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1.
程守田  刘星 《地球科学》2000,25(6):587-591
古沙漠是以风成沉积为特征的一种特殊环境的充填, 由于风成沉积与水成沉积机制不同, 目前以湖泛面为依据所开展的陆相湖盆层序地层研究的原则不能完全适用于古沙漠地层.分析讨论了基于地下潜水面为沉积基准面的古沙漠沉积作用过程及其控制因素, 探讨了古沙漠层序地层的构成及其单元的划分, 并提出了古沙漠成因地层及沉积学研究的有关概念和方法.   相似文献   

2.
赵俊兴  申赵军  李良  王峻  王峰  曹志松 《岩石学报》2011,27(8):2318-2326
近年来层序地层学的发展为我们进行盆地分析提供了新思路,应用沉积学和高分辨率层序地层研究方法,将盆地晚三叠世延长组划分出4个长期、22个中期基准面旋回。整个盆地在延长期的"沉积-层序-构造"演化史表现为:LSC1构造初始沉降、湖泊形成:LSC2湖盆快速坳陷,晚期湖泊进入鼎盛期;进入LSC3,盆地周缘构造趋于稳定、盆地开始填平补齐期,湖泊开始充填淤浅; LSC4期河流沉积作用增强,盆地进入超补偿沉积阶段,湖泊被淤塞并进入残余湖泊沉积期。提出并定义了层序结构动力学概念,认为层序结构动力学是在研究层序充填过程中由于构造运动、海平面变化、物源供给、气候、沉积作用等因素控制影响层序结构发育特征及其分布规律的一门学科。在对鄂尔多斯盆地延长组层序地层综合划分基础上,根据一个基准面变化周期中所形成的层序结构变化特征,将层序结构划分出5种基本层序结构单元类型,即A型、B1型、B2型、B3型和C型等5种。针对对鄂尔多斯盆地延长组不同地理位置、不同沉积体系单元具体分析了层序充填结构特征、结构类型、层序充填动力学过程,层序结构发育类型及充填过程,探讨了大型内陆拗陷盆地层序结构动力学特征。首次提出了"层序结构分布律",建立了鄂尔多斯盆地延长组大型内陆拗陷湖盆层序结构分布模式,认为在没有重大构造事件、突发沉积事件发生的情况下,只有那些相邻的层序结构类型才能相互重叠地分布。  相似文献   

3.
在系统收集陕北地区中侏罗统延安组野外露头、钻井、测井、古生物等资料的基础上,对延安组沉积期的沉积环境及其层序地层格架进行分析,并恢复了各层序沉积期的岩相古地理格局。将延安组划分为3个三级层序,分层序绘制了关键单因素的等值线图,恢复了各层序沉积期的岩相古地理格局。层序Ⅰ沉积早期主要为河流沉积;随着盆地沉降的加剧,中部地区逐渐变为湖泊沉积,东北部河流沉积演变为三角洲沉积;层序Ⅱ沉积时期基本继承了层序Ⅰ晚期的沉积格局,古地理格局相对较稳定;层序Ⅲ沉积期,盆地基底不断抬升,湖泊逐渐萎缩成局限湖,河流沉积、三角洲沉积分别在研究区中部、东北部大规模发育。  相似文献   

4.
关中盆地位于华北板块西南缘,为一新生代断陷盆地,具典型地堑形态,沉积巨厚的新生代地层。针对盆地新近纪上新世地层形成时代有争议、地层层序划分不明确、沉积相界定较笼统等问题,利用钻测井资料及野外调研,结合前人研究成果,对盆地新生代地层进行了重新划分,明确了上新世各地层形成时代及其地层层序划分和沉积相类型。研究结果表明,上新统可划分为蓝田组(11Ma—7 Ma)、灞河组(7.3 Ma—2.6 Ma)、张家坡组(3.4 Ma—2.6 Ma);新生代层序地层可划分为古近系构造层序、中新统构造层序、上新统构造层序和第四系构造层序等4个一级层序,存在6个构造层序界面。蓝田组以"三趾马红黏土"的风成沉积为特征。灞河组沉积时期,关中盆地的西安凹陷为一套冲(洪)积相、河流、三角洲相沉积,固市凹陷为一套冲(洪)积、河流、三角洲及滨浅湖相沉积;盆地边部开始出现小范围的风成黏土沉积。张家坡组以河湖相沉积为主,沉积中心向南移;盆地南北两侧或边部为冲(洪)积扇相、河流相及三角洲相沉积,边部也有小范围的风成黏土沉积。  相似文献   

