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1.
渤海湾盆地的海域部分与渤海湾盆地其他部分一样,新生代为断陷-拗陷盆地.中渐新世以来,渤海湾盆地的沉积沉降中心迁移至渤海海域,并且拗陷期出现普遍的加速沉降现象.综合分析渤海各坳陷新生代构造样式和断裂时空展布特征,表明断裂发育总体受伸展控制,只是在中渐新世后受走滑影响.选取基本垂直渤海构造走向的6条大剖面,进行伸展量估算,并在剖面上选取虚拟井计算沉积沉降速率,结果表明,在断陷阶段,孔店组-沙四段沉积期,各坳陷沉积沉降速率较低且相差不大,发育多个沉积沉降中心;至沙三段沉积期沉积沉降速率达到最快,东营组沉积期沉积沉降速率变慢,但沉积沉降中心已从四周逐步迁移至渤中坳陷;拗陷阶段,以渤中坳陷为中心,出现的强烈沉积沉降,明显高于正常拗陷阶段沉积沉降速率.结合最新的深部探测资料,认为渤海新生代盆地的断裂展布,受中生代末先存的构造格局影响;断陷盆地的形成,则是太平洋板块俯冲的持续后退和印藏碰撞远程效应持续东进共同作用的结果;中渐新世以来的加速沉降现象,则是太平洋俯冲板片前缘向东迁移引起的岩石圈迅速冷却的最直接表现.  相似文献   

2.
海口地区火山活动初步研究   总被引:3,自引:2,他引:1       下载免费PDF全文
海口地区的马鞍岭-雷虎岭火山群是中国为数不多的几个休眠火山群之一。通过对区域火山活动期次划分、深部岩浆囊探测以及对火山类型、规模、物质组成和溶岩覆盖面积的分析,总结了海口地区火山活动的时、空、强特征。结合对火山区地震、地磁、体应变和地热等观测资料的分析,对火山区深部岩浆活动的状态进行了初步评估。研究认为海口全新世火山区最后一次火山喷发距今约4 000a左右,其现今火山活动已趋于平静,未来的火山活动可能向1605年琼州7.5级大地震震中区迁移  相似文献   

3.
从构造沉降、年轻火山群的存在和高热流的观点来看,俄勒冈Cascades地区具有较高的地热生产潜力。但是,用各种地球物理方法来提供大尺度地壳岩浆体存在的明确证据的努力失败了,这与美国西部某些其它流纹岩火山中心的情况不同。在Hood山和Newberry火山进行的一些远震残差研究没有显示出在这些火山之下存在着可探测到的尺度的地壳岩浆囊  相似文献   

4.
洋壳核杂岩是由低角度正断层的大规模拆离作用而形成的大型洋底穹窿状凸起构造.其大规模拆离作用产生的韧性构造现象,最终会随着洋盆的闭合保存在造山带的蛇绿岩中.本文以将今论古的思路,系统总结现今洋壳核杂岩的岩石-构造特征.现今洋壳核杂岩包括了上盘火山熔岩与深海沉积、拆离断层带和下盘地幔橄榄岩与辉长岩侵入体等三部分.造山带中古洋壳核杂岩在全球造山带不同程度被揭示出来,我们较为系统地总结了(西阿尔卑斯Chenaillet蛇绿岩、阿尔巴尼亚Mirdita、伊朗扎格罗斯造山带Kermanshah、西藏普兰和加拿大阿帕拉契亚的Thetford-Mine)蛇绿岩中可能的古洋壳核杂岩及其特征.通过系统的对比,我们认为古洋壳核杂岩较为普遍,其有如下鉴别特征:超基性岩-基性岩单元规模较大、直接出露洋底导致发育一定规模的蛇绿质角砾岩;基性熔岩少或缺失,一般相对是晚期产物;深海沉积物(硅泥质岩、灰岩)或枕状熔岩直接覆盖在超基性岩之上;发育强韧性剪切变形拆离断层带,局部可发育高角度正断层;蛇绿岩中发育辉长岩、斜长花岗岩等侵入脉体.总之,造山带中的蛇绿岩有相当一部分是古洋壳核杂岩,是洋底拆离断层作用形成的.蛇绿岩中的韧性变形带不一定都是就位在造山带时的变质底板成因,极有可能是初始形成洋中脊时的拆离断层成因.然而,蛇绿岩中发育的韧性变形,以前普遍被认为是蛇绿岩在仰冲就位过程中形成的.两种不同成因的韧性变形代表截然不同的地质意义,前者形成于拆离断层的伸展环境、伴随一系列伸展构造,代表新生洋盆的形成;而后者则形成于逆冲就位的挤压背景,表示蛇绿岩的就位、洋盆的消亡.造山带中含蛇绿岩质的角砾岩不一定是造山阶段隆升剥蚀的产物,也可能是初始形成洋中脊时的产物.  相似文献   

