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51.
在燕山地区东部的滦县等地,太古代至早元古代结晶基底之上发育一套百余米厚的陆源粗碎屑沉积。长期以来,许多研究者将其与蓟县地区长城系近底部的陆相沉积地层对比,认为属于常州沟组。1980年,钱祥麟等经过系统的研究,提出这套地层为晚长城纪大红峪期的超覆沉积。此后,这套粗碎屑沉积的性质及其与盆地整体沉积环境系统的关系。一直未能确定。近年来,笔者为此进行了初步的沉积学研究,结果表明这套粗碎屑沉积与其上的碳酸盐沉积构成了较为典型的 Gilbert 型扇三角洲沉积相。该扇三角洲沉积的确立,为燕山地区中一晚元古代坳拉槽南东缘盆地界线的限定以及早期盆地拉张过程中的沉积充填方式的研究,提供了重要的依据。 相似文献
52.
TM极化时,当测点越过界面时视电阻率均发生变化,基底较深时能放大界面附近的异常,当基底较深、频率较高时,高阻一侧相位低于45°,低阻一侧相位高于45°。TE极化时,只有基底为高阻时越过界面时视电阻率才发生变化,当基底为高阻且频率较高时,相位在界面两侧发生变化。通过岩脉时若相位无变化,岩脉是窄的。 相似文献
53.
The enigma of the origin and development of plains-type folds, as they were christened in the early 20th Century, essentially has been solved. The folds, a considerable distance from the tectonic disturbance, were formed by draping of sediments over differentially displaced Precambrian basement fault blocks. These Precambrian basement fault blocks controlled the location, size, and shape of the folds. Forces were transmitted through the rigid basement causing readjustment along the indigenous fracture/fault pattern formed much earlier. In the U.S. Midcontinent, the crystalline basement is overlain by a thin veneer of sediments, and once the structures were formed, they continued to develop as evidenced by features in the overlying sediments. As the stress was transmitted through the basement and then relaxed, the fault blocks moved differentially in concert to these outside forces. Sediment compaction and nondeposition over structural topographic highs reacted accordingly to form the features as seen today. To determine the structural history, structural closure on different horizons on the anticline is plotted in their appropriate stratigraphic position at depth. This gives a compaction line for each tectonically coherent segment. Similar segments show a relatively straightline with offsets at major unconformities indicating breaks in the continuum. It is at these breaks that the section can be stretched until the compaction line matches as a continuum with the resulting gap giving the approximate amount of missing section for that part of the rock column. Conversely, the amount of closure on a structure at depth for each line segment can be estimated by extrapolating downward in that segment. This technique to determine depth of burial and thus the amount of missing stratigraphic section from well data at numerous locations has been compared with estimates made by other methods and the results are similar. Where no other data are available or for quick estimates, then, it is proposed that this approach will give reasonable results and that the values can be used as a constraint in basin modeling. 相似文献
54.
55.
中天山前寒武纪基底中新发现铁铜矿床 总被引:2,自引:0,他引:2
池西铁铜矿床是近年来新发现的赋存在中天山前寒武纪基底卡瓦布拉克群内的块状硫化物型矿床,具上铁下铜的分带性,在成因上可能与海相火山作用有关。已发现的2个矿体呈层状、透镜状产出,产状与围岩地层一致。该矿床可能是中天山地区卡瓦布拉克群内首次发现的块状硫化物型矿床,对今后在中天山乃至东天山地区寻找与海相火山作用有关的块状硫化物型矿床(尤其是铁铜共生矿床)具有重要的参考意义。 相似文献
56.
塔里木北缘前寒武基底隆升剥露史:来自磷灰石裂变径迹的证据 总被引:3,自引:5,他引:3
库鲁克塔格隆起位于塔里木盆地北缘,广泛出露前寒武基底岩石。辛格尔村附近出露的太古宙杂岩,包括灰色片麻岩、角闪岩、片岩、混合岩和大理岩。新元古代地层出露在库鲁克塔格隆起西部的兴地、西山口、辛格尔和杀马山附近,不整合在古元古代和中元古代的片麻岩、角闪岩和片岩之上,并被早古生代的地层不整合。因此,该地区是了解塔里木盆地前寒武基底热演化史的理想地区。本研究的目的是为了探索:①塔里木基底岩石最初于何时剥露于地表?②塔里木基底剥露以后是否经历过再次埋藏和剥露?③塔里木基底岩石构造热演化过程对大陆边缘不同构造事件的响应。为了获取塔里木北缘剥露史和冷却过程信息,我们开展了裂变经迹的研究。含磷灰石的样品采自库鲁克塔格隆起的兴地断裂两侧。样品池年龄介于146.0±13.4和67.6±6.7Ma 之间,平均经迹长度介于.11.79±0.14和13.89±0.27μm之间。根据样品年龄和样品所处的构造位置,样品可以分为3组。A 组样品包括 F2、F3、F4、F5和 F8,裂变经迹表观年龄约100~110Ma,通常位于未遭断层变形的地区。B 组样品包括 F7、F9和 F10,裂变经迹表观年龄小于80Ma,构造上位于断层上盘并靠近断层。C 组样品 F11具有最大的裂变经迹表观年龄146.0±13.4Ma。热模拟表明,库鲁克塔格地区的隆升剥露作用可以划分为四期,分别是早侏罗世晚期(180Ma)、晚侏罗世—早白垩世(144~118Ma)、晚白垩世早期(94~82Ma)和新生代晚期(约10Ma)。裂变经迹记录的库鲁克塔格多阶段隆升作用,是对亚洲南缘多期地体碰撞增生的响应。 相似文献
57.