5.
辽西金-羊盆地土城子组层序地层学   总被引:2,自引:2,他引:0  
辽西金-羊(金岭寺-羊山)盆地土城子组为一套红色陆相碎屑岩组合.据其岩层垂向叠置规律及不整合面特征,可划分出3个Ⅲ级旋回层序,14个Ⅳ级旋回层序及各旋回层序所对应的冲积扇、滨湖、浅湖、最大湖泛面、风成沙漠沉积体系.这些沉积体系的有规律叠置,构成了土城子期3次湖扩张-湖萎缩沉积序列,其顶、底为明显的不整合面所界定.通过对旋回层序的划分和对比,建立了辽西金-羊盆地土城子组层序地层格架,从而揭示了中生代侏罗纪上统土城子组沉积期的盆地演化规律.  相似文献   

6.
依据鄂尔多斯早白垩世内陆古沙漠沉积实例,探讨了沙丘间的成因分类,按照沙丘间底床的表面环境,将沙丘间划分为干旱型、潮湿型和覆水型三种沉积类型,并阐明了其沉积和组合特征;在此基础上,提出了风成垂向层序模式;鉴于沙漠同一相带的沙丘间类型及其沉积组合具有一定的共性特征,进一步建立和阐明了古沙漠分带的风成层序样式.  相似文献   

7.
新疆塔里木北部库车盆地内下白垩统发育,为一套干旱红层地层。该套地层中有干盐湖及内陆萨布哈相泥岩、风成砂岩、间歇性河流砂砾岩和洪积扇砾岩等类型的沉积物,组成了一个较为典型的沙漠沉积体系。伴随着盆地基底的抬升与下沉,在地层记录中显示出旋回性沉积作用的特点,在早白垩世地层中识别出5个三级层序,它们构成1个二级构造层序,这些三级层序具有从冲积相粗碎屑沉积到湖泊相细粒沉积的相序组构,以向上变细为特征。研究表明,风成砂岩是库车盆地储集性能最好的天然气储集层,库车盆地中的克拉2气田是中国第一个以风成砂岩为主要储集层的大型天然气田。  相似文献   

8.
渭河盆地新生代沉积相研究   总被引:2,自引:1,他引:1       下载免费PDF全文
渭河盆地位于鄂尔多斯地块南缘与秦岭造山带的交接部位,为一新生代盆地,古近系和新近系沉积厚度几千米,沉积类型多样,通过钻井及大量野外剖面的详细观察及实测,开展了地层、沉积相及岩相古地理学的研究。对渭河盆地新生代地层单位进行了重新厘定,并根据沉积特征划分为冲积扇沉积、河流沉积、湖泊沉积、三角洲沉积及风成沉积5种沉积类型。研究认为:整个沉积过程,盆地边断、边陷、边充填,纵向上极不对称,沉积中心偏南,平面上西窄东宽,盆地边部以冲积扇沉积为主,向中心由三角洲沉积逐渐过渡为湖相沉积。盆地从始新世开始沉积,渐新世后期抬升并存在沉积间断,中新世冷水沟期接着开始沉积,水体逐渐扩大,寇家村期湖泊广泛发育,至灞河期沉积范围达到最大,上新世游河期盆地存在西安、固市两大沉积凹陷区,边部开始出现风成沉积,第四纪西部隆起,湖泊沉积范围开始缩小,中更新世至全新世,盆地内湖泊萎缩成区域上的小型洼地。  相似文献   

