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1.
岩石圈流变性取决于岩石圈的地热状态、物质组成和结构,并量化为岩石圈总强度。沉积盆地的沉降和抬升是地球最上层流变带形变的响应,岩石圈板块对构造应力的响应在很大程度上取决于岩石圈流变性在横向和纵向上的不均一性。辽西、辽北、松辽盆地区岩石圈流变性存在明显差异,因而岩石圈总强度明显不同,在晚中生代伸展过程中,变形方式、变形幅度不同,分别形成了断陷盆地、多断少坳型盆地和断坳型盆地。  相似文献   

2.
周蒂  廖杰  赵忠贤 《地球科学》2011,36(2):227-235
世界上许多张性沉积盆地存在远大于McKenzie模型理论值的裂后异常沉降, 南海北部陆缘的沉积盆地也是如此; 确定裂后异常沉降的特征和分布是认识其成因机制和对油气成藏影响的前提.介绍了估算裂后异常沉降的3种方法: 古水深比较法、应变速率反演法和沉降过程二维正反演法, 并指出了各方法的应用前提和优缺点.对于由作者提出的后一种方法还结合在珠江口盆地的应用实例进行了较详细的讨论, 表明这种方法能在考虑岩石圈挠曲强度的基础上正演模拟出单幕或多幕盆地沉降及相应的岩石圈伸展系数, 从而计算出盆地理论热沉降, 与通过回剥反演得到的实测构造沉降进行对比; 还指出了该方法存在的问题和需进一步研究之处.   相似文献   

3.
辽东南地区晚中生代地层发育不甚完全,具有两期盆地叠合演化的特征,即早中侏罗世和早白垩世两个演化阶段,经历了2次伸展裂陷和2次挤压反转。在详细研究辽东南地区各盆地岩石地层序列、生物化石组合特征、年代地层格架以及区域地层对比的基础上,讨论了盆地的演化阶段和演化规律,指出是古太平洋板块向东亚大陆边缘不同方向的俯冲与走滑,以及来自北方西伯利亚板块的持续碰撞挤压的联合构造应力场制约了中国东北地区晚中生代盆地的裂陷过程和构造反转的演化,进而为揭示华北克拉通晚中生代岩石圈演化的动力学机制提供参考依据。  相似文献   

4.
伸展型盆地是与地壳和岩石圈伸展、减薄作用有关的一类裂陷盆地,包含了重要的沉积矿产和能源资源。综合近年来国内外伸展型盆地的研究,包括大西洋被动大陆边缘、澳大利亚被动边缘以及中国大陆东部的新生代盆地,发现不论是被动边缘还是会聚板块背景下的伸展型盆地,其裂后阶段盆地的沉降过程都不是简单的仅仅由岩石圈的热作用所控制的均匀缓慢的沉降过程,而是呈现多幕式的、快速沉降的特征,反映了盆地裂后演化阶段周缘板块的构造活动及其深部岩石圈的动力因素的控制作用。文章正是从这一角度出发,简述了近年来国内外一些典型的伸展盆地区裂后期快速沉降的研究进展情况,并结合琼东南盆地裂后期沉降演化特征的定量模拟研究,对幕式快速沉降的动力学机制进行了探讨。  相似文献   

5.
岩石圈中热压系数的计算   总被引:2,自引:0,他引:2  
中国中西部地区发育众多前陆冲断带,它们具有构造变形复杂、油气潜力大和有别于经典前陆盆地的沉积和油气地质特征,但其成因过程和动力学并不清楚。文中利用中西部盆地区的地温、岩石热物性参数和地热学模拟技术,分析该区岩石圈热状态和流变学特征,进一步结合其他地质、地球物理资料,揭示盆地区的深部构造特征和岩石圈性质。研究表明,中西部各主要盆地的岩石圈具有厚度大、强度高、地温低等热-流变学特征,表现为刚硬块体;而其周缘和造山带区却表现为温度高、强度低和厚度小等特征,是构造变形的易发区。在此基础上讨论了岩石圈性质和变形过程等深部构造对前陆盆地成因演化的控制作用,进而初步归纳这类陆内再生前陆盆地的成因演化机制:发育于小型克拉通块体的边缘,其就位受控于岩石圈热-流变学非均质性和构造继承性,其动力来源是新生代印度-欧亚大陆碰撞及其持续的挤压作用。上述研究为探讨中国中西部地区的前陆盆地成因机制提供了深部资料和岩石圈热-流变学约束。  相似文献   

