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1.
研究青藏高原及邻近地区地壳磁异常场分布特征,对认识该区岩石圈结构和演化以及区域地球动力学过程有重要意义.本文根据地面、航空、海洋和卫星磁测资料构建的最新一代高阶地磁场模型NGDC-EMM-720-V3,分析青藏高原及邻区地壳磁异常及其垂直梯度的展布规律、磁异常衰减特征、不同波长带对磁异常的贡献和磁异常与岩石圈区域构造的关系.结果显示,青藏高原正负磁异常都较弱,周边地区磁异常强,其分界与高原区域构造的边界基本吻合.磁异常在青藏高原中西部呈近东西走向,西南部和东部形成弧形状,东南部为近南北走向,与构造走向基本一致.东、西构造结地区形成强的负异常焦点.青藏高原内部各新生代地块的磁异常无明显差异,磁异常与地壳厚度没有直接对应关系.在青藏高原弱磁异常背景上,拉萨地块、祁连地块、柴达木地块和川滇菱形地块叠加有相对较强的地壳浅部的短波长磁场.喜马拉雅分布着东西向强负磁异常带,主要由地壳深部和中部的中长波长带产生.四川盆地和塔里木盆地的磁性构造层稳定.高原南部不同高度处的磁异常变化较大,揭示出从地壳深部到浅层地表的磁性构造发生过剧烈变化.  相似文献   

2.
麻城1932年6.0级地震区地球物理场与深部环境研究   总被引:1,自引:0,他引:1  
研究了麻城地区重、磁异常场特征、经反演计算获得了深部结构特征。对重力布格异常利用Parder-Oldenburg快速位场反演方法计算出莫霍面的展布,对航磁异常利用对率谱法和矩谱法计算出居里面深度。在此基础上,探讨该震区深部蕴震条件。主要结论是:①麻城-团凤断裂带为该区切割较深的主要控震构造;②1932年麻城6.0级地震发生在区域重力异常等值线梯度最大处,磁力异常区局部正异常间的低值带,莫霍面及居面  相似文献   

3.
川西高原重磁异常特征与构造背景分析   总被引:5,自引:1,他引:4       下载免费PDF全文
高玲举  张健  董淼 《地球物理学报》2015,58(8):2996-3008
川西高原位于青藏高原东缘,是我国大陆地壳构造变形及地震活动最强烈的区域.利用最新重力、航磁资料,通过异常分析和反演计算,研究了该区鲜水河断裂、理塘断裂、金沙江断裂的重磁异常特征、莫霍面特征、居里面特征,分析得出了这些断裂的深部地质结构与构造背景.计算表明:川西高原莫霍面东南浅、西北深,地壳厚度在43~63km之间.居里面特征表现为条带状,深度在17~23km之间.其中,鲜水河断裂带对应莫霍面深度梯度带,居里面为高低起伏圈闭.理塘断裂带北段莫霍面局部隆坳相间,南段莫霍面逐渐抬升,居里面呈现由西向东加深的梯度带.金沙江断裂带,居里面形成局部抬升,深部可能存在高温地热异常源.综合分析认为,川西高原地壳结构主要特点为:增厚的下地壳,热-塑性变形的中地壳,脆性变形的上地壳.  相似文献   

4.
感谢骆遥[1]对我们论文[2]的关注和直言不讳的意见,我们赞赏他严谨的科学态度.骆遥的主要意见是:在NGDC-720模型构建中,青藏高原中西部有100多万平方公里地区缺少航磁数据.论证了用此模型来研究整个青藏高原地区地壳磁异常特别是由地壳中、浅层物质引起的磁异常存在局限;指出在使用岩石  相似文献   