5.
中晚三叠世(延长期)鄂尔多斯盆地发育两种不同构造类型的盆地边缘,其中西南缘为强烈逆冲导致的挠曲沉降背景下发育的前陆盆地,北中部为稳定沉降的克拉通内盆地.中上三叠统延长组可划分为四4个区域性的三级层序,它们均由微角度不整合或区域性冲刷面所分隔,内部自下而上由低位体系域、湖进体系域和高位体系域构成,但盆地西南缘和北中部的层序构成在沉积样式上存在明显差异:西南缘由于逆冲造山而发育巨厚的砾岩带和不整合,北中部稳定沉降的克拉通则发育加积的河流相砂、砾岩和平行不整合.西南缘的沉积构成反映了从逆冲挠曲沉降到回弹上隆的演化过程,层序界面的形成与回弹隆起、剥蚀和冲断作用有关.前陆盆地的层序地层格架和体系域的配置受褶皱冲断带活动控制,其层序序列反映了中晚三叠世造山带向前陆盆地不断逆冲的过程.北中部的层序演化反映克拉通缓坡背景下的河流-三角洲沉积序列,由底部的粗碎屑辫状河沉积、中部的曲流河沉积和顶部的细碎屑河漫滩沉积构成,受湖平面升降变化控制.在缓坡背景下的低位体系域沉积期,由于可容纳空间有限,大量的河流沉积物只能通过侧向迁移、侵蚀和搬运,在冲积平原上形成砂体的侧向复合加积,构成特定的侵蚀不整合边界.  相似文献   

6.
华北中生代构造-岩浆活动频繁,深部岩石圈地幔性质发生变化,即克拉通发生活化作用.活化作用大致可分为三个阶段:(1)晚古生代至早侏罗世(至~170Ma),(2)中侏罗世至早白垩世早期(160~140Ma),(3)早白垩世至新生代(~140Ma以来).其中后两个阶段与古太平洋板片俯冲及后撤导致华北东部深部的岩石圈地幔置换并引起陆内浅部的盆山耦合过程是本文讨论的重点.在第一阶段,古亚洲洋俯冲和关闭引起华北北缘经历弧后拉张、碰撞挤压及碰撞后伸展等构造-岩浆活动,而且造成陆块边缘完整性的机械破坏和地幔性质的化学改造,成为后续软流圈物质上涌的通道和岩浆活动的优先发生区;受华南陆块俯冲的影响,华北南缘也发生了类似的过程.在第二阶段,蒙古鄂霍次克洋闭合及古太平洋板片俯冲剪切,引起华北北缘的两次近S-N向的挤压作用(燕山运动的A、B幕),近E-W向分布的陆缘盆地被晚中生代岩体和NE-SW断裂肢解为零星分布的盆岭省,岩浆作用由东北角向西迁移进入地块内部,同时郯庐断裂的性质由左行走滑转换为正断层,华北由早期的近S-N向的压扭性背景进入NW-SE向的弧后拉张阶段.第三阶段是华北克拉通破坏和岩石圈地幔增生的关键时期,深部难熔的克拉通型地幔被饱满的大洋型地幔置换,实现岩石圈大幅度减薄后的小幅增生增厚过程;浅部的表现是岩浆作用持续向东南迁移,陆内岩石圈薄弱带优先发生伸展变形,包括在早白垩世(140~110Ma)中部带侏罗纪逆冲断层反转为正断层、郯庐断裂的持续拉张引起中地壳拆离和大渤海湾盆地的沉降;晚白垩世至今(110Ma~),中部山带发生断陷作用形成汾渭盆地和沁水盆地,大渤海盆地内部断陷形成盆-山相间的地貌特征,苏鲁造山带则发育莱阳盆地等.华北克拉通规模小并发育陆内薄弱带,是克拉通容易破坏的内因.具这种特性的克拉通容易受周边多个俯冲构造域和上涌软流圈物质的共同影响.晚中生代(~160Ma)以来,华北克拉通破坏主要表现为周边块体的俯冲导致软流圈物质上涌、岩石圈减薄和浅部地壳滑脱,岩石圈薄弱带处(如中部山带)出现褶皱和逆冲,实现伸展背景下的局部挤压;俯冲板块后撤(~140Ma)则使上涌的软流圈回落形成岩石圈并实现地幔小幅增生置换(~125Ma)与伸展背景下浅部地壳断陷和成盆过程.因此,西太平洋板片俯冲和后撤是引起华北东部深部岩石圈地幔置换并导致陆内浅部盆-山耦合的外在动力来源,表明华北克拉通破坏是地块内部与地块边缘、深部过程与浅部盆-山耦合响应的综合地质记录,我们认为这也是燕山运动的本质.  相似文献   