6.
南海岩石圈结构与油气资源分布   总被引:6,自引:2,他引:6       下载免费PDF全文
南海是中国唯一发育有洋壳的边缘海,是世界四大海洋油气聚集中心之一。油气勘探表明,南海的油气田分布在北部、西部和南部陆缘沉积盆地内,而大中型油气田集中分布在西部海域盆地中,自北而南有莺歌海—琼东南盆地、万安盆地、湄公盆地、曾母盆地和文莱—沙巴盆地,且以含气为主,含油次之。此外,这一区域深水区还存在多个潜在的大型含油气盆地。研究发现,南海的油气分布与深部岩石圈结构有密切关系。在构造上,南海的含油气盆地位于岩石圈块体边缘或之上,受控于大型岩石圈断裂的发育与演化。在油气富集的盆地中,莫霍面显著凸起,与盆地基底形成镜像,地壳厚度最薄处仅数千米厚,热流值明显较周围地区高,热岩石圈厚度大大减薄。地震层析成像结果反映,这些盆地深部发育一条规模宏大的北西向上地幔隆起带,自红河口向东南穿越南海西部海盆,一直延伸到婆罗州东北部地区,在宏观上控制了南海的油气分布与富集。  相似文献   

7.
东北北部中新生代盆地群构造与深部结构特征   总被引:1,自引:0,他引:1  
松辽盆地及其东西两侧的中、新生代盆地群的形成与演化表现为两大盆地构造旋回,包括两次成盆期和两次反转期。由于所处大地构造位置的岩石圈厚度、软流圈的起伏、莫霍面的埋深以及岩石圈有效弹性厚度等的差异,导致了3个盆地群的时空演化及其盆地结构特征的规律性变化。研究表明,浅层次盆地类型、断陷样式、反转构造组合以及盆地构造演化规律等明显地受深部岩石圈结构的控制和制约。   相似文献   

8.
松辽盆地成因演化与软流圈对流模式   总被引:5,自引:0,他引:5       下载免费PDF全文
马莉  刘德来 《地质科学》1999,34(3):365-374
松辽盆地位于中国东北,是晚中生代在活动大陆边缘上发育的裂谷-坳陷盆地。松辽盆地有两个特点:一是裂谷期前火山岩分布以盆地西部的大兴安岭厚度大、面积大,盆地东部靠近俯冲边缘火山岩分布厚度、面积变小;二是裂谷期主要发育东倾控坳断层。由此推测在板块俯冲牵引作用下,在楔形区产生单向环流。单向环流在大兴安岭一带上升,在地表形成强烈的火山作用,然后沿岩石圈底部向东运动,并逐渐转变为下降流,火山作用也逐渐减弱。单向环流由上升流逐渐转入近平流后,对岩石圈底面施加单向剪切牵引作用,岩石圈伸展在脆性上地壳形成主要东倾控坳断层。单向环流可以源源不断地从深部将热能和动能带到浅部,满足岩石圈减薄和伸展的需要。而且用单向环流解释活动大陆边缘和弧后区火山岩的成分极性可能更趋于实际。  相似文献   