5.
坦桑尼亚是东非第一产金大国,构造蚀变岩型金矿是该国的一个重要金矿床类型,该类型金矿床与断裂构造中的构造蚀变带密切相关,主要分布在坦桑尼亚环维多利亚湖东部、西南部及东南部绿岩带中;凯巴卡瑞地区内岩石磁性表现为强-中-弱-微或无的强度等级,岩石相互之间磁性差异明显,其航磁异常显示的地质信息比较详尽,反映的磁性地层、岩体界线清晰,线性构造特征明显.依据坦桑尼亚凯巴卡瑞地区尼亚斯罗利金矿床上的航磁异常表现形式,对凯巴卡瑞地区航磁异常强度、规模、形态及延伸等特征进行了认真分析和对比研判,认为该区域航磁异常客观地反映了与构造蚀变岩型金矿有关联的断裂构造和绿岩分布区,构造蚀变带、金矿脉以及所赋存的绿岩地层在航磁异常上表现为低强度磁异常,其他岩石(条带状铁建造、辉绿岩、花岗岩)在航磁异常上表现为高强度磁异常,据此选择的找矿靶区通过地面物探方法(高精度磁测、微磁测量)查证,取得了明显的找矿效果;凯巴卡瑞地区航磁异常解译厘定的地质信息,为进一步预测成矿区域、圈定找矿靶区及间接发现构造蚀变岩型金矿床奠定了基础,因而预判坦桑尼亚凯巴卡瑞地区分布的航磁异常具有寻找构造蚀变岩型金矿的较大潜力.  相似文献   

6.
坦桑尼亚条带状铁建造(BIF)型金矿床是该国绿岩带型金矿床中的一个主要类型,主要分布于坦桑尼亚维多利亚湖的西南部区域,姆瓦莫拉(Mwamola)金矿为苏库马兰德绿岩带(Sukumaland greenstone belt)上比较典型的大型隐伏铁建造型金矿床,位于坦桑尼亚西北部西嘎山一带;该类型矿床在航磁异常上表现为弱-中等强度线性磁异常,在地面磁异常上表现为中-强线性磁异常,条带状铁建造BIF(磁铁石英岩)和金矿石具有中强磁性,两者是引起磁异常的主要因素,磁异常是寻找该类型金矿的直接标志之一.根据姆瓦莫拉金矿床上的航磁异常表现特征,对西嘎山一带航磁异常形态进行了分析研究,认为航磁异常反映了与金矿有关的条带状铁建造的聚集分布区,金矿脉与航磁异常、地磁异常走向基本一致,据此选择的找矿靶区找矿效果良好,表明该区域航磁异常对选择靶区、寻找铁建造型金矿床具有一定的指导意义,坦桑尼亚西嘎山一带分布的航磁异常具有寻找铁建造型金矿的较大潜力.该区域金矿勘查,除充分利用该国已有的高分辨率航磁异常成果筛选靶区外,还需配合地面1∶1万高精度磁法测量确定条带状铁建造位置和进行钻探工程布置,借鉴或复制姆瓦莫拉和PL9110金矿找矿经验和模式,才能取得良好的找矿效果.  相似文献   

7.
提出一个新的带通滤波器——延拓回返垂直二次导数,该滤波器可通过调节延拓回返高度及次数来达到调频目的,以突出勘探目标层段的信息.利用该技术对松辽盆地深层勘探程度最高的徐家围子断陷的航磁资料进行目标处理,与钻井资料对比表明,经处理后的航磁资料可以较好地反映火山岩的分布特征.以航磁资料为主结合钻井、地震资料预测了徐家围子三套火山岩的平面分布.指出航磁异常梯度带是火山岩储层的发育区带,近烃源岩或沟通烃源岩的航磁异常梯度带是火山岩天然气的富集区带.该认识对今后松辽盆地的勘探部署有着十分重要的指导意义,对我国其他地区的火山岩勘探也具有借鉴意义.  相似文献   

