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1.
四川盆地西部侏罗纪沉积相及油气分布   总被引:2,自引:1,他引:2       下载免费PDF全文
四川盆地西部侏罗纪为内陆盆地,除其北缘早侏罗世有湖沼相外,主要为河流相与湖泊相,邻龙门山区发育冲积扇,其余地区发育冲积平原相和泛滥平原相。依据湖泊积水状况,将湖泊相细分为时令湖相、间歇湖相和长年湖相。印支期,甘孜-阿坝造山带形成,四川盆地由湿热气候演变为干燥、炎热气候;并使早侏罗世-中侏罗世早期成为长年湖泊环境。受燕山早中期构造运动影响,河流相、时令湖相与间歇湖相发育。长年湖相形成了侏罗系重要的生储油层系。河流相的粗碎屑岩成为储层,时令湖相与间歇湖相的泥质岩成为盖层,组成了侏罗系中上统多个储盖组合。  相似文献   

2.
大别山北缘早白垩世黑石渡组沉积体系研究   总被引:3,自引:0,他引:3  
分布于大别山北缘晓天-磨子潭断裂以北和金寨-响洪甸-西汤池断裂以南呈东西向延伸的早白垩世黑石渡组,厚达千米,岩相主要有角砾岩、砾岩、砂岩、粉砂岩、泥岩等,包括冲积扇、河流、扇三角洲和湖泊沉积体系,其中河流沉积主要由洪泛平原和决口扇组成。黑石渡组属于向上变细层序,早期为冲积扇沉积,中期为洪泛平原、决口扇和扇三角洲沉积,晚期为深湖浊流沉积。冲积扇和湖相浊流沉积主要发育于盆地东段舒城晓天地区,洪泛平原和决口扇沉积主要发育于盆地西段霍山地区,扇三角洲在两地都比较发育。这是一个不对称的断陷盆地,晓天-磨子潭断裂可能对盆地的发育具有控制作用。  相似文献   

3.
塔里木盆地早白垩世沉积相特征与古地理   总被引:4,自引:0,他引:4       下载免费PDF全文
贾进华 《古地理学报》2009,11(2):167-176
根据大量的钻井和露头资料,对塔里木盆地早白垩世沉积相特征和古地理进行了研究。塔里木盆地下白垩统主要发育冲积扇-扇三角洲、辫状河三角洲、氧化宽浅湖泊等3种沉积体系,包括陆相冲(洪)积扇、扇三角洲、辫状河三角洲、滨浅湖等沉积相,分布于下白垩统不同层位。塔里木盆地早白垩世主要包括塔东北和塔西南两大沉积区,总体为干旱氧化的内陆拗陷分割盆地。在塔东北沉积大区,早白垩世早期卡普沙良群沉积物受周缘4大物源区控制,为多物源的氧化宽浅湖盆环境,古地势呈“南高北低、东高西低”,盆地边缘以冲(洪)积扇、扇三角洲、辫状河三角洲相为主,盆地内部为滨浅湖亚相。早白垩世晚期巴什基奇克组沉积时期,塔里木盆地周缘进入一个新的构造活动期,古气候更加炎热干旱,氧化宽浅湖盆消失。在塔东北沉积大区,盆地受周缘4个主要物源区影响,以广泛分布的冲积扇-辫状河三角洲沉积体系占主体,盆地内部普遍为辫状河三角洲前缘-滨浅湖亚相沉积。在塔西南沉积大区,早白垩世克孜勒苏群沉积时期古地势呈“东高西低”,受北部喀什北山前和西南部古昆仑山2个物源区的控制,沉积物沿古昆仑山前呈狭长的条带状分布,沉积厚度自西向东减薄,主要是一套冲积扇-扇三角洲相和滨浅湖亚相沉积。  相似文献   

4.
5.
孙龙德 《古地理学报》2004,6(2):252-260
塔里木盆地库车坳陷与塔西南坳陷的白垩系沉积厚度大,岩石类型多,既有碎屑岩,又有蒸发岩和碳酸盐岩。沉积相类型丰富,包括海相、海陆交互相和陆相,并以陆相碎屑岩沉积为主。库车坳陷与塔西南坳陷在早白垩世虽为分隔性的沉积盆地,但其陆相碎屑沉积具有几乎相同的特征:均以冲积沉积体系发育为主,相带分布和储层发育具有明显的相似性。对应山前断陷盆地的不对称性,冲积扇-扇三角洲、辫状河三角洲沉积体系发育在靠近山前的陡坡一侧,正常河流三角洲沉积体系发育在湖盆缓坡一侧。冲积扇-扇三角洲沉积体系由冲积扇、扇三角洲平原、扇三角洲前缘等构成,辫状河三角洲沉积体系由辫状河三角洲平原、辫状河三角洲前缘等构成。储层主要发育于扇三角洲或辫状河三角洲的辫状河道、水下分流河道及分流河口砂坝中,在库车坳陷和塔西南坳陷都形成了优质的储集岩。砂体厚度大,分布广,储集条件好。冲积沉积体系的普遍发育预示了白垩系储集岩在盆地内的分布可能是十分广泛的。近年在喀什凹陷、英吉苏凹陷相继取得的勘探成果大大拓宽了其勘探领域,白垩系正逐渐成为盆地内主要的勘探目的层之一,展现了良好的勘探前景。  相似文献   