9.
The Songliao basin is a complex successor basin that was initiated in the Mesozoic and experienced multiple periods of reactivation. Based on seismic and drilling data, as well as regional geologic research, we suggest that the Songliao basin contains several different successor basins resting on top of Carboniferous-Permian folded strata forming the basement to the Songliao basin. These basins include the Triassic-Mid Jurassic Paleo-foreland basin, the Late Jurassic-Early Cretaceous downfaulted basin, and an early Cretaceous depressed basin (since the Denglouku Group). This paper presents a systematic study of the basin-mountain interactions, and reveals that there are different types of prototype basin at different geologic times. These prototype basins sequentially superimposed and formed the large Songliao basin. Discovery of the Triassic-early Middle Jurassic paleo-foreland basin fills a Triassic-early Middle Jurassic gap in the geologic history of the Songliao basin. The paleo- foreland basin, downfaulted basin, and depressed thermal subsidence basin all together represent the whole Mesozoic-Cenozoic geologic history and deformation of the Songliao basin. Discovery of the Triassic-early Middle Jurassic paleo-foreland basin plays an important role both for deep natural gas exploration and the study of basin-mountain coupling in north China and eastern China in general. This example gives dramatic evidence that we should give much more attention to the polyphase tectonic evolution of related basins for the next phase of exploration and study.  相似文献   

10.
松辽盆地同加拿大西部盆地同属环太平洋构造带控制的中生代内陆盆地,二者在构造环境、演化条件等诸多方面有着许多相似之处。松辽盆地的稠油、油砂藏有着很可观的远景储量。借鉴加拿大地球物理勘探经验及技术,勘探并开发松辽盆地斜坡地带稠油、油砂藏。  相似文献   

11.
松辽盆地构造演化与中国东部构造体制转换   总被引:23,自引:1,他引:22  
本文综合应用盆地构造解析、平衡地质剖面恢复、构造物理模拟等方法,探讨了松辽盆地构造演化及其地球动力学背景。松辽盆地基底是前侏罗纪古亚洲洋构造域众多微板块、地体拼贴形成的复合陆块。中—晚侏罗世,盆地基底受到郯(城)—庐(江)断裂系北段大规模左旋走滑活动的强烈改造,派生NNE、NNW和近NS向次级断裂,控制了基底构造格局、断陷盆地分布及其构造。断陷期可划分为早、晚两个脉冲式伸展阶段,早期阶段受多方向平面式正断层控制发育堑—垒构造,具有双向纯剪伸展的特点,但NNE向拉伸更显著,可能是深部岩石圈拆沉引起热穹窿与基底断裂持续左旋走滑拉分的叠加;晚期阶段受低角度犁式正断层控制发育西断东超的复合半地堑,受控于近EW向单剪伸展机制,是区域性地壳伸展拆离与岩石圈减薄的结果。拗陷期大规模热沉降是对古太平洋构造域向东迁移的响应。白垩纪末期盆地受到NWW向脉冲式挤压而发生反转,可能与伊泽纳奇板块消亡、太平洋板块开始俯冲这一转换过程中的地体拼贴有关。  相似文献   

12.
我国陆相盆地油页岩矿床特征多样,尚未形成统一的分类体系,本文以典型盆地松辽盆地、抚顺盆地和桦甸盆地、准噶尔盆地以及鄂尔多斯盆地为例,分别开展了离散型大陆裂谷盆地、转换型走滑盆地、汇聚型前陆盆地及板内型克拉通盆地4种类型解剖,总结了各类型盆地油页岩特征及矿床赋存规律。其中:离散型大陆裂谷后热沉降坳陷演化阶段沉积的油页岩具有有机质类型Ⅰ型、含油率中等、厚度中等、分布面积广的特征,易形成特大型油页岩矿床;离散型大陆裂谷同裂谷沉降断陷阶段沉积的油页岩具有有机质类型Ⅱ1-Ⅱ2型、含油率中等、厚度中等、分布面积小的特征,易形成中型油页岩矿床;转换型走滑盆地油页岩具有有机质类型Ⅱ1-Ⅱ2型、矿床赋存特征差异较大的特征,这主要取决于走滑运动断陷的构造沉降量,该类型盆地既发育中等含油率、巨厚的油页岩矿床,也发育高含油率、厚度薄的油页岩矿床,但总体分布范围较小,易形成中小型油页岩矿床;汇聚型前陆盆地陆相磨拉石阶段沉积的油页岩具有有机质类型主要为Ⅰ和Ⅱ1型、含油率较高、厚度大、分布局限、地层产状变化大的特征,易形成大型油页岩矿床;克拉通型盆地陆内坳陷阶段沉积的油页岩具有有机质类型主要为Ⅰ和Ⅱ1型、含油率中等、厚度稳定、分布面积广的特征,易形成特大型油页岩矿床。在所有盆地类型中,半深湖-深湖环境、高水位体系域和水进体系域是油页岩形成的有利场所。  相似文献   