8.
龙门山和相邻地域航磁场特征与汶川大地震   总被引:3,自引:3,他引:0       下载免费PDF全文
本文应用化极、水平及垂向导数、向上延拓、视磁化强度填图及磁性界面反演等方法处理了龙门山及相邻地域最新的航空磁测数据,分析了龙门山及相邻地域的航磁异常展布特征.研究结果表明:1)龙门山造山带与其东、西两侧可划分为三个磁异常区:松潘—甘孜磁异常区、龙门山负磁异常带、四川盆地磁异常区;三个区、带的地壳介质磁性结构存在明显差异.2)根据该区航空磁异常场的分布特征分别研究了,松潘—甘孜地块、龙门山造山带和四川地块的磁场特征.3)除识别前人识别的断层外,还推断鲜水河ES延伸甘洛—雷波北断裂作为四川盆地与滇西的界带.4)航空磁异常,磁性体上、下界面及磁源体深度的空间分布特征与汶川MS8.0大地震及芦山地震发生相关.  相似文献   

9.
位场分离方法在重、磁数据处理和解释中发挥着重要作用,本文重点研究了空间域中常用的平均场值法、向上延拓法、圆周法、趋势分析法等四种方法的基本原理,通过模型试验对比分析了不同方法的场分离效果,并将四种方法应用到了相山布格重力异常的分离之中.模型试验及实例应用表明,平均场值法和圆周法的场分离效果较为理想,但圆周法分离出的区域场存在局部波动现象;向上延拓法难以将区域异常和局部异常彻底分离;趋势分析法分离出的局部场中含有明显的虚假异常.因此,就这四种场分离方法而言,选择平均场值法具有更好的实际应用价值.  相似文献   

10.
采用2014—2015年福建地区流动地磁观测资料分析福建区域岩石圈磁场变化情况,利用向上延拓处理方法对福建地区岩石圈磁场变化信息进行了局部与区域异常场分离,结果表明在漳州南部地区磁异常变化比较明显。基于区域异常场分离结果,反演居里等温面深度,初步得到福建地区居里面埋深大约为16~28 km。  相似文献   

11.
为了研究西藏中、北部壳、幔导电性结构,讨论高原中、北部岩石圈热状态,1998年和1999年(INDEPTH(Ⅲ) MT)在西藏中、北部完成了德庆—龙尾错(500线)和那曲—格尔木(600线)超宽频带大地电磁深探测剖面的研究.研究结果表明,西藏中、北部以昆仑山断裂为界,其南北壳、幔电性结构有很大差异.昆仑山断裂以北地壳和上地幔为高阻区.而昆仑山以南,地壳和上地幔的导电性有明显的分层结构:地壳上部以不连续的高阻体为主,夹有局部低阻异常体,沿南北方向上地壳的电性结构复杂,具有不连续、分块的特点;但中、下地壳为大范围的高导异常区,区内发育有大规模、不相连续、产状各异的高导体,其电阻率均小于4Ωm;在班公—怒江和金沙江缝合带之下,壳内高导体都具有向上地幔延伸的趋势,存在连通壳、幔的低阻通道.根据西藏高原中、北部壳、幔电性结构的研究推断:如同藏南一样,这里也普遍存在部分熔融体和热流体,它们的成因主要与班公—怒江和金沙江缝合带的壳-幔热交换、热活动有关,这是两期形成的壳-幔热交换通道.其中,班公—怒江缝合带的壳-幔热交换通道形成时间比金沙江缝合带早.因此,研究区壳、幔的热活动是从南边和西边开始,向北、向东扩展,导致现今西藏中、北部地壳和上地幔的热流分布由西向东、由南向北增大.  相似文献   