9.
白垩纪的库车坳陷是一个干旱气候条件下的内陆坳陷,其中只发育下白垩统,为一套干旱红层地层,进一步划分为亚格列木组、舒善河组、巴西盖组和巴什基奇克组。该套干旱红层,包括洪积扇砾岩、间歇性河流砂砾岩、风成砂岩和沙漠湖紫红色泥岩等沉积。这些沉积在地层记录中常以一种特别的旋回性形式产出,在不整合面及其相关面之上首先沉积的是洪积扇砾岩和间歇性河流砂砾岩所构成的冲积沉积物,向上逐渐演变为沙漠湖红色泥岩,在成湖初期或湖退期发育了滨湖相风成砂岩,它们构成了一个较为典型的沙漠沉积体系。从冲积沉积到湖泊沉积构成总体向上变细的沉积相序组合。按照地层记录的旋回性进行三级沉积层序划分,将库车坳陷下白垩统划分为5个三级沉积层序即SQ1至SQ5。下白垩统的顶和底界面均为间断时间很长的区域不整合面,由它们所限定的下白垩统本身则构成一个二级构造层序,在二级构造层序内三级沉积层序常常形成有规律的叠加形式,下部的SQ1和上部的SQ5发育较多的冲积粗碎屑物,中部SQ2至SQ4则以湖泊相沉积为主。与海相地层不同,库车坳陷白垩系中由三级层序和二级层序所代表的地层记录中的中周期和长周期旋回的主要控制因素是幕式构造沉降,沉降初期由于地形高差大而以发育冲积粗碎屑物为主,均衡沉降期则与成湖期相对应从而发育较多的细粒沙漠湖沉积。以沉积物的时间演化序列和沉积相的空间展布形式所代表的规律性入手,建立库车坳陷下白垩统的层序地层格架,在层序地层框架内,系列层序地层格架栅状图和相应的古地理图较为清晰地反映出早白垩世库车坳陷的古地理面貌,以及相应的沉积岩相古地理演变过程。  相似文献   

10.
印尼Sunda盆地裂陷期层序地层与沉积充填特征   总被引:1,自引:1,他引:0  
应用高分辨率层序地层学原理和分析方法,以岩心、测井、录井、地震和分析化验资料为基础,通过Sunda盆地古近系层序地层关键界面的识别与对比,建立了盆地裂陷期层序地层格架。Sunda盆地裂陷期发育6个具有等时意义的层序界面,将其划分为5个长期基准面旋回。在盆地结构分析的基础上,确定了主要物源方向,分析了各个层序的沉积特征,认为盆地主要发育有扇三角洲、河流—三角洲、近岸水下扇、滩坝等沉积体系,不同层序发育时期及盆地的不同位置,其沉积体系类型及其分布有较大差异。与渤海湾盆地典型单断箕状断陷盆地相比,尽管断陷结构有相似性,但Sunda盆地裂陷期沉降速率相对较低,持续时间较短,深水湖泊发育规模相对较小。由于与盆缘主控断裂伴生的次级断裂不发育,沉积体系类型与发育特征也与典型的断陷盆地有较大的区别。  相似文献   

