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1.
中国大陆深探测的大地电磁测深研究   总被引:9,自引:1,他引:8  
通过对地震波速度、密度、磁性、导电性等物理场进行观测,研究地壳与上地幔的物性与结构特征,将为研究地球内部物质状态、地壳运动过程及其动力学机制等科学命题提供科学依据,同时也将为寻找深部大型矿床提供信息。大地电磁深探测方法作为研究地球壳幔电性结构的主要地球物理方法,在国内外完成了大量探测工作,取得了许多重要的研究成果。在研究壳幔构造方面,大地电磁法和地震方法一起被视为两大支柱方法,在世界范围内解决大陆动力学问题方面已有许多成功的应用范例。但由于大地电磁探测以天然电磁场作为场源,在矿集区等强干扰地区往往很难采集到高信噪比的数据,抗干扰能力较弱。同时,大地电磁与地震数据的约束反演以及联合解释目前尚没有达到实用化,这些都限制了大地电磁数据的处理及解释精度。"深部探测技术与实验研究"(SinoProbe)专项下属的"深部探测技术实验与集成"项目将选择青藏高原、西部造山带与华南山区结晶岩等复杂地质条件和不同人文干扰水平地区,以大地电磁探测与地震探测作为主要手段,研究深部精细地球物理探测技术的集成,并且通过实验剖面研究这些实验区的壳幔结构特征。其中的"大地电磁测深大剖面观测实验与壳/幔三维电性研究"课题,将通过在实验区的大地电磁观测实验,研究适用于不同地质条件及干扰水平地区的大地电磁数据采集方法技术以及精细处理与反演方法,同时探讨大地电磁数据与地震数据的约束反演以及联合解释。该研究将提高深部地球物理探测精度,为深部精细地球物理探测方法技术集成以及区域地球物理精细探测提供范例。已经完成的青藏高原东北缘西秦岭造山带和福建结晶岩地区的大地电磁观测试验表明,在这些典型地质构造区域,虽然存在施工困难,干扰水平大等各种不利因素,但只要采取合适的野外观测技术,并通过数据精细处理与反演计算,是能够获得高质量的大地电磁数据以及可靠的电阻率分布模型。试验所取得的成果,将为实现"深部探测技术实验与集成"项目科学目标和研究任务提供重要的技术支撑与保障。  相似文献   

2.
高温高压下地壳物质电导率的实验室测定是研究大陆中、下地壳高导层成因的重要方法之一。研究表明,水、石墨、部分熔融以及矿物脱水都可能形成地壳高导层,在不同构造环境和深度下这些机制起着不同的作用。为解释中地壳高导层,水的存在是必不可少的条件,在下地壳,水、石墨、部分熔融以及矿物脱水、甚至特定的干的下地壳岩石都可解释大地电磁测量结果。  相似文献   

3.
大陆岩石圈导电性的研究方法   总被引:17,自引:2,他引:17  
随着地球科学的进展 ,大陆岩石圈导电性结构的研究越来越引起人们的重视 ,而超宽频带大地电磁测深则是目前用于探测岩石圈导电性最有效的地球物理先进技术。它把现代性能优良的宽频带大地电磁系统 (MT 2 4NS或V5 2 0 0 0 )与长周期智能化大地电磁系统 (LIMS)配套使用 ,采集地面上频率范围为n× 10 -4~n× 10 2 Hz的天然电磁场信号 ,并通过一系列数据处理和反演计算 ,获得深达下地壳和上地幔的地下导电性结构模型。此模型不仅可以提供有关岩石圈地质构造轮廓的信息 ,更重要的是可以间接反映现今地下深部的热结构特征和物质状态分布特点。多年来 ,应用超宽频带大地电磁测深对青藏高原岩石圈导电性结构的研究表明 ,高原的中、下地壳确实是良导电性的 ;它可能说明西藏地壳中普遍存在岩石的局部熔融 ,或地热流体。沿着应县—商河剖面的大地电磁测深研究结果从电性的角度证明了太行山山前断裂为一组向东倾斜的深断裂 ,华北地区岩石圈以其为界划分为东、西两区 ;东区为低阻区 ,与构造活动区的岩石圈导电性特征相符 ;西区为高阻区 ,表现出稳定大陆区岩石圈导电性结构的特点。  相似文献   