13.
利用大型通用有限元分析软件ANSYS简单模拟辽西地区中生代末期岩石圈动力学演化过程。为了与现今实际地质观测一致,我们分两步模拟了辽西中生代岩石圈的动力学演化。第一阶段,中国东部显著的地幔上升热柱导致本研究区壳-幔边界上升,岩石圈减薄,同时伴有少量断层发育;第二阶段,地幔热柱上涌活动逐渐减弱,地表产生沉降。这一地质模型可重塑与现代观测一致的裂谷沉降、裂谷侧翼地形、壳-幔边界隆升。研究结果表明:ANSYS软件及有限元方法在岩石圈动力学数值模拟领域是一个非常有效的分析工具,具有非常广阔的应用前景。今后将建立与实际情况更吻合的岩石圈结构模型,真正动态地实现辽西中生代盆地区岩石圈结构的演化过程模拟。  相似文献   

14.
深部地质、地球物理综合研究表明,辽西地区与松辽南部地区在莫霍面起伏、岩石圈厚度、壳内高导层深度和分布形式及岩石圈的有效弹性厚度方面均存在着重大差异,这种差异是造成辽西盆岭区与松辽盆地中生代构造发展差异的主要原因。软流圈顶面深度和岩石圈有效弹性厚度决定了盆地类型,壳内高导层分布控制着盆地构造样式。辽西盆岭区和松辽盆地南部构造模式的差异可以解释二者之间构造演化的不同。  相似文献   

15.
松辽盆地北部青山口—姚家组西部坡折带成因及演化   总被引:9,自引:0,他引:9  
辛仁臣  王英民 《地球科学》2004,29(5):621-624
沉积盆地的坡折带是非构造圈闭发育的最有利场所.地质、地球物理资料综合研究结果表明, 松辽盆地北部青山口-姚家组沉积时期西部明显发育富裕一级坡折带和泰康-大安二级坡折带.隐伏断裂、差异沉积与压实作用控制了坡折带的形成与演化.松辽盆地西部发育扎赉特旗、嫩江和哈拉海3个隐伏岩石圈断裂带, 坳陷期主要受松辽盆地北部物源、齐齐哈尔物源和英台物源影响, 扎赉特旗、嫩江岩石圈断裂带和齐齐哈尔、英台物源控制了富裕一级坡折带的形成和演化, 哈拉海隐伏岩石圈断裂带、松辽盆地北部和英台物源控制了泰康-大安二级坡折带的形成和演化.   相似文献   

16.
伊舒地堑早第三纪盆地的结构、充填形式和充填序列以及区域构造格局表明,它属于我国东北部(东部)新生代裂谷系中的一部分,其发育级别低于辽河裂谷盆地带,而优于佳伊地堑北段,为一初始裂谷盆地。该盆地经历了裂谷前隆升剥蚀(晚白垩—古新世)、张裂深陷(始新世)、充填淤积(渐新世)和后期改造(早第三纪末)四个阶段的演化。与我国东部其它新生代裂谷盆地的演化近同时同步。地堑中5000多米厚的早第三纪陆相沉积物具有良好的生储油条件。同时地堑的构造-沉积演化决定了所形成的油气藏具有个体多而细小的特点,在有利的油气聚集区形成复式油田。  相似文献   