11.
Aeolian processes and ephemeral water influx from the Variscan Iberian Massif to the mid‐Cretaceous outer back‐erg margin system in eastern Iberia led to deposition and erosion of aeolian dunes and the formation of desert pavements. Remains of aeolian dunes encased in ephemeral fluvial deposits (aeolian pods) demonstrate intense erosion of windblown deposits by sudden water fluxes. The alternating activity of wind and water led to a variety of facies associations such as deflation lags, desert pavements, aeolian dunes, pebbles scattered throughout dune strata, aeolian sandsheets, aeolian deposits with bimodal grain‐size distributions, mud playa, ephemeral floodplain, pebble‐sand and cobble‐sand bedload stream, pebble–cobble‐sand sheet flood, sand bedload stream, debris flow and hyperconcentrated flow deposits. Sediment in this desert system underwent transport by wind and water and reworking in a variety of sub‐environments. The nearby Variscan Iberian Massif supplied quartzite pebbles as part of mass flows. Pebbles and cobbles were concentrated in deflation lags, eroded and polished by wind‐driven sands (facets and ventifacts) and incorporated by rolling into the toesets of aeolian dunes. The back‐erg depositional system comprises an outer back‐erg close to the Variscan highlands, and an inner back‐erg close to the central‐erg area. The inner back‐erg developed on a structural high and is characterized by mud playa deposits interbedded with aeolian and ephemeral channel deposits. In the inner back‐erg area ephemeral wadis, desiccated after occasional floods, were mud cracked and overrun episodically by aeolian dunes. Subsequent floods eroded the aeolian dunes and mud‐cracked surfaces, resulting in largely structureless sandstones with boulder‐size mudstone intraclasts. Floods spread over the margins of ephemeral channels and eroded surrounding aeolian dunes. The remaining dunes were colonized occasionally by plants and their roots penetrated into the flooded aeolian sands. Upon desiccation, deflation resulted in lags of coarser‐grained sediments. A renewed windblown supply led to aeolian sandsheet accumulation in topographic wadi depressions. Synsedimentary tectonics caused the outer back‐erg system to experience enhanced generation of accommodation space allowing the accumulation of aeolian dune sands. Ephemeral water flow to the outer back‐erg area supplied pebbles, eroded aeolian dunes, and produced hyperconcentrated flow deposits. Fluidization and liquefaction generated gravel pockets and recumbent folds. Dune damming after sporadic rains (the case of the Namib Desert), monsoonal water discharge (Thar Desert) and meltwater fluxes from glaciated mountains (Taklamakan Desert) are three potential, non‐exclusive analogues for the ephemeral water influx and the generation of hyperconcentrated flows in the Cretaceous desert margin system. An increase in relief driven by the Aptian anti‐clockwise rotation of Iberia, led to an altitude sufficient for the development of orographic rains and snowfall which fed (melt)water fluxes to the desert margin system. Quartzite conglomerates and sands, dominantly consisting of quartz and well‐preserved feldspar grains which are also observed in older Cretaceous strata, indicate an arid climate and the mechanical weathering of Precambrian and Palaeozoic metamorphic sediments and felsic igneous rocks. Unroofing of much of the cover of sedimentary rocks in the Variscan Iberian Massif must therefore have taken place in pre‐Cretaceous times.  相似文献   

12.
Sedimentary features, mineralogy, bulk geochemical composition, stable isotope analyses and pollen data from sediment cores were used to reconstruct the Late Quaternary depositional evolution of the Salada Mediana playa lake (central Ebro Basin, northeastern Spain). The 150-cm-long sediment core sequence is composed of gypsum- and dolomite-rich muds (Lower and Middle sections) and black, laminated, calcite-bearing sediments (Upper section). The Salada Mediana formed as a karstic depression in the Miocene gypsum substratum during the Late Pleistocene. The Lower section was deposited in a sulphate–carbonate saline lake that ended with a period of desiccation and basin floor deflation. Subsequent deposition (Middle section) took place in a playa-lake system. Two cycles of lower water table and expanded saline mud flats occurred. The Holocene sequence is missing, probably as a result of aeolian erosion. Sedimentation resumed only a few centuries ago, and saline pan environments dominated until modern times. The Salada Mediana facies succession was mainly governed by fluctuations in the hydrological balance, brine composition, and salinity; however, aeolian processes (detrital input and deflation) and recycling of previously precipitated salts also played a significant role.  相似文献   