4.
电磁法综合探测系统研究   总被引:15,自引:1,他引:14  
针对地下隐伏资源勘查对大深度、多参量电磁法技术的发展要求,利用天然场音频大地电磁的大深度探测及人工场激电法的多参量探测,在对分布式的场量接收和大功率的发射仪器硬件研制,以及数据处理资料解释研究基础上,成功研制了阵列天然场电磁法探测技术及混场源电磁法探测技术系统。经矿区试验应用表明,阵列天然场电磁法探测技术系统具有轻便高效大深度探测的特点,适宜于不同地貌景观尤其是困难条件下隐伏资源的大深度探测,而混场源电磁法探测技术系统不仅可获取大深度的天然场电阻率信息,还能获取人工场激电信息,可广泛应用于金属矿资源、地下水资源及油气资源的勘查。  相似文献   

5.
雄安新区内地热资源丰富,区内有牛驼镇地热田、容城地热田和高阳地热田,地热资源开发利用较早,但是对其深部热源机制仍未形成统一观点。为了研究雄安新区内地热田深部热源机制,在新区及外围进行了深反射地震和长周期大地电磁探测,对取得的同剖面的深反射地震和大地电磁数据进行处理和综合解释,探明了研究区从地表至莫霍面范围内地质构造和电性结构。下地壳结构在深反射地震剖面与大地电磁剖面上有很好的对应关系。电阻率低值区对应着在深反射地震剖面上存在一系列反射同相轴,且同相轴可以延续到莫霍面,电阻率高值区对应着在深反射地震剖面上无明显连续反射同相轴,尤其是在莫霍面之上呈现地震反射近似"空白区"。结合区域地热资料构建了研究区深部地热地质模型,对新区内深部地热机制进行了解释。该模型为"二元"生热模型,其热源包含两个部分,深部地幔热源和地壳放射性元素衰变生热。放射性元素衰变生热占地表热流的接近30%,而幔源热流在地表热流中的占比可达约70%。在牛驼镇下方,莫霍面以上,由于地幔热物质上涌造成下地壳上隆,幔源岩浆底侵作用于下地壳形成了局部热异常,该热异常具有低速高导的地球物理特征,认为是牛驼镇地热田和容城地热田的深部热源;以区域断裂为热通道,大地热流由深部向上传导、扩散到牛驼镇凸起和容城凸起顶部,对碳酸盐岩储水层进行加热,形成地热储层;上覆新近系沉积地层是良好的热盖层。  相似文献   

6.
闵刚 《地质与勘探》2020,56(5):1005-1018
音频大地电磁法是深埋金属矿勘探中的一种常用物探方法,研究音频大地电磁对深埋、薄层锰矿的勘探效果具有重要的理论意义及实践价值。论文首先通过建立典型地电模型,完成了大地电磁正演模拟、反演计算及大地电磁的磁反射系数成像,从理论上提出磁反射系数可以提高大地电磁法的深部分辨率;然后以贵州松桃杨立掌锰矿床毗邻区的次级成锰槽盆为勘探对象,完成了横跨成锰槽盆的音频大地电磁勘探及资料处理,获得了沿测线方向的二维电阻率模型和磁反射系数成像等值线图;最后参考研究区物性资料及钻井柱状图,进行了电阻率模型与磁反射系数成像结果的地质地球物理综合解释。论文的研究成果说明,磁反射系数能够有效提高大地电磁法对深部电性层的划分能力,合理运用磁反射系数开展大地电磁多参数解释有利于提高大地电磁法的解释分辨率。  相似文献   

7.
高温高压下地壳物质电导率的实验室测定是研究大陆中、下地壳高导层成因的重要方法之一。研究表明,水、石墨、部分熔融以及矿物脱水可能形成地高导层,在不同构造环境和深度下这些机制起着不同的作用。为解决中地壳高导层成因的水的存在是必不可少的条件,在地下壳、水、石墨、部分熔融以及矿物脱水,甚至持定的干的下地壳岩石都可解释大地电磁测量结果。  相似文献   

8.
封面故事     
《地球学报》2013,(1):131
深部探测腾冲科学钻探工程现场。中国深部探测专项完成了6000km深地震反射剖面,建立了全国大地电磁参数网和地球化学基准网;6口科学钻探获得重要发现;实现了矿集区立体探测;在关键地区地应力监测、岩石圈动力学模拟、大陆地壳结构与演化研究、探测仪器装备研制等  相似文献   