7.
第三纪库车坳陷是在南天山强烈逆冲导致的挠曲沉降背景下发育的前陆盆地.区内的第三系可划分为四个区域性的沉积旋回或构造层序,它们均由微角度不整合或区域性冲刷面所分隔. 构造层序由下部水进和上部水退序列组成.每一构造层序的沉积构成反映了从前陆逆冲挠曲沉降到回弹上隆的演化过程. 构造层序界面的形成与回弹隆起、遭受剥蚀和随后的逆冲变形作用有关.第三纪前陆盆地的层序地层格架和沉积体系域的配置受到前陆构造作用的控制.从第Ⅰ至第Ⅳ构造层序的发育演化反映了第三纪南天山向库车前陆盆地不断逆冲的过程.坳陷北缘东、西部在沉积样式上存在明显差异: 库车县一线以西强烈的逆冲造山导致巨厚的山前扇砾岩带发育和角度不整合, 该线以东由于逆冲造山较弱而缺乏粗粒的扇带发育. 盆地基底的东、西分块可能是造成这种差异的深部原因.  相似文献   

8.
本文对五大连池火山群14座火山喷发口的喷发活动期、喷出的火山熔岩特征,岩浆活动期序进行了初步划分与概述,并通过火山地质地貌、新构造活动、火山口周围活化迹象进行初步调查后认为:德都地震与火山尚无直接联系.  相似文献   

9.
色尔腾山山前断裂位于鄂尔多斯块体西北角,控制着临河凹陷(河套盆地西部)的持续沉降。对色尔腾山山前断裂东段与西段转折处构造演化模式的研究,有助于提高对正断层演化规律和区域地震风险的认识。本文在研究区大比例尺活动断裂填图的基础上,通过对重点区域进行无人机微地貌的测量、探槽开挖、钻孔资料与第四纪测年等方法获取数据,并运用构造地质学、地貌学和沉积地层学等理论,综合探讨断层转折处的构造演化模式及地震危险性。通过研究认为,近东西走向的色尔腾山山前断裂西段与北西走向的东段间以三角状的转换斜坡相连。现今的转折点为应力的积累区,具有较高的地震风险。水平拉伸力的持续作用使断层不断向盆地一侧迁移,同时使断裂转折部位更加平滑。  相似文献   

10.
腾冲地区地壳速度结构的有限差分成像   总被引:1,自引:1,他引:0       下载免费PDF全文
利用流动台网和固定台站的地震观测数据,采用有限差分层析成像方法反演了腾冲及邻近地区的地壳P波速度结构,分析了腾冲火山区的岩浆活动和龙陵七级地震的深部构造成因.研究结果表明,腾冲火山区的地壳结构具有明显的非均匀性,浅表层偏低的速度主要为盆地内部的松散沉积层、新生代火山堆积及断裂附近的流体裂隙和热泉活动所致;5~15 km之间的高速体可能代表了早期火山通道内冷却固结的岩浆侵入体或难挥发的超铁镁质残留体;地壳深部的低速体则反映了熔融或半熔融的岩浆体,推断火山区下方的岩浆活动与龙陵七级地震震源区地壳深部的岩浆侵入来自同一源区--现今壳内岩浆活动的主要区域.龙陵震源区的地壳速度结构横向变化较大,怒江断裂东侧和龙陵断裂西侧为高速特征,介质应变强度较大,为应力积累的主要载体;两断裂之间的低速区向下延伸至下地壳,可能与地壳深部的岩浆侵入有关;龙陵断裂和怒江断裂明显控制了这一区域的岩浆活动,七级地震正是发生在断裂下方的速度边界附近.地壳介质强度的横向变化导致了震源区应力积累的不均一性,深部岩浆的聚集和动力作用是龙陵地区发生强震的主要原因.  相似文献   

