首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 453 毫秒
1.
特提斯喜马拉雅二叠纪-白垩纪中-基性火山岩研究进展   总被引:10,自引:1,他引:10  
介绍了特提斯喜马拉雅带中—基性火山岩的研究进展,报道了新近在该带中部地区二叠系到白垩系地层中发现的11个层位的中—基性火山岩,讨论了在特提斯喜马拉雅火山岩研究中存在的一些问题及其在反演印度大陆北缘大地构造属性方面的意义。据目前已有的研究成果,认为特提斯喜马拉雅带的二叠纪火山活动可能与新特提斯洋的开启有成生联系,中生代火山事件则主要与印度大陆北缘不同时期的伸展活动有关。新近发现的中—基性火山岩的科学意义体现在3个方面:查明印度大陆北缘二叠纪—白垩纪长达225Ma时间跨度范围内的大地构造属性;了解印度大陆北缘构造活动的时空演化规律,重建特提斯的构造演化格架,为全球对比提供依据。  相似文献   

2.
雅鲁藏布江开合带蛇绿岩地层   总被引:11,自引:0,他引:11  
朱占祥  滕云 《地层学杂志》1996,20(4):299-304
对西藏地层清理发现,沿雅鲁藏布江构造带分布的蛇绿岩,为具有类同正常沉积和沉积火山岩一样的有层、有序、有沉积构造及时代新老关系的蛇绿岩地层,它是特提斯洋开裂形成期的产物,赋予地层学的涵义,命名为雅鲁藏布江蛇绿岩群,从下至上建立变质橄榄岩组、堆积杂岩组、辉绿岩床(墙)组、枕状熔岩组及放射虫硅质岩、浊积岩组。它们构成完整的五套结构地层组合,生成时代为侏罗纪-白垩纪。新近区调成果表明,沿雅鲁藏布江构造带尚有中三叠世-晚三叠世时期蛇绿岩地层存在的可能性。雅鲁藏布江侏罗纪-白垩纪地层区划,其北与冈底斯-念青唐古拉地层区的界线,应划在日喀则群北界;其南应是雅鲁藏布江蛇绿岩群以南为界,南界同时是板块碰撞闭合边界或构造区划边界。  相似文献   

3.
于田县幅、伯力克幅地质调查新成果及主要进展   总被引:2,自引:9,他引:2  
发现其曼于特早古生代蛇绿混杂岩带和二叠纪普鲁-阿羌裂谷型火山岩带。确定苏巴什蛇绿混杂岩带的形成时代为石炭纪-中二叠世。查明阿尔金断裂延人西昆仑表现为转换断层的性质。认为其曼于特蛇绿混杂岩与库地蛇绿岩相当,代表震旦纪-早古生代原特提斯多岛洋内亲塔里木板块的小洋盆;苏巴什蛇绿混杂岩带归属于晚古生代古特提斯沟-弧-盆体系,为弧后陆缘小洋盆消减的产物,该盆地于中二叠世末褶皱,代表晚古生代弧-陆碰撞后的大陆增生;晚二叠世-三叠纪沉积及巴颜喀拉山群奠基于特提斯洋盆之上,在接受大量陆缘碎屑沉积的同时向北侧的古生代增生造山带之下俯冲,形成了昆仑山最南侧、规模最大的晚三叠世-侏罗纪二长花岗岩带,并最终实现洋-陆转化。  相似文献   

4.
发现其曼于特早古生代蛇绿混杂岩带和二叠纪普鲁-阿羌裂谷型火山岩带.确定苏巴什蛇绿混杂岩带的形成时代为石炭纪-中二叠世.查明阿尔金断裂延入西昆仑表现为转换断层的性质.认为其曼于特蛇绿混杂岩与库地蛇绿岩相当,代表震旦纪-早古生代原特提斯多岛洋内亲塔里木板块的小洋盆;苏巴什蛇绿混杂岩带归属于晚古生代古特提斯沟-弧-盆体系,为弧后陆缘小洋盆消减的产物,该盆地于中二叠世末褶皱,代表晚古生代弧-陆碰撞后的大陆增生;晚二叠世-三叠纪沉积及巴颜喀拉山群奠基于特提斯洋盆之上,在接受大量陆缘碎屑沉积的同时向北侧的古生代增生造山带之下俯冲,形成了昆仑山最南侧、规模最大的晚三叠世-侏罗纪二长花岗岩带,并最终实现洋-陆转化.  相似文献   