17.
何登发 《地学前缘》2022,29(6):24-59
深入认识盆地的地质结构与构造演化,探讨盆地的油气分布规律,将为揭示中国大陆属性、资源能源分布、环境变化及油气勘探新领域奠立重要基础。本文立足于油气勘探的新资料,应用活动论构造历史观与比较大地构造学方法,分析了中国叠合沉积盆地的构造演化、构造分区、地质结构与油气成藏模式,探索油气分布规律。研究表明,中国叠合沉积盆地经历了中新元古代、寒武纪—泥盆纪(或中泥盆世)、(晚泥盆世—)石炭纪—三叠纪与侏罗纪—第四纪4个构造旋回的演化;据东西向两条构造锋线和南北(或北北东)向的两条改造锋线及西太平洋弧后盆地带,可将中国划分为北疆、内蒙古、松辽、塔里木—阿拉善、鄂尔多斯、渤海湾、青藏、四川、华南与海域等10个沉积盆地区;发育有前陆/克拉通、前陆/坳陷、坳陷/断陷、断陷/坳陷、反转断陷、被动陆缘、走滑叠合和改造残留等8种叠合盆地结构类型;发育安岳裂陷槽型、塔北型、苏里格复合三角洲型、玛湖凹陷型、陆梁隆起型、库车冲断带型、大庆长垣型、古潜山型、中央峡谷水道型、柴东生物气型、四川源内型与沁水向斜煤层气型等12种典型油气成模式;盆地内凹陷/断陷的油气分布具有空间有序性,叠合界面油气富集具优势性,油气叠合分布有强的非均一性,中西部前陆/克拉通叠合型盆地的油、气分区分布,海域被动陆缘/断陷叠合型盆地的油、气分带分布。中国多旋回叠合盆地具有独特的“三环带状”油气分布格局。  相似文献   

18.
During the Late Mesozoic and Cenozoic, extension was widespread in Eastern China and adjacent areas. The first rifting stage spanned in the Late Jurassic–Early Cretaceous times and covered an area of more than 2 million km2 of NE Asia from the Lake Baikal to the Sikhot-Alin in EW direction and from the Mongol–Okhotsk fold belt to North China in NS direction. This rifting was characterized by intracontinental rifts, volcanic eruptions and transform extension along large-scale strike–slip faults. Based on the magmatic activity, filling sequence of basins, tectonic framework and subsidence analysis of basins, the evolution of this area can be divided into three main developmental phases. The first phase, calc-alkaline volcanics erupted intensely along NNE-trending faults, forming Daxing'anling volcanic belt, NE China. The second phase, Basin and Range type fault basin system bearing coal and oil developed in NE Asia. During the third phase, which was marked by the change from synrifting to thermal subsidence, very thick postrift deposits developed in the Songliao basin (the largest oil basin in NE China).Following uplift and denudation, caused by compressional tectonism in the near end of Cretaceous, a Paleogene rifting stage produced widespread continental rift systems and continental margin basins in Eastern China. These rifted basins were usually filled with several kilometers of alluvial and lacustrine deposits and contain a large amount of fossil fuel resources. Integrated research in most of these rifting basins has shown that the basins are characterized by rapid subsidence, relative high paleo-geothermal history and thinned crust. It is now accepted that the formation of most of these basins was related to a lithospheric extensional regime or dextral transtensional regime. During Neogene time, early Tertiary basins in Eastern China entered a postrifting phase, forming regional downwarping. Basin fills formed in a thermal subsidence period onlapped the fault basin margins and were deposited in a broad downwarped lacustrine depression. At the same time, within plate rifting of the Lake Baikal and Shanxi graben climaxed and spreading of the Japan Sea and South China Sea occurred. Quaternary rifting was marked by basalt eruption and accelerated subsidence in the area of Tertiary rifting. The Okinawa Trough is an active rift involving back-arc extension.Continental rifting and marginal sea opening were clearly developed in various kind of tectonic settings. Three rifting styles, intracontinental rifting within fold belt, intracontinental rifting within craton and continental marginal rifting and spreading, are distinguished on the basis of nature of the basin basement, tectonic location of rifting and relations to large strike–slip faults.Changes of convergence rates of India–Eurasia and Pacific–Eurasia may have caused NW–SE-trending extensional stress field dominating the rifting. Asthenospheric upwelling may have well assisted the rifting process. In this paper, a combination model of interactions between plates and deep process of lithosphere has been proposed to explain the rifting process in East China and adjacent areas.The research on the Late Mesozoic and Cenozoic extensional tectonics of East China and adjacent areas is important because of its utility as an indicator of the dynamic setting and deformational mechanisms involved in stretching Lithosphere. The research also benefits the exploration and development of mineral and energy resources in this area.  相似文献   

