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41.
宋志冬  颜丹平 《现代地质》2019,33(5):937-956
扬子地块Rodinian造山后向伸展作用转化的过程与时间,一直是扬子地块新元古代构造演化的重要科学问题。扬子地块东南瓮安穹隆保存了新元古界板溪群至南华系的完整地层层序与角度不整合接触关系,是回答和理解新元古代造山后构造转化问题的理想区域。对新元古代浅变质板溪群沉积岩和南华纪南沱组沉积层序进行了调查,并采取系列样品进行碎屑锆石U-Pb定年分析和岩石地球化学分析。野外调查表明,南华纪南沱组角度不整合于板溪群之上;年代学分析结果表明,板溪群的沉积时代应在772 Ma之前,而南华纪南沱组沉积时代晚于691 Ma。瓮安穹隆新元古代板溪群沉积岩SiO2含量中等,SiO2/Al2O3平均值为5.53,K2O/Na2O平均值为7.14,TFeO+MgO平均值为3.47%。板溪群物源可能来自上地壳,原岩以长英质物源为主,为活动大陆边缘构造背景,其物源主要来自扬子地块西缘。南沱组沉积岩样品SiO2含量中等,SiO2/Al2O3平均值为4.69,K2O/Na2O平均值为20.41,TFeO+MgO含量平均值为6.64%;碎屑沉积岩稀土元素球粒陨石标准化曲线与上陆壳相似,以轻稀土富集、显著的铕负异常和重稀土平坦为特征。南沱组沉积岩物源可能来自上地壳,原岩以长英质物源为主,有少量中性岩混入,具有裂谷背景特征。综上所述,认为瓮安穹隆板溪群—南沱组地层层序代表了从造山作用向造山后伸展裂谷转化过程,其中板溪群可能与碰撞造山作用对应,主体约在772 Ma结束,而造山后裂谷的形成在691 Ma之后,因此,从造山作用向造山后伸展转化的时间大约为772~691 Ma。  相似文献   
42.
拿日雍错片麻岩穹窿位于特提斯喜马拉雅带的东部,穹窿边部淡色花岗岩脉形成于21.8±0.3Ma,穹窿核部主体淡色花岗岩的结晶年龄为20.1±0.1Ma,其中1件样品记录了~17.3Ma热液蚀变事件。大部分淡色花岗岩具有以下特征:(1)较高的Si O2(72.9%),Al2O3(14.7%)和A/CNK(1.1),较低的Fe O、Mg O、Mn O和Ti O2;(2)高度变化的大离子亲石元素(如Rb、Sr、Ba)和高场强元素(如Nb、Ta、Hf、Th)和Rb/Sr、Nb/Ta、Zr/Hf比值;(3)富集轻稀土元素,亏损重稀土元素,Eu和Nd都显示负异常(Eu/Eu*0.7,Nd/Nd*=0.5~0.8);(4)Sr同位素比值变化范围较大(87Sr/86Sr(t)=0.7132~0.7330),但Nd同位素比值一致(εNd(t)=-12.4~-10.9)。这些特征表明:拿日雍错淡色花岗岩形成于20Ma,是变泥质岩部分熔融作用的产物,经历了不同程度的斜长石、锆石、独居石、磷灰石、富Ti矿物等的分离结晶作用。  相似文献   
43.
湘中龙山穹窿的构造演化   总被引:1,自引:0,他引:1  
汪劲草  彭恩生 《湖南地质》1999,18(4):229-231
湘中龙山穹隆是一个复合成因的穹窿。加里东期表现为共轴而非等势挤压造山,印支期经历了非共轴而等势的挤压造山。早期的构造样式为北东向的紧密线性倒转褶皱,晚期的构造样式为北东向的短轴背斜。  相似文献   
44.
中山站-Dome A断面是表层雪稳定同位素组成分析的理想区域,沿线进行δ18O、δD和d的空间分布及环境影响因素研究对反映东南极地区的气候变化和物质来源具有关键意义。因而,本文基于线性回归及相关性分析方法,详细探究了断面上多种环境因素与表层雪稳定同位素分布的空间关系。结果表明,温度和地理因素与同位素比值之间有显著相关关系,且海拔是地理因素中的主要影响因素,随海拔上升表层雪的δ18O呈线性下降趋势。另外,通过断面上δ-T斜率与南极其他断面对比,发现斜率可能具有冰盖近岸和内陆地区较低的区域性特征,而造成这一现象的原因是水汽源区的改变和低温条件下水汽过饱和时的同位素动力分馏。最后,d的空间分布在沿海区域和内陆区域也有不同,推测主控因素分别是水汽源区条件和温度。  相似文献   
45.
Chemical Th–U–total Pb (CHIME) dating of monazite by electron probe microanalyzer (EPMA) and proton microprobe (PIXE) was carried out on felsic granulites from Stary Gierałtów, Poland, which represent part of the Orlica-Śnieżnik Dome in the NE Bohemian Massif. Analyzed monazite is characterized by mosaic zoning rather than simple core-to-rim growth, and strontium contents of up to 750ppm. An isochron age of 347 ± 13Ma represents timing of amphibolite-facies metamorphism, in agreement with previously published estimates.  相似文献   
46.