5.
特提斯喜马拉雅白垩纪层序地层分析   总被引:6,自引:0,他引:6       下载免费PDF全文
白垩纪是新特提斯演化过程中一个极其重要的阶段,其沉积蕴涵着新特提斯早期演变的丰富信息。在对典型剖面进行层序地层分析的基础上,结合前人的研究成果,笔者分别对特提斯喜马拉雅沉积带南、北两亚带白垩系进行较为详细的露头层序地层学研究,在沉积南带识别出为24个三级层序、5个层序组(亚二级层序)、2个二级层序(中层序),在北亚带识别出22个三级层序、5个层序组(亚二级层序)、2个二级层序(中层序)。特提斯喜马拉雅早白垩世层序地层总体表现为海进的退积序列,反映了特提斯洋壳的扩张阶段;晚白垩世层序地层总体表现为海退的进积序列,反映了特提斯洋盆地持续收缩和长期海平面逐步下降的过程,应是洋壳俯冲阶段的产物。整个白垩纪显示出一次极其明显的海水进退旋回,是特提斯洋从扩张到收缩这一演化过程的客观反映。由对层序特征、沉积特征及古生物特征等的分析所得出的特提斯喜马拉雅在白垩纪的海水进退规程,与同期的全球海平面的变化基本一致。  相似文献   

6.
新疆准噶尔盆地南缘博格达山北缘地区古水流方向在晚古生代到中生代期间发生过三次重要的转变。晚石炭世晚期以前指向南,晚石炭世晚期到二叠纪期间指向东、南东东向,三叠纪—侏罗纪指向南,白垩纪及其以后指向北。结合盆地物源和沉积环境分析,博格达山北缘自晚古生代以来可划分为四个构造演化阶段,古流向转折期为盆地各期构造演化的分界线,它们是盆地对周缘造山带构造演化沉积响应的重要记录。另一方面,古水流转折时间资料的获得,对准噶尔盆地周缘不同构造带的隆升时代是一个非常重要的限定。晚石炭世晚期至二叠纪,古水流资料指示沉积物主要来自准噶尔盆地西部,准噶尔盆地西—西北缘强烈隆升,自三叠纪早期开始到侏罗纪晚期,准噶尔盆地北缘抬升,博格达山北缘沉积物主要来自北方;侏罗纪晚期到白垩纪,古水流指示沉积物主要来自盆地南部,博格达山隆起并遭受剥蚀。然而,什么原因造成石炭纪末以来,准噶尔盆地周缘几个造山带顺时针方向依次隆起,有待进一步研究。  相似文献   

7.
系统地研究了西藏冈底斯带石炭纪-二叠纪火山岩的时空分布,岩相学,元素及Sr、Nd、Pb同位素地球化学,以及构造环境、源区性质,并与喜马拉雅带二叠纪火山岩进行了对比研究.冈底斯带石炭纪-二叠纪火山岩近东西向集中分布在冈底斯构造带的中北部,空间上从东至西火山活动的强度和规模渐次减小,时间上从早至晚火山活动的强度和规模总体由弱到强.冈底斯带石炭纪-二叠纪火山岩形成于活动大陆边缘的岛弧构造环境,从早到晚岛弧造山作用经历了初始岛弧→早期岛弧→成熟岛弧的发展演变过程,火山岩浆来源于富集型地幔的部分熔融物质,原始岩浆在形成和演化的过程中有俯冲洋壳、随带的深海沉积物和再循环进入地慢的地壳物质组分的强烈混染,明显不同于受地壳物质组分强烈混染的喜马拉雅带二叠纪陆缘裂陷型火山岩.综合分析冈底斯带及其邻区近年来的最新调查与研究成果,从北向南拟建了石炭纪-二叠纪冈底斯岛弧→雅鲁藏布江弧后裂谷盆地→喜马拉雅陆缘裂陷盆地的弧盆系时空结构演化模式,探讨了冈瓦纳大陆北缘石炭纪-二叠纪活动大陆边缘的岛弧造山作用与青藏高原古特提斯演化的耦合关系及其动力学机制,讨论了冈底斯带松多乡榴辉岩的形成过程.  相似文献   

