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121.
ABSTRACT Thermobarometric studies on various granulite facies areas along the Prydz Bay coast, East Antarctica (73°-79°E, 68°-70°S), show that, at around 1100 Ma, during a late Proterozoic orogeny, the rocks of the Larsemann Hills suffered a lower pressure metamorphic peak than the surrounding areas. Along the Prydz Bay coast, the rocks affected by this event include parts of the Vestfold Hills block plus all of the Rauer Group, the Larsemann Hills and the Munro Kerr Mountains. The dykes in the south-west corner of the Vestfold Hills were recrystallized during this event with little deformation at temperatures not quite as high as in the areas further south-west (650°C, 6.5 kbar) (Collerson et al., 1983), the Rauer Group was metamorphosed at 800°C and 7.5 kbar (Harley, 1987a), the Larsemann Hills at 750°C and 4.5 kbar, and the Munro Kerr Mountains probably at around 850°C and 5 kbar. Retrograde equilibration in the different areas occurred during decompression to about 10 km depth in all areas, followed by isobaric cooling at this depth. This paper shows that the peak metamorphism in the Larsemann Hills occurred at a pressure which is too low to have been the consequence of thermal relaxation of overthickened crust with normal mantle heat flow. Although other areas in Prydz Bay were metamorphosed at sufficiently high pressures so that their decompression paths are not inconsistent with a continental collision model, the inferred pre-metamorphic peak histories and the requirement of consistency with the Larsemann Hills, make it unlikely that collision followed by erosion-driven decompression is an appropriate model. We suggest that the thermal regime of the crust in the Larsemann Hills region was controlled by a perturbation in the asthenosphere, with magma invasion of the crust. We suggest that the 500 Ma event, represented in Prydz Bay by granitic outcrops at Landing Bluff and by several K/Ar ages from the Larsemann Hills area, was responsible for the final excavation of the terrane.  相似文献   
122.
本文以滇西澜沧变质带中最为广泛分布的造岩矿物—白云母为对象,详细研究和 分析了其成分、多型类型及ba值等,探讨了白云母的发育规律。研究结果表明,本带中绝大多数白云母为多硅白云母,且为3T+2M,型,与蓝闪石共生的则以3T多硅白云母为主。此外,斓沧变质 带经历了蓝闪石片岩亚相的高压变质作用,与古特提斯构造演化密切相突,并可与世界著名的高 压带对比。  相似文献   
123.
贵州长顺代化石炭系中间界线的沉积相研究   总被引:3,自引:3,他引:3  
周志澄 《地层学杂志》1994,18(1):1-8,T002
在碳酸盐微相的详细研究基础上,贵州长顺代化下、上石炭统剖面由下至上可分出5个主要沉积相:盆地相、开阔海陆架相、下斜坡相、中斜坡相和上斜坡相,下、上石炭统界线处于连续沉积的中斜坡相内。  相似文献   
124.
变质流体研究某些重要进展   总被引:1,自引:0,他引:1  
着重介绍了近年来国内外在变质流体与变质矿物共生组合,变质流体与变质反应温度,变质流体不混溶性以麻粒岩相变质流体特征研究方面所取得的一些重要进展。  相似文献   
125.
黄晶莹 《湖南地质》1994,13(2):71-74
东山峰背斜寒武系地层分布区内,B,Li元素的水系沉积物测量平均值分别为177.78×10-6、220.0×10-6,衬值分别为2.32、5.07,Rb/k比值为0.0062。这些地球化学特征具典型的指相意义,反映出本区在早寒武世晚期至中、晚寒武世期间为一高盐度、强蒸发的泻湖相沉积环境,可与现代盐湖相环境类比。  相似文献   
126.
济阳坳陷上第三系的沉积特征及沉积相的纵向演化规律   总被引:2,自引:0,他引:2  
本文根据岩性特征、沉积构造、砂体厚度和测井曲线特征等资料,对4口岩心井进行了沉积相分析,详细研究了不同时期的河流类型及沉积相的演化规律,从而认为济阳凹陷上第三系沉积大体经历了3个阶段:早期的冲积扇一辫状河阶段,中期的辫状河一低弯度曲流河阶段及晚期的高弯度曲流河阶段,同时分析了不同砂体的油气储集性能。  相似文献   
127.