Southern Cross, where gold deposits are sited in narrow greenstone belts surrounding granitoid domes, was one of the earliest gold mining centres in Western Australia. SHRIMP U–Pb zircon and Pb‐isotope studies of the largest granitoid dome, the Ghooli Dome (80 × 40 km), provide important constraints on the crustal evolution and structural history of the central part of the Archaean Yilgarn Craton, Western Australia, which includes Southern Cross. The north‐northwest‐south‐southeast‐oriented ovoid Ghooli Dome has a broadly concentric foliation that is subhorizontal or gently dipping in its central parts and subvertical along its margins. Foliated granitoids in the dome are dated at ca 2724 ± 5 and 2688 ± 3 Ma using the SHRIMP U–Pb zircon and Pb–Pb isochron methods, respectively. These new data, together with the published SHRIMP U–Pb zircon age of 2691 ± 7 Ma at another locality, 20 km from the centre of the Koolyanobbing Shear Zone, suggest that the Ghooli Dome was emplaced at ca 2.72–2.69 Ga. Because the Ghooli Dome and the other domes, which are enveloped by narrow greenstone belts, are cut by the >650 km‐long and 6–15 km‐wide Koolyanobbing Shear Zone, the ca 2.69 Ga age is interpreted as the maximum age of the last major movement on this structure. The pre‐2.69 Ga history, if any, of the shear zone remains unknown. The shear zone is intruded by an undeformed porphyritic granitoid which has a SHRIMP U–Pb zircon age of 2656 ± 4 Ma. This age is, thus, the minimum age of major movement along this shear zone. Post‐gold mineralisation pegmatitic‐leucogranite from the Nevoria gold mine has a SHRIMP U–Pb zircon age of 2634 ± 4 Ma, with xenocrystic zircon cores of ca 2893 ± 6 Ma, constraining the minimum age of gold mineralisation there to ca 2.63 Ga. The ca 2.72–2.69 Ga granitoids also contain ca 2.98 and 2.78 Ga xenocrystic zircon cores, suggesting an extensive crustal prehistory for their source. Whereas there is a general temporal relationship between the periods of older (ca 3.0 Ga) and younger (ca 2.80 and 2.73 Ga) volcanism and the older (2.98, 2.78 and 2.72–2.69 Ga) granitoid intrusions, there is no known volcanism temporally associated with the 2.65–2.63 Ga granitoid intrusions in the Yilgarn Craton. Other heat sources and/or tectonic processes, required for the generation of these intrusions, are interpreted to be related to a lithospheric delamination event related to continental collision.  相似文献   
47.
The Ice, Cloud and Land Elevation Satellite (ICESat) is Earth's first polar orbiting satellite carrying a laser altimeter, launched fromVandenberg Air Force Base California U. S on January13, 2003.The Geoscience Laser Altimeter System(GLAS) on the ICESatw…  相似文献   
48.
对东南极洛多姆冰帽16个地点粒雪晶粒平均面积的详细研究表明,表层数米内晶粒的迅速生长在低积累区较为显著,随积累率增大逐渐减弱,原因可能是随积累率增大粒雪在近表层停留时间变短。晶粒平均面积随深度及年代的变化都可以较好地用线性关系近似表示。由于采样地点间积累率的巨大差别,积累率对晶粒平均面积深度关系影响较大。随积累率增加,晶粒平均面积的增加速率随深度明显减小。晶粒生长速率随温度的关系在-17℃左右开始和Gow(1975)的关系偏离,反映出晶粒生长过程的自扩散激活能可能和温度有关,其值随温度升高而增大。  相似文献   
49.
A dome-shaped layer can be selected as a storage site for fluid injection. In this study, we develop a mathematical model for simulating transient head distribution in a heterogeneous and anisotropic dome-shaped layer due to a constant-head injection in a fully penetrating well. In the model, a form of step change is adopted to approximate the upper and lower boundaries of the dome and then the layer is split into two regions. The Laplace-domain solution of the model is developed using the Laplace transform and method of separation of variables. The transient injection rate at wellbore can then be obtained based on Darcy’s law and Bromwich integral method. The predicted head contours from the head solution show significant vertical flow components near the location of step change in the dome reservoir. The results of sensitivity analysis indicate that the hydraulic conductivity is the most sensitive parameter and the specific storage is the least sensitive one to the injection rate after a short period of injection time. In addition, the injection rate for a dome reservoir is also very sensitive to the change of the height for the reservoir near the injection well (first region) at a very early injection time. In contrast, the injection rate is more sensitive to the change of the height of the second region than that of the first region at late time. This analytical solution may be used as a primary tool to assess the capacity of fluid injection to various dome reservoirs.  相似文献   
50.
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