用射线分布分析法对伽师强震群区的高分辨折射地震剖面资料进行了更进一步的分析处理, 得到了伽师强震群区更完整的基底界面结构特征. 结果表明,在伽师强震群区地壳上部存在两个明显的结构界面:第一个界面的结构连续、完整,其埋深变化不大, 在2.6~3.3 km之间,为一向天山方向逐渐抬升、 近平直的倾斜界面;第二个界面的埋深变化较大, 在8.5~11.8 km之间,为古老的塔里木盆地结晶基底. 在约37 km桩号附近结晶基底有近2.5 km的深度突变, 推断可能是伽师强震群区超基底断裂所致. 以该断裂为界,结晶基底分为西南、东北两段. 每段内界面的埋深变化不大, 西南段的埋深约11.5 km, 东北段的埋深约为8.5~9.0 km,该段在从西南向东北整体抬升的背景上略有上隆,反映出在塔里木地块西北缘特殊的构造环境下上部地壳的变形特征. 相似文献
58.
藏东波密-察隅地区新元古代-寒武纪波密群研究新进展 总被引:1,自引:0,他引:1
藏东新元古代—寒武纪波密群由一套浅变质的活动大陆边缘浊积岩和碰撞型岛弧中酸性火山岩组成,化石稀少,缺乏时代依据。1∶20万区调和新一轮1∶25万区调修测专题研究在波密、察隅、贡山一带共采获微古植物化石21属50种,均为青、皖、浙、赣及滇中地区新元古代青白口纪、震旦纪及部分寒武纪早期较原始类型的常见分子。区域上可与高喜马拉雅的肉切村群,滇西的勐统群、公养河群和缅甸的Chaung Magyi群相对比。上述波密群活动大陆边缘浊积岩、碰撞型岛弧火山岩在经历了泛非末期壳源重熔花岗岩侵位(500~600Ma)和褶皱变质作用(644~664Ma)之后,成为冈瓦纳大陆北缘增生褶皱变质基底的一部分。 相似文献
59.
对江南-雪峰带构造属性的讨论 总被引:4,自引:0,他引:4
讨论了江南-雪峰山“隆起带”的性质问题,它既不是造山带的“厚皮构造”,也不属于沉积盖层褶皱的“薄皮构造”,而是“过渡型的基底拆离式”的构造。其发生机制是印支—早燕山运动期间由SE向NW(同时派生由S向N、由E向W)的基底拆离和推覆,成为控制整个扬子板块海相中古生界盆地改造变形的动力来源和主导因素,也控制了海相油气的形成与聚集。 相似文献
60.
The Meatiq dome (Eastern Desert, Egypt) a Precambrian metamorphic core complex: petrological and geological evidence 总被引:2,自引:0,他引:2
P. NEUMAYR G. HOINKES J. PUHL A. MOGESSIE & A. A. KHUDEIR 《Journal of Metamorphic Geology》1998,16(2):259-279
The Meatiq basement, which is exposed beneath late Proterozoic nappes of supracrustal rocks in the Central Eastern Desert of Egypt, was affected by three metamorphic events. The ophiolite cover nappes show only the last metamorphic overprint. The M1 metamorphic event (T ≥750 °C) is restricted to migmatized amphibolite xenoliths within the Um Ba′anib orthogneiss in the structurally lowest parts of the basement. Typical upper amphibolite facies M2 mineral assemblages include Grt–Zn-rich Spl–Qtz±Bt, Grt–Zn-rich Spl–Ms–Kfs–Bt–Sil–Qtz and locally kyanite in metasedimentary rocks. The mineral assemblages Ms–Qtz–Kfs–Sil in the matrix and Sil–Grt in garnet cores indicate that peak M2 P–T conditions exceeded muscovite and staurolite stabilities. Diffusional equilibration at M2 peak temperature conditions caused homogeneous chemical profiles across M2 garnets. Abundant staurolite in garnet rims and the matrix indicates a thorough equilibration during M2 at decreasing temperature conditions. M2 P–T conditions ranged from 610 to 690 °C at 6–8 kbar for the metamorphic peak and 530–600 °C at about 5.8 kbar for the retrograde stage. However, relic kyanite indicates pressures above 8 kbar, preceeding the temperature peak. A clockwise P–T path is indicated by abundant M2 sillimanite after relic kyanite and by andalusite after sillimanite. M2 fluid inclusions, trapped in quartz within garnet and in the quartz matrix show an array of isochores. Steepest isochores (water-rich H2O-CO2±CH4/N2 inclusions) pass through peak M2 P–T conditions and flatter isochores (CO2-rich H2O-CO2±CH4/N2 inclusions) are interpreted to represent retrograde fluids which is consistent with a clockwise P–T path for M2. The M3 assemblage Grt–Chl in the uppermost metasedimentary sequence of the basement limits temperature to 460 to 550 °C. M3 temperature conditions within the ophiolite cover nappes are limited by the assemblage Atg–Trem–Tlc to<540 °C and the absence of crysotile to >350 °C. The polymetamorphic evolution in the basement contrasts with the monometamorphic ophiolite nappes. The M1 metamorphic event in the basement occurred prior to the intrusion of the Um Ba′anib granitoid at about 780 Ma. The prograde phase of the M2 metamorphic event took place during the collision of an island arc with a continent. The break-off of the subducting slab increased the temperature and resulted in the peak M2 mineral assemblages. During the rise of the basement domain retrograde M2 mineral assemblages were formed. The final M3 metamorphic event is associated with the updoming of the basement domain at about 580 Ma along low-angle normal faults. 相似文献