11.
The northeastern Hainan Province is one of the areas subjected to the strongest, most frequent and longest-lasting volcanic activities in China since the Cenozoic era. Under the influence of magma and fault activities, northeastern Hainan Island has experienced many moderate and strong earthquakes in history. The Qiongshan M7.5 earthquake occurred in this region in 1605. The deformation measurement and InSAR data found a subsidence area in the south of the Qiongshan M7.5 earthquake. Small earthquakes frequently occur in this area. It has been inferred by some studies on this subsidence area, namely the Puqianwan-Fengjiawan seismic belt, that the subsidence and frequent seismic activity are related to the development of deep magma systems. Magnetotelluric methods are very sensitive to subsurface fluid, different temperature conditions, and resistivity property of the medium in the molten state. With the development of magnetotelluric three-dimensional inversion technique, using dense array magnetotelluric data in three-dimensional inversion can image the medium resistivity occurrence state and position in the volcanic area. To study the deep structure of the magma system and its relationship with seismic activity, we conducted MT observations on two profiles that cross Leihuling and Ma'anling volcanoes. Phase tensor decomposition was used to analyze the electrical structure. This paper investigates the two MT profiles using three-dimensional electromagnetic imaging technology and obtains the electrical structure of the two profiles. The result reveals the media properties and high conductivity bodies' occurrence range beneath the volcanic area in the northeastern Hainan. There are obvious differences in the electrical structure of the northeastern Hainan. The resistivity values are high in the east and low in the west. In addition, there are two high conductivity bodies in the northeast of Hainan. The high conductivity body C1 inclines to the west and locates beneath the Chengmai County area in the northwestern Hainan Island(west of the Leihuling-Ma'anling volcanoes). Its resistivity value is less than several Ωm. This low resistive body is 40km long in WE direction and 30km wide in SN direction. Its burial depth is about 2km near the HNL1 profile and 6km near the NHNL1 profile. Its bottom reaches the depth of about 25~30km, which may be close to or through the Moho surface depth of 25~26km in this area. It is speculated that the magma eruption of Leihuling-Ma'anling volcanoes did not migrate vertically from its deep part to the surface. The high conductivity body C2 locates beneath Longquan. The buried depth of C2 tends to be shallower from north to south, but there is no exposed surface in the study area, nor is it connected with the shallow low-resistivity layer. It is speculated that the C2 may be a magmatic sac trapped in the crust, but may have nothing to do with the eruption of Ma'anling-Leihuling volcanoes. The recent volcanic magma in this area comes from the lower crust and upper mantle of the ocean area to the west of Hainan Island. As magma enters the upper and middle crust, it continues to move shallowly and eastward. In this process, it should be blocked by the high resistance structure on the east side of the Changliu-Xiangou Fault and then erupt around this fault, thus forming numerous craters in this area. After the repeated eruption, deep magma channels gradually closed and volcanic activity weakened. The magma in the mid-upper crust cooled consolidated gradually, but the speed was uneven in different areas, resulting in the channels having closed down gradually in some places, and some are in the process of closing. Our results show an uneven rise and fall depth of the low resistivity body in the middle and lower crust. There is no high conductivity body in the deep part of the Puqianwan-Fengjiawan seismic belt and the subsidence area in the northeastern Hainan, which rules out the possibility that the small earthquakes are related to deep magma systems.  相似文献   