9.
念青唐古拉山深部构造特征研究   总被引:1,自引:0,他引:1  
刘葵  赵文津  吴珍汉  江万 《地球学报》2005,26(5):405-410
本文利用INDEPTH项目深反射地震资料和大地电磁测深资料对念青唐古拉山地壳构造特征进行了深入细致的研究,通过对深反射地震资料的地震相分析及与大地电磁资料的比较得到:①16~22km深度的部分熔融体是多个不连通的独立的穹隆;②在羊八井一当雄北地区,深45~58km以下的下地壳深度存在NE走向的向形构造,该向形构造向北延伸、逐渐变深;③当雄北20km附近,中下地壳在深29~58km范围内存在大型的正断层,断距达6km。  相似文献   

10.
喜马拉雅东构造结岩石圈板片深俯冲的地球物理证据   总被引:4,自引:0,他引:4  
2009~2010年在南迦巴瓦地区进行了宽频带地震和大地电磁探测,分别处理获得东构造结及其邻区的地下300km以上的P波速度图像和两条大地电磁电阻率剖面。通过资料的对比和综合解释,发现电阻率分布与地震波速有较好的对应关系。研究结果表明:南迦巴瓦变质体的上地壳部分呈现明显高速高阻特征,为两侧的雅鲁藏布江缝合带所夹持;中下地壳具有不均匀性,且普遍呈低速低阻特征;印度板块在藏东南向欧亚板块的俯冲前缘越过嘉黎断裂,抵达班公湖-怒江缝合带;在拉萨地体的高速俯冲板片以下100km至200km深度范围内存在大规模的低速异常带,其上盘中下地壳也广泛发育低速高导体,指示青藏高原东南缘可能存在韧性易流动的物质向东、东南逃逸的通道,为印度板块在南迦巴瓦的深俯冲动力学模式提供了地球物理证据。  相似文献   

11.
The magnetotelluric (MT) method was used to image the crust and upper mantle beneath the Delamerian and Lachlan orogens in western Victoria, Australia. During the Cambrian time period, this region changed from being the extended passive margin of Proterozoic Australia into an Andean-style convergent margin that progressively began to accrete younger oceanic terranes. Several broadband MT transects, which were collected in stages along coincident deep (full crust imaging) seismic reflection lines, have now been combined to create a continuous 500 km east–west transect over the Delamerian–Lachlan transition region in the Stawell Zone. We present the electrical resistivity structure of the lithosphere using both 3D and 2D inversion methods. Additionally, 1D inversions of long-period AusLAMP (Australian Lithospheric Architecture Magnetotelluric Project) MT data on a 55 km regionally spaced grid were used to provide starting constraints for the 3D inversion of the 2D profile. The Delamerian to Lachlan Orogen transition region coincides with the Mortlake Discontinuity, which marks an isotopic discontinuity in Cenozoic basalts, with higher strontium isotope enrichment ratios in the Lachlan Orogen relative to the Delamerian Orogen. Phase tensor ellipses of the MT data reveal a distinct change in electrical resistivity structure near the location of the Mortlake Discontinuity, and results of 3D and 2D inversions along the MT profile image a more conductive lower crust and upper mantle beneath the Lachlan Orogen than the Delamerian Orogen. Increased conductivity is commonly ascribed to mantle enrichment and thus supports the notion that the isotope enrichment of the Cenozoic basalts at least partially reflects an enriched mantle source rather than crustal contamination. Fault slivers of the lower crust from the more conductive Lachlan region expose Cambrian boninites and island arc andesites indicative of subduction, a process that can enrich the mantle isotopically, and also electrically, by introducing carbon (graphite) and water (hydrogen).  相似文献   

12.
The structure of the Earth’s crust at the junction of the Siberian craton and Sayan–Baikal Fold Belt was studied along the Bayandai Village–Cape Krestovskii profile (85 km long) by a set of geological and geophysical methods: structural survey, interpretation of long-distance photographs, emanation survey, electrical prospecting with self-potential (SP) and direct-current (DC) resistivity profiling, magnetotelluric sounding, magnetic survey, and hydrogeochemical sampling of water objects. Interpretation of the data refined the main features of the tectonic structure of western Cisbaikalia and revealed the disruption pattern and hierarchic zone–block structure of the Earth’s crust. The Obruchev fault system (≈50 km wide), which is the northwestern shoulder of the Baikal Rift, is the main interblock zone of the studied region. It consists of the Morskoi, Primorskii, and Prikhrebtovyi interblock zones, traced from depths of tens of kilometers and widening near the surface owing to superior structures. The studies gave an insight into the regularities in the occurrence of interblock zones and the criteria for their identification in different geologic-geophysical fields. An efficient complex of methods for mapping the Earth’s crust zone–block structure is proposed.  相似文献   