12.
The isotopic composition of helium emitted from geothermal springs in the southern Tibetan plateau, reported as Rc/RA (Rc=air corrected sample 3He/4He, RA=air 3He/4He), ranges from 0.013 to 0.38, and defines two principal domains. In southernmost central Tibet, helium isotope ratios are typical of radiogenic helium production in the crust (Rc/RA<0.05, crustal helium domain). Further north, there is a resolvable 3He anomaly consistent with a mantle contribution (R/RA>0.1, mantle helium domain). The highest values of 0.27–0.38 RA occur at the southern end of the Karakoram fault. The boundary between the two domains lies 50–100 km north of the Indus-Zangpo suture zone. There seems to be no association between the 3He anomaly and zones of active normal faulting and litho-tectonic crustal units, such as the ultramafic rocks of the Indus-Zangpo suture zone and the Gangdese intrusive belt. Although scavenging of mantle-derived helium, stored in large ultrabasic and basic intrusions in the crust, cannot be ruled out entirely, we argue that the 3He anomaly most plausibly reflects degassing of volatiles from young (Quaternary) mantle-derived melts intruded into the crust. As such, it defines the southern limit of recent mantle melting and mantle melt extraction beneath the Tibetan plateau. The southern limit of the 3He anomaly coincides with the junction between the Indian and Asian plates, in the region where the Indian lithospheric slab steepens and is subducted beneath Tibet as suggested by seismic studies. Recent mantle melting and melt extraction is confined to the Asian mantle, but the southern limit of the melt zone may have migrated northwards during the last 10 Ma as the Indian lithosphere has progressively underthrust the Himalayas and Tibet.  相似文献   

13.
川滇地区地壳上地幔三维速度结构研究   总被引:95,自引:22,他引:95  
根据云南和四川地震台网174个台站记录的4625个区域地震初至P波和S波走时资料,并结合其它深部地球物理资料,确定了川滇地区地壳上地幔三维速度结构.在上地壳速度异常分布中,四川盆地为正异常,川西高原为负异常,龙门山断裂带为正、负异常的边界.龙门山断裂、鲜水河断裂以及红河断裂等,在下地壳和上地幔的速度异常中仍显示出构造分界特征,说明它们可能穿透了莫霍界面.腾冲火山区和攀西构造带在50km深度上呈现负速度异常,与上地幔温度和物质组成的差异相联系.川滇地区地壳结构的总体特征是:地壳和上地幔的低平均速度,地壳厚度变化剧烈,地壳和(或)上地幔存在高导层、高热流值.这些同印度板块与欧亚板块碰撞的构造背景有关.川滇菱形块体在地壳内总体上为正常或正异常速度,而其边界的深大走滑断裂存在负速度异常,它有助于地壳块体沿断裂的侧向挤出.在主要的地震带上,中下地壳的负速度异常与地震活动性相关.多数强烈地震发生在具有正速度异常或正常速度分布的上中地壳深度上,而其下方则通常是负速度异常带.   相似文献   

14.
云南思茅—中甸地震剖面的地壳结构   总被引:7,自引:7,他引:7       下载免费PDF全文
张智  赵兵  张晰  刘财 《地球物理学报》2006,49(5):1377-1384
云南思茅—中甸宽角反射/折射地震剖面切割松潘—甘孜、扬子和华南三个构造单元的部分区域. 我们利用初至波和壳内反射波走时层析成像获得地壳纵波速度结构. 在获得新的地壳速度结构模型基础上,利用地震散射成像思想和低叠加次数的叠前深度偏移方法重建了研究区的地壳、上地幔反射结构. 综合分析研究区地壳P波速度模型和壳内地震反射剖面发现:沿测线从北至南地壳厚度从约50 km减薄至35 km左右,地壳厚度的减薄量主要体现在下地壳,剖面北段下地壳厚度约为30 km,剖面南段下地壳厚度仅为15 km左右;上地幔顶部局部位置P波速度值偏低,一般为76~78 km/s,反映出云南地区是典型的构造活动区的特点.剖面沿线地壳内地震反射发育,其中莫霍强反射出现在景云桥下方;在景云桥弧形断裂带8~10 km深处出现宽约50 km的强反射带.  相似文献   