12.
古元古代是地质演化历史中一个重要转折时期,探讨其大陆动力学特征、机制、过程及其壳内响应具有重要的科学意义.本文以辽吉地区古元古代造山带为例,结合同位素年代学资料,综合分析了该区大陆动力学过程的构造、变质、岩浆、沉积等方面壳内响应特征最后,将该区深部大陆动力学过程划分为三大历史阶段:1)造山期前伸展阶段,包括建造伸展期和改造伸展期,深部底侵发生,壳内响应出现基底裂解、盖层顺层滑脱、拉张型垂向递增变质、岩浆呈席状侵位等;2)造山期挤压收缩阶段,俯冲碰撞,岩石田地幢可能出现拆沉,壳内响应出现招皱逆冲、双侧造山、侧向递增变质、碰撞型岩浆作用发生、早期岩浆底辟再就位等;3)造山期后伸展塌陷阶段,大陆岩石田在重力均衡作用下发生微弱伸展塌陷,出现环斑花岗岩侵位,等压冷却为特征的退变质表明没有明显的伸展剥蚀,没有出现明显的山根.  相似文献   

13.
The 1st crater of Naka-dake, Aso volcano, is one of the most active craters in Japan, and known to have a characteristic cycle of activity that consists of the formation of a crater lake, drying-up of the lake water, and finally a Strombolian-type eruption. Recent observations indicate an increase in eruptive activity including a decrease in the level of the lake water, mud eruptions, and red hot glows on the crater wall. Temporal variations in the geomagnetic field observed around the craters of Naka-dake also indicate that thermal demagnetization of the subsurface rocks has been occurring in shallow subsurface areas around the 1st crater. Volcanic explosions act to release the energy transferred from magma or volcanic fluids. Measurement of the subsurface electrical resistivity is a promising method in investigating the shallow structure of the volcanic edifices, where energy from various sources accumulates, and in investigating the behaviors of magma and volcanic fluids. We carried out audio-frequency magnetotelluric surveys around the craters of Naka-dake in 2004 and 2005 to determine the detailed electrical structure down to a depth of around 1 km. The main objective of this study is to identify the specific subsurface structure that acts to store energy as a preparation zone for volcanic eruption. Two-dimensional inversions were applied to four profiles across the craters, revealing a strongly conductive zone at several hundred meters depth beneath the 1st crater and surrounding area. In contrast, we found no such remarkable conductor at shallow depths beneath the 4th crater, which has been inactive for 70 years, finding instead a relatively resistive body. The distribution of the rotational invariant of the magnetotelluric impedance tensor is consistent with the inversion results. This unusual shallow structure probably reflects the existence of a supply path of high-temperature volcanic gases to the crater bottom. We propose that the upper part of the conductor identified beneath the 1st crater is mainly composed of hydrothermally altered zone that acts both as a cap to upwelling fluids supplied from deep-level magma and as a floor to infiltrating fluid from the crater lake. The relatively resistive body found beneath the 4th crater represents consolidated magma. These results suggest that the shallow conductor beneath the active crater is closely related to a component of the mechanism that controls volcanic activity within Naka-dake.  相似文献   

14.
Southern Central America is a Late Mesozoic/Cenozoic island arc that evolved in response to the subduction of the Farallón Plate beneath the Caribbean Plate in the Late Cretaceous and, from the Oligocene, the Cocos and Nazca Plates. Southern Central America is one of the best studied convergent margins in the world. The aim of this paper is to review the sedimentary and structural evolution of arc‐related sedimentary basins in southern Central America, and to show how the arc developed from a pre‐extensional intra‐oceanic island arc into a doubly‐vergent, subduction orogen. The Cenozoic sedimentary history of southern Central America is placed into the plate tectonic context of existing Caribbean Plate models. From regional basin analysis, the evolution of the southern Central American island arc is subdivided into three phases: (i) non‐extensional stage during the Campanian; (ii) extensional phase during the Maastrichtian‐Oligocene with rapid basin subsidence and deposition of arc‐related, clastic sediments; and (iii) doubly‐vergent, compressional arc phase along the 280 km long southern Costa Rican arc segment related to either oblique subduction of the Nazca plate, west‐to‐east passage of the Nazca–Cocos–Caribbean triple junction, or the subduction of rough oceanic crust of the Cocos Plate. The Pleistocene subduction of the Cocos Ridge contributed to the contraction but was not the primary driver. The architecture of the arc‐related sedimentary basin‐fills has been controlled by four factors: (i) subsidence caused by tectonic mechanisms, linked to the angle and morphology of the incoming plate, as shown by the fact that subduction of aseismic ridges and slab segments with rough crust were important drivers for subduction erosion, controlling the shape of forearc and trench‐slope basins, the lifespan of sedimentary basins, and the subsidence and uplift patterns; (ii) subsidence caused by slab rollback and resulting trench retreat; (iii) eustatic sea‐level changes; and (iv) sediment dispersal systems.  相似文献   