19.
黑龙江省东部残留盆地群构造演化特征及其油气勘探意义   总被引:15,自引:3,他引:15  
由牡丹江断裂、敦-密断裂、依-舒断裂和大和镇断裂所控制的中新生代盆地群是东北地区重要的合煤、含油气盆地。该盆地群的中新生代成盆过程以脆性伸展为主,发育断陷或裂陷层序,而坳陷层序(热沉降层序)不发育。古构造发育史、盆地沉降史和伸展史研究表明,研究区盆地群普遍经历了早期快速沉降(断陷期)-盆地衰减、抬升剥蚀-后期快速沉降-稳定衰减(或抬升剥蚀)。区内的成盆与构造演化过程分为涉及全区的中生代陆缘断陷期(J3-K1)、第一构造反转期(K2-E1)、新生代陆内裂陷期(E2-E3)和第二构造反转期(N)4个阶段,反映了两大盆地构造演化旋回。构造演化特征一方面为油气的多期成藏提供了盆地动力学条件,另一方面改造或破坏动、静态地质要素的时空分布及其匹配关系。  相似文献   

20.
The Songliao Basin, the largest oil-producing basin in China, was the centre of late Mesozoic rifting and lithospheric thinning in northeastern China. However, the rifts are still poorly revealed due to a thick cover of subsidence successions. By structural interpretation and sequential restoration of cross-sections based on new 2D seismic data and well data, this study presents the structural style, basin evolution, and horizontal crustal extension of the central Songliao Basin. We have developed a novel method to retrieve the regional extension principal strains. The results enable an assignment of rifting into two episodes. The earlier episode (ca. 157–130 Ma) was dominated by distributed faulting of numerous planar normal faults trending NNE–SSW, NNW–SSE, or near NS, probably reflecting pre-existing basement fabrics; in contrast, the later episode (ca. 130–102 Ma) was controlled by localized extension along several major listric faults. Horizontal crustal extension during rifting is estimated to have been 11–28 km (10.6%–25.5%), with the long-term average rate varying from 0.20 to 0.51 mm yr–1. Regional horizontal strains show a gradual evolution from biaxial extension at the beginning of rifting to WNW–ESE uniaxial stretching during the later rifting episode. Brittle crustal extension is interpreted to have been associated with vertical strain due to tectonic stretching, which is estimated to have contributed more in thinning the lower crust than the mantle lithosphere. Accordingly, a two-episode dynamic model is proposed to explain rifting in the Songliao Basin. We suggest that the earlier event was dominated by delamination of the thickened continental lithosphere, whereas the later event was probably controlled by regional crustal detachment due to slab subduction and stagnancy of the Izanagi lithospheric plate.  相似文献   

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