15.
As the most basic geophysical field, the earth gravity field has achieved wide attention, and its spatial anomaly characteristics and dynamic variation can provide important scientific basis for studying the internal structure and dynamics of the Earth. Based on the mobile gravity observation data of the southeastern Tibetan plateau from 2013 to 2016, the dynamic variation tendency and anomaly characteristics of the regional gravity field in different temporal resolutions are obtained before and after the Ludian and Jinggu earthquakes in the study area respectively. The method of wavelet multi-scale decomposition is used to analyze the relationships of gravity field variation with the earth movement, material density change, and strong earthquake preparation. The deep material variation, dynamic process and the mechanism of earthquake inoculation in the southeastern Tibetan plateau are further discussed. Results indicate that the gravity field variation in the source region before the Ludian and Jinggu earthquake respectively is characterized by obvious positive and negative anomalous transition zone and gradient zone that are consistent with the direction of fault tectonics, suggesting the strong crustal movement and mass migration during the earthquake incubation period. The result of wavelet multi-scale decomposition of the gravity field during the period from September 2013 to April 2014 shows that the gravity field variation at different depth and space scale in the crust and upper mantle of the southeastern Tibetan plateau is significantly correlated with seismic distribution and the location of active fault zone. This indicates that the earthquake inoculation in the study area is closely related to the fault movement and the distribution of material density in the crust and upper mantle, which may be affected by the complex deep dynamic process of the material migration in the crust and mantle. The characteristic that strong earthquakes always occur near positive and negative anomaly transition zones and gradient zones of gravity field change is preliminarily explained, based on the dynamic process of material migration in the crust and upper mantle of the southeastern Tibetan plateau. The research results of this paper have some reference value to the study on the earth movement and seismogenic mechanism.  相似文献   

16.
AbstractThe Benzilan-Tangke deep seismic sounding profile in the western Sichuan region passes through the Song-pan-Garze orogenic belt with trend of NNE.Based on the travel times and the related amplitudes of phases in therecord sections,the 2-D P-wave crustal structure was ascertained in this paper. The velocity structure has quitestrong lateral variation along the profile.The crust is divided into 5 layers,where the first,second and third layerbelong to the upper crust,the forth and fifth layer belong to the lower crust.The low velocity anomaly zone gener-ally exists in the central part of the upper crust on the profile,and it integrates into the overlying low velocitybasement in the area to the north of Ma’erkang.The crustal structure in the section can be divided into 4 parts:inthe south of Garze-Litang fault,between Garze-Litang fault and Xiashuihe fault,between Xianshuihe fault andLongriba fault and in the north of Longriba fault,which are basically coincided with the regional tectonics division  相似文献   

17.
Crustal and lithospheric thicknesses of the southeastern Mediterranean Basin region were determined using 3D Bouguer and elevation data analysis. The model is based on the assumption of local isostatic equilibrium. The calculated regional and residual Bouguer anomaly maps were employed for highlighting both deep and shallow structures. Generally, the regional field in the area under study is considered to be mainly influenced by the density contrast between the crust and upper mantle. Use of the gravity and topographic data with earthquake focal depths has improved both the geometry and the density distribution in the 3-D calculated profiles. The oceanic-continental boundary, the basement relief, Moho depth and lithosphere-asthenosphere boundary maps were estimated. The results point to the occurrence of thick continental crust areas with a thickness of approximately 32 km in northern Egypt. Below the coastal regions, the thickness of crust decreases abruptly (transition zone). An inverse correlation between sediment and crustal thicknesses shows up from the study. Furthermore, our density model reveals the existence of a continental crustal zone below the Eratosthenes Seamount block. Nevertheless, the crustal type beneath the Levantine basin is typically oceanic; this is covered by sedimentary sequences more than 14 km thick. The modeled Moho map shows a depth of 28–30 km below Cyprus and a depth of 26–28 km beneath the south Florence Rise in the northern west. However, the Moho lies at a constant shallow depth of 22–24 km below the Levantine Basin, which indicates thinning of the crust beneath this region. The Moho map reveals also a maximum depth of about 33–35 km beneath both the northern Egypt and northern Sinai, both of which are of the continental crust. The resulting mantle density anomalies suggest important variations of the lithosphere-asthenosphere boundary (LAB) topography, indicating prominent lithospheric mantle thinning beneath south Cyprus (LAB ~90 km depth), followed by thickening beneath the Eratosthenes seamount, Florence Rise, Levantine Basin and reaching to maximum thickness below Cyprian Arc (LAB ~115–120 km depth), and further followed by thinning in the north African margin plate and north Sinai subplate (LAB ~90–95 km depth). According to our density model profiles, we find that almost all earthquakes in the study area occurred along the western and central segments of the Cyprian arc while they almost disappear along the eastern segment. The active subduction zone in the Cyprian Arc is associated with large negative anomalies due to its low velocity upper mantle zone, which might be an indication of a serpentinized mantle. This means that collision between Cyprus and the Eratosthenes Seamount block is marked by seismic activity. Additionally, this block is in the process of dynamically subsiding, breaking-up and being underthrusted beneath Cyprus to the north and thrusted onto the Levantine Basin to the south.  相似文献   