13.
天津静海-津南剖面地壳上地幔电性结构特征   总被引:1,自引:0,他引:1  
在天津市区南部的静海-津南一线布置了32个大地电磁测深点,剖面方位角92°,对采集的资料采用远参考与Robust技术进行了处理和解释.对该区的构造维数及构造方向做了分析,揭示了该剖面地壳上地幔电性结构特征,并进行了划分.成果显示:中下地壳存在双层低阻构造层,上地幔表现为中、高阻互层.在断裂带附近受构造活动影响,低阻高导构造层会发生上下错断与缺失.沧东、白塘口、天津断裂均是多组断层构成的断裂带,控制了双窑凸起、白塘口凹陷、板桥凹陷及静海斜坡带次级构造单元.  相似文献   

14.
中亚造山带东段内蒙古中部地区一直是地球内部动力学和全球变化研究的热点地区。鉴于该地区的构造在理解中亚造山带的形成过程中起着重要作用,因此对该地区构造的研究具有重要意义。本文收集了中亚造山带东段一条长364 km的大地电磁测深(MT)剖面数据,该剖面西北起于内蒙古东乌旗内的国境线附近,向东南延伸,穿过北部造山带、索伦缝合带、南部造山带,在内蒙古翁牛特旗以西约30 km附近终止。根据数据的分析结果,对该剖面进行了二维反演。结果表明,剖面区段内岩石圈电性结构沿南北方向上整体表现为横向分块的特征。其中,北部造山带整体上以低阻为主要特征;索伦缝合带是整个剖面电性特征从低阻到高阻的过渡区;南部造山带整体上以高阻为主要特征。北部造山带的低阻特征表明该区域是不稳定的,可能是由古亚洲洋闭合后残留洋壳或者软流圈上升流引起的。索伦缝合带的电性结构特征表明该区域可能在缝合之后还发生了新的构造事件。南部造山带的高阻特征表明该区域基底是稳定的、“冷”的,且流体含量很低,电性结构的几何特征反映了该区域增厚的岩石圈。剖面所经过区域的电性结构特征表明,在西伯利亚板块与华北板块碰撞缝合之后研究区内可能还发生了诸如软流圈流...  相似文献   

15.
The Panxi region is located in the frontal zone of positive squeezing subduction and side squeezing shearing between the Indian plate and the Eurasian plate. The long-period magnetotelluric(LMT) and broadband magnetotelluric(MT) techniques are both used to study the deep electrical conductivity structure in this region; magnetic and gravity surveys are also performed along the profile. According to the 2-D resistivity model along the Yanyuan-Yongshan profile,a highconductivity layer(HCL) exists widely in the crust,and a high-resistivity block(HRB) exists widely in the upper mantle in general,as seen by the fact that a large HCL exists from the western Jinpingshan tectonic zone to the eastern Mabian tectonic zone in the crust,while the HRB found in the Panxi tectonic zone is of abnormally high resistivity in that background compared to both sides of Panxi tectonic zone. In addition,the gravity and magnetic field anomalies are of high value. Combined with geological data,the results indicate that there probably exists basic or ultrabasic rock with a large thickness in the lithosphere in the Panxi axial region,which indicates that fracture activity once occurred in the lithosphere. As a result,we can infer that the high-resistivity zone in the Panxi lithosphere is the eruption channel for Permian Emeishan basalt and the accumulation channel for basic and ultrabasic rock. The seismic sources along the profile are counted according to seismic record data. The results indicate that the most violent earthquake sources are located at the binding site of the HRB and the HCL,where the tectonic activity zone is generally acknowledged to be; however,the earthquakes occurring in the HCL are not so violent,which reflects the fact that the HCL is a plastic layer,and the fracture threshold of a plastic layer is low generally,making high stress difficult to accumulate but easy to release in the layer. As a result,a higher number of smaller earthquakes occurred in the HCL at Daliangshan tectonic zone,and violent earthquakes occurred at the binding site of high- and low-resistivity blocks at the Panxi tectonic zone.  相似文献   