15.
Heterogeneous stretching, simple shear and basin development   总被引:1,自引:0,他引:1  
The models of basin development which involve either homogeneous stretching of the whole lithosphere or displacement on a lithospheric-scale shear zone, are but two end members of a range of possible extensional models. The homogeneous extension model thins the lower lithosphere beneath the thinned upper crust and superimposes a thermal subsidence basin on the earlier fault bounded basin. The shear zone model offsets the zone of lower lithospheric stretching and thermal subsidence. It is more likely that the zones of upper and lower lithospheric stretching will be heterogeneous and patchy, but will often overlap in plan view. This will produce localised uplift and subsequent thermal subsidence within the faulted basin and may explain many of the anomalies between the various stretching estimates made using different structural, stratigraphic and geophysical techniques. The model which combines heterogeneous lithospheric stretching and associated simple shear may explain: (1) variations in dip of the major detachment zones in the large basins, (2) variations in types of strain on or beneath the detachment zones, (3) regional uplift of part of a basin, to erode the earlier fault blocks, and (4) the development of volcanism in basins with only low values of upper crustal extension. The zone of stretched lower crust and lithospheric mantle may lie beneath the centre of the zone of upper crustal stretching, or to one side. It may be linked to the upper crustal zone by faults which dip consistently in one direction, or by extensional systems which change their dominant dip direction with depth, pulling out the mid-crust as one or more wedges. Possible examples are discussed from the Basin and Range province and northwest European continental shelf.  相似文献   

16.
滇西地区壳幔解耦与腾冲火山区岩浆活动的深部构造研究   总被引:4,自引:0,他引:4  
根据青藏东部边缘的深部地球物理资料,分析了滇西地区壳幔耦合和腾冲火山区岩浆活动的深部构造特征,确认了地幔各向异性与上地幔速度结构(包括P波速度和S波速度)的内在联系,指出产生这一结果的原因与以腾冲火山区为中心的地幔热物质上涌有关:上地幔顶部平均温度升高导致介质强度降低,在印支块体的侧向挤压或印缅块体的向东俯冲作用下发生韧性变形,造成滇西地区地幔各向异性的快波方向与青藏东部地壳块体的旋转方向不一致.此外,鉴于中下地壳低速层的横向非均匀性,估计韧性流动并非贯通青藏高原的东部边缘,而是被不同的构造块体和边界断裂限定在局部地区.总体而言,滇西地区下地壳的地震波速度和电阻率偏低,具备发生韧性变形的构造条件.作为地壳和上地幔之间的解耦层,它使得青藏东部地壳块体旋转产生的构造应力未能传输至上地幔.腾冲火山区的地壳结构与不同时期的岩浆活动有关,火山区东侧的高速结构代表了上新世时期火山通道内冷凝固结的岩浆侵入体或难以挥发的高密度残留物质,火山区西侧的低速结构反映了更新世以来持续至今的岩浆活动,壳内岩浆源主要分布在10~20km的深度范围内,横向尺度约为15~20km,有可能通过地壳深部的断裂与上地幔岩浆源区相连,估计腾冲火山区下方的岩浆活动将持续进行.  相似文献   

