activity characteristics of the fault, so it cannot be used directly to the potential earthquake risk evaluation of the active fault where the time elapsing from the last great earthquake is relatively short. That is to say, the present Poisson model might overestimate the potential earthquake risk of the Xiadian active fault zone in North China because the elapsed time after the historical M8 earthquake that occurred in 1679 is only 341a. Thus, based on paleoearthquake study and geomorphology survey in the field, as well as integrating the data provided by the previous scientists, this paper reveals two paleo-events occurring on the Xiadian active fault zone. The first event E1 occurred in 1679 with magnitude M8 and ruptured the surface from Sanhe City of Hebei Province to Pinggu District of Beijing at about 341a BP, and the other happened in (4.89±0.68)ka BP(E2). Our research also found that the average co-seismic displacement is ~(1.4±0.1)m, and the predicted maximum magnitude of the potential earthquake is 8.0. In addition, the probabilistic seismic hazard analysis of great earthquakes for Xiadian active fault zone in the forthcoming 30a is performed based on Poisson model, Brownian time passage model(BPT), stochastic characteristic-slip model(SCS)and NB model to describe time-dependent features of the fault rupture source and its characteristic behavior. The research shows that the probability of strong earthquake in the forthcoming 30a along the Xiadian active fault zone is lower than previously thought, and the seismic hazard level estimated by Poisson model might be overestimated. This result is also helpful for the scientific earthquake potential estimation and earthquake disaster protection of the Xiadian active fault zone, and for the discussion on how to better apply the time-dependent probabilistic methods to the earthquake potential evaluation of active faults in eastern China.  相似文献   

18.
江娃利  张英礼 《地震地质》1996,18(4):349-357
河北磁县西部北西西向南山村-岔口活动断裂为北西西向磁县活动断裂西段,全长35km,又可再分为东西两段。全新世时期该断裂有多次活动,活动方式以具左旋性质的正倾滑为主。1830年磁县7.5级地震时,南山村-岔口断裂带出现新的地表破裂,地表垂直位移多处为2~4m,最大约7m。据目前资料,该断裂带最新两次地震事件的时间间隔约为3500a。最近获取的位于磁县最高峰老爷山庙宇碑文资料,补充说明了邻近岔口活动断裂带的古建筑物在1830年地震中的严重破坏  相似文献   

19.
河北磁县西部北西西向南山村-岔口活动断裂为北西西向磁县活动断裂西段,全长35km,又可再分为东西两段。全新世时期该断裂有多次活动,活动方式以具左旋性质的正倾滑为主。1830年磁县7.5级地震时,南山村-岔口断裂带出现新的地表破裂,地表垂直位移多处为2~4m,最大约7m。据目前资料,该断裂带最新两次地震事件的时间间隔约为3500a。最近获取的位于磁县最高峰老爷山庙宇碑文资料,补充说明了邻近岔口活动断裂带的古建筑物在1830年地震中的严重破坏。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号