18.
藏北高原地震活动性特征及其大地构造意义   总被引:1,自引:0,他引:1  
藏北高原自新生代以来不仅发生了强烈的火山作用,而且现今的地震活动性仍然强烈.本文收集了2011年前藏北高原区发生的地震事件(源自NEIC)及相应的震源机制解数据(源自GCMT),结合地质与地球物理等相关资料,初步分析表明藏北高原地壳整体上处于伸展应力状态.然而,因区域构造应力场及构造环境差异,将藏北高原地震活动区分为两个地震活动区,即西昆仑地震活动区和藏北中部火山岩区.西昆仑区的地壳应力状态呈东西向伸展,而岩石圈地幔部分主要以南北汇聚为主,表明西昆仑区域下的地壳与岩石圈地幔应力状态是解耦的,而这种解耦机制需要更进一步的研究.而在藏北中部火山岩区的地壳的主张应力场为NNE-SSW的走滑和正断层性质的伸展,尽管缺乏该区域下的岩石圈结构特征认识,但是依据幔源性质的钾质和超钾质火山岩成因模式,认为其下的岩石圈地幔也处于伸展状态,该区域下的地壳与岩石圈地幔同处于伸展应力环境中,表明藏北火山岩区下的结构特征更加复杂,亟待开展相关探测与研究.  相似文献   

19.
青藏高原P波速度层析成像与岩石圈结构   总被引:1,自引:0,他引:1       下载免费PDF全文
利用中国西部地震台网的数据,通过体波层析成像反演了青藏高原及邻域的三维P波速度结构.根据地壳和上地幔的速度变化和构造特征,重点讨论了下地壳流动、地幔上涌、岩石圈减薄以及与藏北新生代火山岩和藏南裂谷系的关系等问题.分析表明,青藏高原中、下地壳平均速度偏低,低速区主要分布在拉萨和羌塘块体内部,随着深度的增加逐渐扩大到松潘—甘孜块体.上述低速区之间多被高速带分隔,暗示地壳中、下部的韧性变形被限制在特定的区域,不太适于产生贯穿整个青藏高原的大规模横向流动.此外,地幔上涌也并非普遍发生于整个青藏高原,而是集中在羌塘、松潘—甘孜以及喜马拉雅东构造结附近,导致上述区域的岩石圈地幔较薄,并且伴生火山活动和岩浆作用.此外,由于印度大陆岩石圈在向北俯冲,板片下沉过程中引起地幔上涌,热流物质有可能上升进入地壳,这一作用对藏北新生代火山岩和藏南裂谷系的形成以及中、下地壳的韧性变形产生了明显的影响.  相似文献   

20.
Many evidences indicate that the collision of two plates deformed strongly the crust of the SYR, and the deformation has been continued up to the present. In addition, the SYR is in the south segment of the South-North Seismic Zone of China, which is one of the regions in the Chinese mainland, where the seismic activity is very high, and the strong earthquakes frequently occurred. Since the 1970s, a series of large earthquakes with magnitude M>7.0 occurred in SYR, such as the 1970 Tongha…  相似文献   

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