13.
Based on a detailed sedimentological analysis of Lower Triassic continental deposits in the western Germanic sag Basin (i.e. the eastern part of the present‐day Paris Basin: the ‘Conglomérat basal’, ‘Grès vosgien’ and ‘Conglomérat principal’ Formations), three main depositional environments were identified: (i) braided rivers in an arid alluvial plain with some preserved aeolian dunes and very few floodplain deposits; (ii) marginal erg (i.e. braided rivers, aeolian dunes and aeolian sand‐sheets); and (iii) playa lake (an ephemeral lake environment with fluvial and aeolian sediments). Most of the time, aeolian deposits in arid environments that are dominated by fluvial systems are poorly preserved and particular attention should be paid to any sedimentological marker of aridity, such as wind‐worn pebbles (ventifacts), sand‐drift surfaces and aeolian sand‐sheets. In such arid continental environments, stratigraphic surfaces of allocyclic origin correspond to bounding surfaces of regional extension. Elementary stratigraphic cycles, i.e. the genetic units, have been identified for the three main continental environments: the fluvial type, fluvial–aeolian type and fluvial/playa lake type. At the time scale of tens to hundreds of thousands of years, these high‐frequency cycles of climatic origin are controlled either by the groundwater level in the basin or by the fluvial siliciclastic sediment input supplied from the highland. Lower Triassic deposits from the Germanic Basin are preserved mostly in endoreic basins. The central part of the basin is arid but the rivers are supplied with water by precipitation falling on the remnants of the Hercynian (Variscan)–Appalachian Mountains. Consequently, a detailed study of alluvial plain facies provides indications of local climatic conditions in the place of deposition, whereas fluvial systems only reflect climatic conditions of the upstream erosional catchments.  相似文献   

14.
通过现场实地踏勘、拍照、开挖探槽、利用卫星图解译等方法,对乌伦古湖环布伦托海区域和吉力湖北部乌伦古河现代三角洲地区的湖泊滨岸沉积环境和沉积体系进行了现代沉积调查。研究表明乌伦古湖滨岸沉积环境可以划分为基岩型湖岸、砾质湖岸、砂质湖岸、泥质湖岸等4种类型,发育山前基岩型湖岸、侵蚀基岩型湖岸、砾质冲积扇-扇三角洲、砾质辫状河三角洲、砾质滩坝、砂质滩坝、砂质三角洲、风成沙丘和泥质沼泽等9种滨岸沉积体系。山前基岩湖岸分布在布伦托海的北部,主要发育小型塌积扇、倒石锥和狭窄的湖滩。侵蚀型基岩湖岸位于布伦托海西岸和东北角地区,发育湖滩宽20~40 m。砾质冲积扇-扇三角洲沉积体系分布在布伦托海西北部25.8 km狭长区域,表现为一系列冲积扇-扇三角洲体系在山前形成裙边状展布的辫状平原,顺流向长5~15 km。砾质辫状河三角洲体系发育在布伦托海西部,砾质滩坝发育在砾质三角洲前缘,沉积物一般为中砾和粗砾,泥质含量低。现代乌伦古河三角洲位于吉力湖北部,沙丘广泛分布在布伦托海东部的三角洲平原。砂质滩坝发育在布伦托海东岸南部地区,滩坝带宽30~100 m,发育大量障碍痕、冰划痕。泥质沼泽占据湖岸总长度29.22 km,沼泽地带植物繁茂,水动力微弱,泥质和有机质含量高。根据卫星照片推测乌伦古湖水位可能发生过3次较大的下降,现代乌伦古河三角洲可能经过了4个发育阶段,但目前缺乏地质年代学证据。构造格局控制了湖泊边界的地形地貌特征,平行构造线走向容易形成规模较大的沉积体系,垂直构造走向形成的沉积体系规模较小。寒旱地区湖泊周缘入湖河流较少,具有季节性和暂时性特点,洪水泥石流、塌积扇等重力沉积体系比较发育。湖泊封冻是寒旱区湖泊区别于温暖地区湖泊的重要特征。在相同气候背景下,源汇地区的高差和河流的流程、流量决定了沉积物的供给总量和沉积体系的特征。湖盆边界形态影响沿岸流的发育,也影响湖泊风动力方向和强度。乌伦古湖滨岸沉积体系的多样性对研究古代湖泊滨岸沉积体系具有重要的启发,开展湖泊滨岸沉积环境和沉积体系调查对完善陆相湖盆沉积体系模式,对发现新的储层类型,对重建湖泊古地理环境具有重要的意义。  相似文献   