济阳坳陷上第三系馆陶组上段沉积相研究   总被引:1,自引:0,他引:1  
利用地质资料、测井资料、地震资料及分析化验资料对济阳坳陷上第三系馆陶组上段岩相古地理特征进行了全面系统地研究。首先从岩性、沉积结构和构造、砂体形态、电性特征、地震反射等方面论证馆陶组上段为山麓洪积相和河流相沉积,其中它们又可进一步细分为10种亚相或微相。其次,详细论述了沉积相的平面展布,同时还指出了油气分布与沉积相带的关系。此外,本文还指出馆陶组上段沉积期的物源方向、河流流向、最终汇水区及当时的古气候条件等。  相似文献   
128.
傅碧宏 《沉积学报》1995,13(4):153-160
根据塔里木盆地西北缘中奥陶统和下志留统各组岩石的光谱特征分析,选择了TM3/1(Y)2/3(M)7/5(C)减色比值合成影像对研究区岩石地层层序进行划分和对比,划分出O12、O22、O32、S11和S21等5个影像岩石地层单元,它们与研究区的岩性组一致,但其精度高于研究区1:20万地质图。通过影像岩石地层的对比研究发现,研究区西部皮羌断裂以西在中奥陶世几乎未接受沉积,皮羌断裂以东出现了坎岭组,再往东至研究区东部,中奥陶统沉积较全;早志留世早期研究区西部沉积了海相红层,往研究区东部则相变为海相绿色地层。尤其是通过TM比值图像的分析,发现前人认为分布很局限,但具有很大生油潜力的印干组在研究区分布范围较广,并推断其沉积中心位于与研究区相邻的塔北隆起和北部坳陷一带。这为塔里木盆地油气评价和勘探提供了新的资料,并表明TM遥感数据的应用是沉积盆地油气勘探研究中的一种很有潜力技术方法。  相似文献   
129.
The Main Zone of the Hidaka Metamorphic Belt is an uplifted crustal section of island-arc type. The crust was formed during early Tertiary time, as a result of collision between two arc–trench systems of Cretaceous age. The crustal metamorphic sequence is divided into four metamorphic zones (I–IV), in which zone IV is in the granulite facies. A detailed study of the evolution of the Hidaka Belt, based on a revised P–T–t analysis of the metamorphic rocks, notably a newly found staurolite-bearing granulite, confirms a prograde isobaric heating path, after a supposed event of tectonic thickening of accretionary sedimentary and oceanic crustal rocks. During the peak metamorphic event (c. 53 Ma), the regional geothermal gradient attained 33–40° C km?1, and the highest P–T condition obtained from the lowest part of the granulite unit is 830° C, 7 kbar. In this part, XH2O of Gt–Opx–Cd gneiss is about 0.15 and that of Gt–Cd–Bt gneiss is 0.4. The P–T–XH2O condition of the granulite unit is well within a field where fluid-present partial melting of pelitic and greywacke metamorphic rocks takes place. This is in harmony with the restitic nature of the Gt–Opx–Cd gneiss in the lowest part of the granulite unit. The possibility that partial melting took place in the Main Zone is significant for the genesis of the peraluminous (S-type) granitic rocks within it. The S-type granitic rocks in this zone are Opx–Gt–Bt tonalite in the granulite zone, Gt–Cd–Bt tonalite in the amphibolite zone, and Cd–Bt–Mus tonalite in the Bt–Mus gneiss zone. The mineralogical and chemical nature of these strongly peraluminous tonalitic rocks permit them to be regarded as having been derived from S-type granitic magma generated by crustal anatexis of pelitic metamorphic rocks in deeper crust.  相似文献   
130.
On the basis of fluid inclusion evidence, pervasive influx of deep-seated CO2-rich fluids has been invoked to account for mid- to upper amphibolite facies (M2B) metamorphism on the island of Naxos (Cyclades, Greece). In this paper, mineral devolatilization and melt equilibria are used to constrain the composition of both syn- and post-peak-M2B fluids in the deepest exposed levels of the metamorphic complex. The results indicate that peak-M2B fluids were spatially and compositionally heterogeneous throughout the high-grade core of the complex, whereas post-peak-M2B fluids were generally water-rich. The observed heterogeneities in syn-M2B fluid composition are inconsistent with pervasive CO2-flushing models invoked by previous workers on the basis of fluid inclusion evidence. It is likely that few CO2-rich fluid inclusions on Naxos preserve fluids trapped under peak metamorphic conditions. It is suggested that many of these inclusions have behaved as chemically open systems during the intense deformation that accompanied the uplift of the metamorphic complex. A similar process may explain the occurrence of some CO2-rich fluid inclusions in granulite facies rocks.  相似文献   
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