16.
藏南裂谷作为青藏高原最显著的伸展构造样式之一,是研究高原生长过程的重要窗口,但目前其深部成因机制仍存在较大争议。本文利用沿错那—沃卡裂谷中部的大地电磁数据,分析裂谷区域的大地电磁测深曲线特征和相位张量,并通过三维大地电磁反演获得邛多江地堑和沃卡地堑深部电性结构。三维大地电磁反演结果显示,沃卡地堑和邛多江地堑深部存在一条连续的显著高导异常,并呈现“俯冲”形态,且上覆高阻结构体,而在邛多江地堑两侧浅部则分布低阻异常。结合早期的研究结果,本文支持错那—沃卡裂谷深部的高导异常为地壳部分熔融,可能与南向地壳流相关,并研究认为在南北向持续挤压作用下,裂谷下方的弱地壳层,通过解耦上地壳和下部地壳,促进了藏南裂谷系的发育。  相似文献   

17.
Thirty magnetotelluric soundings were made along two NW–SE profiles to the north and south of Oaxaca City in southern Mexico. The profiles crossed the N–S Oaxaca Fault and the Oaxaca-Juarez terrane boundary defined by the Juarez mylonitic complex. Dimensionality analysis of the MT data showed that the subsurface resistivity structure is 2D or 3D. The Oaxaca and correlative Guichicovi terranes consist of ca. 1–1.4 Ga granulitic continental crust overlain by Phanerozoic sedimentary rocks, characterized by high and low resistivities, respectively. The Juarez terrane consists of oceanic Mesozoic metavolcanic and metasedimentary rocks, characterized by a low to medium resistivity layer, that is approximately 10 km thick. The Oaxaca Fault is a Cenozoic aged, normal fault that reactivated the dextral and thrust Juarez mylonitic complex north of Oaxaca City: its location south of Oaxaca City is uncertain. In the southern profile, the MT data show a ca. 20–50 km wide, west-dipping, relatively low resistivity zone material that extends through the entire crust. This is inferred to be the Juarez terrane bounded on either side by the ca. 1–1.4 Ga granulites. The Oaxaca Fault is imaged only by a major electrical resistivity discontinuity (low to the west, high to the east) along both the western border of the Juarez mylonitic complex (northern profile) and the San Miguel de la Cal mountains (southern profile) suggesting continuity.  相似文献   

18.
The magnetotelluric (MT) profile traverses the southeastern edge of the Siberian craton and the adjacent Paleozoic Olkhon collision zone, both being within the influence area of the Baikal rifting. The processed MT data have been integrated with data on the crust structure and composition, as well as with magnetic, gravity, and seismic patterns. Large resistivity lows are interpreted with reference to new geothermal models of rifted crust in the Baikal region. The northwestern and southeastern flanks of the profile corresponding, respectively, to the craton and the collision zone differ markedly in the crust structure and composition and in the intensity of rifting-related processes, the difference showing up in the resistivity pattern. The high-grade metamorphic and granitic crust of the craton basement in the northwestern profile flank is highly resistive but it includes a conductor (less than 50 ohm · m) below 16–20 km and a nearly vertical conductive layer in the upper crust. The crust in the southeastern part, within the collision zone, is lithologically heterogeneous and heavily faulted. High resistivities are measured mainly in the upper crust composed of collisional plutonic and metamorphic complexes. Large and deep resistivity lows over the greatest part of the section are due to Cenozoic activity and rift-related transcrustal faults that vent mantle fluids constantly recharged from deeper mantle.  相似文献   

19.
Magnetotelluric (MT) measurements at six locations along a 90-km profile across the area between Gölpazari and Akcaova have been modeled in two dimensions to increase understanding of the deep conductivity structure of the western part of the North Anatolian fault zone (NAFZ) and the Istanbul and Sakarya zones.

It is well known from surface geology that the branch of the NAFZ that passes through the Pamukova Valley with an E-W strike separates the region into two sub-areas, containing contrasting sets of geological features. These two areas also exhibit significant differences in terms of their deep conductivity structure. Electrical resistivity is quite low (10 ohmm) south of the fault at an approximate depth of 26 km, compared to the area north of the fault zone. This low-resistivity zone may provide an indication of partial melting at this depth.

In the northern part of the profile beneath Ücgaziler (DUC) and Akcaova (DAK), a five-layered conductivity sequence obtained by magnetotelluric modeling and the magnetotelluric model has been examined in light of the surface geology. It is concluded that layers in the conductivity model may correspond to fragments of the Istanbul zone and the Sakarya continent, as well as the ophiolitic slab in between.  相似文献   

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