15.
A long dust history established using geological archives from dust provenance areas is necessary to understand the role of atmospheric dust in the global climate system better. Core sediments from a closed-basin groundwater-recharged lake in arid Central Asia were investigated using a multi-proxy approach (e.g. 14C AMS dating, pollen, and grain size) to trace the dust history since ~ 15 cal ka BP. Pollen analysis showed that before 7.9 cal ka BP, the vegetation was of desert type. After 7.9 cal ka BP, vegetation density increased, probably due to slightly increased moisture. The Chenopodiaceae-dominated desert expanded rapidly at 4.2–3.8 cal ka BP. Grain-size analysis was conducted for samples of lake deposits, modern aeolian dust, and dust trapped in snow, and the data showed that there was strong aeolian dust deposition at 11.8–11.1, 10.6–8, 6.1–4.9, and after 3.3 cal ka BP. This timing corresponds well with periods of increased terrestrial dust fluxes recorded by Greenland ice cores. Our study may document changes in the location and intensity of the Siberia High. These changes may play a more important role in the history of dust emission in arid Central Asia than previously thought.  相似文献   

16.
17.
冰缘风沙地貌与沉积研究进展   总被引:1,自引:0,他引:1  
冰缘风沙地貌与沉积是在冰缘寒冷干旱气候环境中,伴有冰川或冻融作用影响,主要由风沙作用形成的荒漠地貌.现代冰缘荒漠主要分布于南、北半球的高纬度地区及中低纬度的高海拔地区,部分温带沙漠也有古冰缘荒漠沉积分布.冰缘沙丘的规模一般较小,沙丘沉积富含腐殖质及冰粒,并兼具冻融和积雪层理构造等,砂的化学及物理成熟度较低.冰缘风沙沉积往往与邻近的其它沉积相伴生,如黄土、冰川、湖泊、海洋甚至火山碎屑,因而可参与区域气候、环境,尤其是古环流的恢复与重建,也可为研究温带荒漠在冰期时的演化提供参考.目前在冰缘沙漠研究中已经取得了一些可喜的成绩,但在确定冰缘荒漠的原因过程方面还没有形成系统的理论,更多工作有待进行.青藏高原腹地的普若岗日冰缘沙丘与戈壁,是我国典型的冰缘荒漠地貌与沉积,研究其地貌与环境过程,对丰富我国沙漠学研究内容和了解晚第四纪高原腹地气候、环境变化具有重要意义.  相似文献   

18.
五十万年来毛乌素沙漠的变迁   总被引:27,自引:2,他引:27  
对沙漠-黄土边界带的古风成砂-黄土-古土壤序列的研究表明,毛乌素沙漠至少在0.5MaB.P.就已出现,但也并非从其出现之初就持续至今。沙漠-黄土边界带的风成沉积所记录的沙丘活化和固定的多次转变是第四纪时期毛乌素沙漠对气候振荡响应的结果。五十万年来,沙漠-黄土边界带的石峁剖面记录了13层古风成砂,代表了13次沙漠大规模的南侵。沙漠的南侵不仅可以发生在冰期鼎盛之时,同样也可以发生在间冰期中的寒冷气候幕出现之时。此外,鉴于沙漠-黄土边界带具有气候敏感性的特点,石峁剖面的地层记录还表明了第四纪时期不仅有冷期与暖期的多次旋回,而且冷期和暖期发生时还有次一级的气候波动。  相似文献   

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