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141.
本文依据1:5万区调资料,扼要介绍了武宁陆相红盆填图单位的拟定、表示方法及工作原理的应用,重点叙述了红盆内多个冲积扇体特征及其之间的叠覆关系,阐明了盆缘断裂是控制红盆成生、发展演化的主导因素。对红盆成生及演化、时代也作了初步探讨。 相似文献
142.
143.
1∶5万庐山地区区域地质调查和专题研究,在星子县黄岭一带发现一套巨厚层状复成分的变质砾岩。根据该变质砾岩的砾石成分、变形组构及区域分布特点,以及上部(双桥山群)与下部(星子岩群)地层在变质与变形方面存在明显差别,认为变质砾岩应属于双桥山群的底部层位,是中元古界双桥山群与下伏下元古界星子岩群不整合关系的佐证。由于受后期构造叠加改造的影响,现今二者呈断层或隐蔽不整合接触关系。 相似文献
144.
The Mount Raymond transverse zone (MRTZ) forms the east-west-trending boundary between the Wyoming salient of the Sevier fold-thrust belt and the Uinta/Cottonwood arch in north-central Utah. Major faults in the zone dip 40° to 45° north. Our structural analysis indicates that the MRTZ contains both contractional and extensional structures. The contractional structures (thrusts and related folds) initially formed as part of a southeast-verging, northeast-trending thrust system. This system gradually curved and merged to the north with the east-verging Absaroka thrust system in the apex of the Wyoming salient. The contrast in trend between structures in the MRTZ and those in the apex of the Wyoming salient reflects the initial curvature of the salient. This curve formed because the stratigraphic sequence involved in thrusting thinned gradually southward, toward the axis of a proto-Uinta arch. The present east-west trend of the MRTZ developed during Laramide uplift of the Unita/Cottonwood arch, an event which tilted the faults into their present position. Cenozoic crustal extension subsequently reactivated segments of the MRTZ. In sum, the evolution of the MRTZ illustrates how post-thrusting processes can affect the map-view geometry of thrust belts to create transverse zones. 相似文献
145.
Santanu Kumar Bhowmik 《Journal of Earth System Science》1997,106(3):131-146
A suite of rocks from Borra Carbonate Granulite Complex (BCGC) in the Eastern Ghats granulite belt displays superposed structures
and overprinted mineral assemblages that reveal multiple episodes of tectonothermal reworking of the complex under granulite
facies condition. Five distinct episodes of deformation (D1, D2, D3, D4 and D5) and four phases of metamorphism (M1, M2, M3 and M4) are recorded. The signature of the earliest tectonothermal event, D1 is a gneissic foliation (S1) denned by segregation of peak granulite facies mineral assemblages corresponding to prograde M1 metamorphism. M2 metamorphic overprint represents an episode of near-isobaric cooling of the complex under a static condition. D2 represents an episode of ductile deformation manifested by isoclinal folding (F2) and associated extensional structures, within a broad framework of coaxial bulk deformation. The present study reveals that
D2 took place subsequent to M2 - Subsequent deformation, D3, produced F3 folds and also deformations of boudins formed during D2. M3, which is synchronous with F3, represents a near isothermal decompression of the BCGC. This was followed by a weak structural readjustment (D4), producing E-W cross folds. The latter was not, however, associated with any recognizable petrological reworking. In the
terminal events, deformation (D5) and mineral reactions (M4) were localized along narrow intersecting shear zones. The latter acted as channelways for carbonic and still later hydrous
fluid infiltration. The available thermobarometric data from BCGC and other areas of the Eastern Ghats belt reveal that reworking
during M2 and M3 ensued in a thermally perturbed regime. The high thermal regime might also have persisted during carbonic fluid infiltration
related to terminal reworking (M4). 相似文献
146.
熔体及其活动在造山带的演化中发挥了重要作用。熔体活动发迹了地壳应力作用方式而诱发形成剪切带或断层;熔体活动调整块体间的位移而影响造山带的变形; 相似文献
147.
由震源机制和地震波各向异性探讨青藏高原岩石圈变形 总被引:9,自引:1,他引:9
本文据青藏高原天然地震震源参数和地震波各向异性资料,讨论了高原岩圈不同圈层的变形特性。 相似文献
148.
149.
根据昆仑山口西8.1级地震前后GPS测点的位移速率,用弹性模型公式计算了地壳应变参数.应变参量的变化表明,震前在地震区附近以压应变为主,应变速率较大.位移速率矢量显示出震前的震中地区相对周围为活动性较弱的“稳定”地区.地壳的形变和应变揭示出孕震体在挤压状态下积累了较高的应变势能.8.1级地震的同时期由于地壳释放了巨大的应变能而应变速率变化显著.计算结果表明,地震所产生的应变达到4.5×10-6以上.发震断裂带的平均左旋走滑量是3.31m(89°E~96°E). 相似文献
150.
利用差分干涉雷达测量技术获取的宏观震中区的同震形变场,结合对地震活动性、震源机制、野外考察等资料分析,对昆仑山口西8.1级地震同震形变场特征进行了研究. 结果表明:宏观震中位于库赛湖东北侧,宏观震中区发震断层可分为两个形变中心区域,其中西段长约42 km,东段长约48 km,整个发震断层主破裂段长90 km;由干涉形变条纹分布格局可清楚地判断出发震断层的左旋走滑特征;断层两盘变形特征不同,南盘变形程度明显大于北盘;宏观震中附近最大斜距向位移量为288.4 cm,最小斜距向位移量为224.0 cm,宏观震中发震断层最大左旋水平位错为738.1 cm,最小地面左旋水平位错为551.8 cm. 相似文献