8.
系统研究了西藏冈底斯带石炭纪—二叠纪火山岩的时空分布、岩相学、元素及Sr、Nd、Pb 同位素地球化学和构造环境、源区性质,并与喜马拉雅带二叠纪火山岩进行了对比研究。冈底斯带石炭纪—二叠纪火山岩近东西向集中分布在冈底斯构造带中北部地带,空间上从东至西火山活动的强度和规模渐次减小,时间上从早至晚火山活动的强度和规模总体由弱到强。冈底斯带石炭纪—二叠纪火山岩形成于活动大陆边缘的岛弧构造环境,从早到晚岛弧造山作用经历了初始岛弧→早期岛弧→成熟岛弧的发展演变过程,火山岩浆来源于富集型地幔部分熔融作用,原始岩浆在形成和演化的过程中有俯冲洋壳及随带的深海沉积物和再循环进人地慢的地壳物质组分的强烈混染,明显不同于受地壳物质组分强烈混染的喜马拉雅带二叠纪陆缘裂陷型火山岩。综合研究冈底斯带及其邻区近年来的最新调查与研究成果,从北向南拟建了石炭纪—二叠纪冈底斯岛弧→雅鲁藏布江弧后裂谷盆地→喜马拉雅陆缘裂陷盆地的弧盆系时空结构演化模式,探讨了冈瓦纳大陆北缘石炭纪—二叠纪活动大陆边缘的岛弧造山作用与青藏高原古特提斯演化的耦合关系及其动力学机制,讨论了冈底斯带松多乡榴辉岩的形成过程。  相似文献   

9.
遵循刘宝珺院士提出的“构造控盆、盆地控相”指导思想,在系统厘定地层格架和构造单元划分基础上,确定青藏高原巨型造山带晚三叠世构造-古地理从北往南依次发育:羌塘-三江多岛海、班公湖-双湖-怒江洋、冈底斯-喜马拉雅多岛海和若干次级构造-古地理单元。班公湖-双湖-怒江洋是分隔冈瓦纳大陆和欧亚大陆的特提斯大洋,南羌塘地块是漂浮在特提斯大洋中的块体。本次重点对北羌塘前陆盆地和北喜马拉雅被动大陆边缘盆地的沉积相带展布和古地理进行了研究。造成两个盆地沉积序列及古气候差别的主要因素是构造地质事件。构造事件决定了盆地性质,盆地性质又控制了沉积相带的空间展布。北喜马拉雅盆地位于冈瓦纳构造域,晚三叠世盆地基底南浅北深,继承了古生代构造离散型被动大陆边缘沉积,印支造山作用不发育;北羌塘盆地位于泛华夏构造域,晚三叠世发育印支挤压造山作用及其前陆盆地沉积记录。盆地分析研究表明,北羌塘南部江爱达日那和热觉茶卡等地下三叠统康鲁组底部均发现灰紫色中厚层复成分砾岩、含砾粗砂岩、细砂岩组成向上变细的海侵型地层结构,沉积相为滨岸三角洲;上三叠统土门格拉群沉积相为含煤盆地边缘三角洲。从沉积相展布型式和北东向古水流方向分析,三叠纪北羌塘沉积盆地的物源主要来自羌塘中部双湖造山剥蚀区或“中央隆起带”。  相似文献   

10.
新疆准噶尔盆地南缘博格达山北缘地区古水流方向在晚古生代到中生代期间发生过三次重要的转变.晚石炭世晚期以前指向南,晚石炭世晚期到二叠纪期间指向东、南东东向,三叠纪-侏罗纪指向南,白垩纪及其以后指向北.结合盆地物源和沉积环境分析,博格达山北缘自晚古生代以来可划分为四个构造演化阶段,古流向转折期为盆地各期构造演化的分界线,它们是盆地对周缘造山带构造演化沉积响应的重要记录.另一方面,古水流转折时间资料的获得,对准噶尔盆地周缘不同构造带的隆升时代是一个非常重要的限定.晚石炭世晚期至二叠纪,古水流资料指示沉积物主要来自准噶尔盆地西部,准噶尔盆地西-西北缘强烈隆升,自三叠纪早期开始到侏罗纪晚期,准噶尔盆地北缘抬升,博格达山北缘沉积物主要来自北方;侏罗纪晚期到白垩纪,古水流指示沉积物主要来自盆地南部,博格达山隆起并遭受剥蚀.然而,什么原因造成石炭纪末以来,准噶尔盆地周缘几个造山带顺时针方向依次隆起,有待进一步研究.  相似文献   

11.
摩擦桩基桩土间极限摩阻力取值问题探讨   总被引:1,自引:0,他引:1  
陈银生 《世界地质》1999,18(1):54-59
通过对广珠东线高速公路横沥大桥的试桩及土体的工程地质条件分析,总结出影响摩擦桩基桩土间极限摩阻力取值的一般问题以及解决问题的方法和措施。  相似文献   