17.
It is well known that a counterclockwise rotation occurred in the Miocene in northeast Japan. However, the detailed timing and mechanism of the rotation has been debated. Moreover, there has been no research about the relationship between rotational tectonics and the evolution of sedimentary basins. We carried out paleomagnetic and rock magnetic analyses in Nishiwaga Town, Iwate Prefecture, northeast Japan, where the stratigraphy and sedimentary basin formation have previously been clarified. We found that there was a counterclockwise rotational movement of about 45° at about 15 Ma. From our results and previous studies on the tectonics and sedimentary basin development, we are able to ascertain the following tectonic history and sedimentary basin evolution in this area: (i) before the rotational movement, sandstone and mudstone were deposited in a tranquil environment with no volcanic activity coupled with slow tectonic subsidence; (ii) between 16.4–15.1 Ma and 14 Ma, a counterclockwise rotation occurred with rapid tectonic subsidence and continuous explosive volcanism; (iii) at about 14 Ma, the counterclockwise rotation ended and there was a reduction in both subsidence and volcanism. This result shows the impact that rotational tectonics can have on sedimentary basin formation.  相似文献   

18.
The Northern Junggar Basin experienced extensive subduction and a complex tectono-magmatic evolution during the Late Paleozoic,resulting in a heterogeneous distribution of volcanic rocks in the Junggar Basin.In this study,the Carboniferous tectono-magmatic evolution of the northern Luliang arc was described by exploring the petrography and geochemistry of Carboniferous volcanic rocks collected from well Y-2 and outcrop WW' in the northern Luliang Uplift.The distribution,types,and formation ages of these volcanic rocks were characterized and the volcanic sequence in well Y-1 was divided into upper and lower parts according to vertical variations in selected geochemical data.Then the petrogenesis and tectonic settings of different volcanic rocks were evaluated and this was used to infer the tectonomagmatic evolution of the northern Luliang arc during the Carboniferous.The results indicate that:(1) Carboniferous high-K calc-alkali andesite-dacite associations are distributed in the west of the northern Luliang Uplift,and Lower Carboniferous calc-alkali basalt-dacite-rhyolite assemblages are preserved in its east.(2) The intermediateacid volcanic rocks in wells Y-1 and Y-2 were derived from calc-alkali basaltic magma through melting of the juvenile lower crust,and geochemical variations indicate increasing addition of slab melting in a subduction-related arc environment.The bimodal volcanic rocks from outcrop WW' were derived from lithospheric underplating of basaltic magma in an intra-arc extensional setting.(3) The closure of the eastern Keramaili Oceanic basin occurred before the Early Carboniferous,and the tectono-magmatic difference between the east and the west of the northern Luliang Uplift appeared before the Carboniferous period.  相似文献   

19.
Summary Tectonic subsidence analysis of the preserved and reconstructed stratigraphy of the Polish Basin indicates an initial Late Permian-Early Triassic (255-241 Ma) syn-rift phase of development with a subsequent extensional rejuvenation during the Late Jurassic (ca. 157-152 Ma). Forward modelling of the subsidence data, in view of existing geophysical interpretations which show the presence of a deep Moho and a very high seismic velocity lower crustal layer beneath the Mid-Polish Trough (MPT), suggest that Permo-Mesozoic basin development may be related at least in part to the intrusion of mantle material into and densification of the lower crust rather than exclusively to crustal extension and thinning.  相似文献   

20.
本研究拾取了中国数字测震台网固定台站记录的2008—2019年期间发生在山西断陷带及邻区2级以上天然地震事件及陕西神木、府谷等3级以上非天然地震事件共25304条高质量Pn到时数据,反演了山西断陷带及邻区上地幔顶部高分辨率Pn波速度结构与各向异性.研究结果显示,山西断陷带及邻区Pn波速度结构差异较大,大同火山及以南区域、忻定盆地、太行山造山带、华北盆地南部和吕梁山局部地区表现为显著的低波速异常,而运城盆地、临汾盆地北部、太原盆地、大同盆地北部、华北盆地北部和鄂尔多斯块体呈现明显的高波速异常.大同火山下方上地幔顶部的低波速异常与Pn快波方向呈现以火山为中心的近发散状结构特征,结合已有的远震上地幔成像结果,暗示大同火山岩浆可能来源于地幔深部,岩浆的底侵或热侵蚀作用造成了该地区岩石圈的破坏以及整个华北克拉通的"活化",这一推论符合克拉通的热-化学侵蚀破坏模型.山西断陷带上地幔顶部速度异常形态较好的对应了研究区的地质构造,Pn快波速方向与地质构造的展布方向和SKS波各向异性的特征基本一致,说明变形形式以简单剪切为主,表明其形成和演化过程与上地幔物质运移过程有密切关系.  相似文献   

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