12.
从榴辉岩与围岩的关系论苏鲁榴辉岩的形成与折返   总被引:4,自引:1,他引:4       下载免费PDF全文
位于华北和扬子两板块碰撞带中的苏鲁榴辉岩形成的温压条件不但是超高压,而且是高温。榴辉岩的PTt轨迹表明其为陆-陆磁撞俯冲带的产物。榴辉岩的区域性围岩花岗质片麻岩为新元古代同碰撞期花岗岩,榴辉岩及其他直接围岩皆呈包体存在于其中,并见新元古代花岗岩呈脉状侵入榴辉岩包体中。区域性围岩新元古代花岗岩的锆石中发现有柯石英、绿辉石等包裹体,表明新元古代花岗岩的组成物质也经受过超高压变质作用,且榴辉岩与围岩新元古代花岗岩的锆石U-Pb体系同位素年龄基本相同。但新元古代花岗岩所记录的变质作用和变形作用期次(或阶段)却少于榴辉岩。椐上述可得如下推断:超高压榴辉岩与新元古代花岗岩岩浆是同时在碰撞带底部(俯冲板块前部)形成的;榴辉岩的第一折返阶段是由新元古代花岗岩岩浆携带上升的,其第二折返阶段是和新元古代花岗岩一起由逆冲及区域性隆起而上升,遭受剥蚀。  相似文献   

13.
某高速公路下伏煤矿采空区稳定性分析   总被引:10,自引:0,他引:10  
在论述某高速公路下伏砦脖煤矿采空区地质、采矿和工程地质特征的基础上,进行了稳定性数值模拟分析,定性与定量地分析与评价了该煤矿采空区的地表变形特征及稳定性。研究结果表明:该煤矿采空区的变形尚未完成,对拟建的高速公路将产生很大的危害,必须采取相应的工程治理措施。  相似文献   

14.
In order to characterise the influence of the heavyrains on the observed landslides during the 1996–1997hydrological cycle, rainfall records for the last 100years are analysed from 104 stations in easternAndalusia. Regarding the amounts of rain recordedbetween October 1996 and March 1997 in the 104stations studied, 31 presented new all-time records;15 presented values that were 80–100% of thepre-1995 record; 49 stations, 80–50%; and 9stations, < 50%. A map has been devised of thesusceptibility of the materials through which thesouth-eastern Andalusian road network crosses,together with an inventory of the damage caused byinstability phenomena on banks and cuttings of theroad network during the winter of 1996–1997. Therelationships between the rainfall during the studyperiod, the damage caused to the road network and thesusceptibility of the materials affected are analysed.The results indicate that there is a clearcorrespondence between the rainfall recorded and thesusceptibility of the materials with the inventorieddamage. It is concluded that the widespread seriousdamage caused in early 1997 to the roads andsurrounding areas in the Alpujarra region and thecoast of the Province of Granada was mainly caused bythe extraordinarily heavy rains. However, considerablyless damage was observed where the susceptibility ofthe terrain is low, thus highlighting the extremeusefulness of terrain-susceptibility maps for riskprevention and territorial planning.  相似文献   

15.
混凝剂处理钻井废泥浆液的研究   总被引:4,自引:0,他引:4  
通过烧杯搅拌实验对混凝剂处理钻井废泥浆液进行研究,从混凝剂适应PH值范围、混凝效果、沉降速度三方面研究比较,找出一种较为理想的混凝剂,并分析了影响混凝剂性能的主要因素,确定了混凝剂的最佳投放剂量。  相似文献   

16.
International unity is becoming ever stronger in this country owing to an increasing similarity in the development of the cultural environment. This comprises the provision of all the country's republics with a sufficient number of schools, theatres, and other institutions and cultural information media in accordance with the needs of the population. An important part is played by the rise in ‘the general educational level, as well as the level of professional qualifications and skills. Among all the Soviet nations and nationalities, this rise being more rapid among formerly backward peoples. Prominent among the factors of internationalization is the progressive development of the nationalities’ cultural resources, while professional culture is being increasingly brought within the reach of the masses.The implementation of the nationalities policy promotes the all-round development of all Soviet nations and nationalities, their drawing together, the upsurge of the individual capabilities of every Soviet citizen.  相似文献   

17.
黄河源区水环境变化及黄河出现冬季断流的原因   总被引:12,自引:0,他引:12  
自1954年有水文观测资料以来,黄河曾在青海省玛多县黄河沿水文站发生过3次断流。本文在分析黄河源区水环境特征及其影响因素的基础上指出,鄂陵湖、扎陵湖的环湖融区调节能力低,当遇到连续干旱、冬季其调节水量不足以维系黄河径流时便会发生断流,这是断流的主因。湖水位降低、开采沙金、过度放牧等自然和人为因素也会对黄河发生断流产生影响。鄂陵湖口附近黄河上修建的水电站开始蓄水,提高了两湖及环湖融区的调节能力,今后黄河冬季出现断流的可能性将大为降低。  相似文献   

18.
正Artemia cysts are an extremely important component of aquaculture diets.It is well established that the cultivation of fish and shellfish derive substantial health and growth advantages when Artemia are included in the diets of the  相似文献   

19.
Climate: Is the past the key to the future?   总被引:2,自引:0,他引:2  
 The climate of the Holocene is not well suited to be the baseline for the climate of the planet. It is an interglacial, a state typical of only 10% of the past few million years. It is a time of relative sea-level stability after a rapid 130-m rise from the lowstand during the last glacial maximum. Physical geologic processes are operating at unusual rates and much of the geochemical system is not in a steady state. During most of the Phanerozoic there have been no continental ice sheets on the earth, and the planet’s meridional temperature gradient has been much less than it is presently. Major factors influencing climate are insolation, greenhouse gases, paleogeography, and vegetation; the first two are discussed in this paper. Changes in the earth’s orbital parameters affect the amount of radiation received from the sun at different latitudes over the course of the year. During the last climate cycle, the waxing and waning of the northern hemisphere continental ice sheets closely followed the changes in summer insolation at the latitude of the northern hemisphere polar circle. The overall intensity of insolation in the northern hemisphere is governed by the precession of the earth’s axis of rotation, and the precession and ellipticity of the earth’s orbit. At the polar circle a meridional minimum of summer insolation becomes alternately more and less pronounced as the obliquity of the earth’s axis of rotation changes. Feedback processes amplify the insolation signal. Greenhouse gases (H2O, CO2, CH4, CFCs) modulate the insolation-driven climate. The atmospheric content of CO2 during the last glacial maximum was approximately 30% less than during the present interglacial. A variety of possible causes for this change have been postulated. The present burning of fossil fuels, deforestation, and cement manufacture since the beginning of the industrial revolution have added CO2 to the atmosphere when its content due to glacial-interglacial variation was already at a maximum. Anthropogenic activity has increased the CO2 content of the atmosphere to 130% of its previous Holocene level, probably higher than at any time during the past few million years. During the Late Cretaceous the atmospheric CO2 content was probably about four times that of the present, the level to which it may rise at the end of the next century. The results of a Campanian (80 Ma) climate simulation suggest that the positive feedback between CO2 and another important greenhouse gas, H2O, raised the earth’s temperature to a level where latent heat transport became much more significant than it is presently, and operated efficiently at all latitudes. Atmospheric high- and low-pressure systems were as much the result of variations in the vapor content of the air as of temperature differences. In our present state of knowledge, future climate change is unpredictable because by adding CO2 to the atmosphere we are forcing the climate toward a “greenhouse” mode when it is accustomed to moving between the glacial–interglacial “icehouse” states that reflect the waxing and waning of ice sheets. At the same time we are replacing freely transpiring C3 plants with water-conserving C4 plants, producing a global vegetation complex that has no past analog. The past climates of the earth cannot be used as a direct guide to what may occur in the future. To understand what may happen in the future we must learn about the first principles of physics and chemistry related to the earth’s system. The fundamental mechanisms of the climate system are best explored in simulations of the earth’s ancient extreme climates. Received: 7 November 1996/Accepted: 23 January 1997  相似文献   

20.
塘口水电站大坝基础座落在断层和裂隙较发育的龟裂纹灰岩上,岩体完整性差、透水性强,多年运行后,大坝灌浆廊道和排水廊道出现多处集中性漏水,为确保大坝安全和电站正常发电,根据渗漏性质和成因,采用对灌浆廊道补充帷幕灌浆,对排水廊道进行固结+帷幕+回填灌浆。通过灌浆处理后,效果良好,表明灌浆工程有效的将导致坝基渗漏的上下游的裂隙通道封闭,并顺利的经受了随后的汛期洪水考验,大坝安全得到保障。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号