6.
鄂尔多斯盆地及周缘地区上古生界天然气资源丰富,中二叠统石盒子组是主力勘探层位,明确其沉积相及沉积特征对于该区油气勘探具有重要的意义。在野外剖面踏勘及钻井岩心观察的基础上,对研究区石盒子组地层及岩性特征、沉积相类型及沉积演化等进行系统分析。结果表明: 研究区中二叠统石盒子组主要发育粗粒陆源碎屑岩系。中二叠世研究区仍存在间歇性局部海侵,石盒子组主要以陆相沉积体系为主,包含冲积扇沉积相、河流沉积相、湖泊沉积相、三角洲沉积相等,同时发育障壁海岸沉积体系。研究区自北向南石盒子组依次发育冲积扇、河流、三角洲、滨浅湖等沉积,南缘、西南缘发育浅水三角洲沉积,南缘、东南缘障壁海湾中发育潟湖和障壁沙坝沉积。  相似文献   

7.
鄂尔多斯盆地及周缘地区上古生界天然气资源丰富,中二叠统石盒子组是主力勘探层位,明确其沉积相及沉积特征对于该区油气勘探具有重要的意义。在野外剖面踏勘及钻井岩心观察的基础上,对研究区石盒子组地层及岩性特征、沉积相类型及沉积演化等进行系统分析。结果表明:研究区中二叠统石盒子组主要发育粗粒陆源碎屑岩系。中二叠世研究区仍存在间歇性局部海侵,石盒子组主要以陆相沉积体系为主,包含冲积扇沉积相、河流沉积相、湖泊沉积相、三角洲沉积相等,同时发育障壁海岸沉积体系。研究区自北向南石盒子组依次发育冲积扇、河流、三角洲、滨浅湖等沉积,南缘、西南缘发育浅水三角洲沉积,南缘、东南缘障壁海湾中发育潟湖和障壁沙坝沉积。  相似文献   

8.
The Miocene alluvial-lacustrine sequences of the Madrid Basin, Spain, formed in highly varied landscapes. The presence of various types of palaeosols allows assessment of the effects of local and external factors on sedimentation, pedogenesis and geomorphological development. In the northern, more arid, tectonically active area, soils were weakly developed in aggrading alluvial fans, dominated by mass flows, reflecting high sedimentation rates. In more distal parts of the fans and in playa lakes calcretes and dolocretes developed; the former were associated with Mg-poor fan sediments while the latter formed on Mg-rich lake clays exposed during minor lake lowstands. The north-east part of the basin had a less arid climate. Alluvial fans in this area were dominated by stream flood deposits, sourced by carbonate terrains. Floodplain and freshwater lake deposits formed in distal areas. The high local supply of calcium carbonate may have contributed to the preferential development of calcretes on the fans. Both the fan and floodplain palaeosols exhibit pedofacies relationships and more mature soils developed in settings more distant from the sediment sources. Palaeosols also developed on pond and lake margin carbonates, and led to the formation of palustrine limestones. The spatial distributions and stratigraphies of palaeosols in the Madrid Basin alluvial fans suggest that soil formation was controlled by local factors. These palaeosols differ from those seen in Quaternary fans, which are characterized by climatically induced periods of stability and instability.  相似文献   

9.
若尔盖-松潘盆地中、上三叠统沉积剖面研究表明以陆相沉积为主,只在东北部青山峪有浅海相碳酸盐岩沉积。盆地北部出现河流、浅湖相沉积,中部以浅湖相沉积为主,局部出现深湖相沉积,南部主要为深湖相沉积。中、上三叠统地层的变形构造以冲褶席(duplex)构造为特点,表现出从北向南应变强度减弱。深部构造反映了盆地位于扬子板块大陆壳基底之上,叠覆在扬子板块北缘的前陆褶皱冲断带上。大地构造位置、沉积相与构造特点,共同说明若尔盖-松潘盆地是三叠纪碰撞造山作用时期扬子板块北部北缘的前陆盆地。  相似文献   

10.
Statigraphic exposures, fluvial archives and borehole data have been allowed to reconstruct the alluvial history of Late Pleistocene to Early Holocene and climate changes in the monsoonal wet–dry region of lower Damodar Basin (West Bengal, India). The facies architectures and climate proxies suggest that five to six climate changes occurred in between ~14 and 6 kiloannum (ka). Supporting evidence from the floodplain of Damodar River demonstrates that the successive phases of aggradation and incision were linked to the south-west monsoonal variability of Late Quaternary period. The onset of semi-arid climate was associated with caliches, pond and backswamp deposits of waning low-energy floods. The relatively warm-humid climate was associated with sandy bedforms, valley fills, slack water deposits and ferruginous nodules. This paper presents a synthesis of the available palaeoclimatic records from the lower Ganga Basin and the rivers of western and central India for the palaeoenvironmental significance of Late Quaternary deposits and discusses the influence of palaeoclimatic controls on the fluvial architectures and archives that developed below the floodplain of Damodar River. We have taken some representative studies from the region to reveal the spatial variability in fluvial successions in response to climate changes during this period.  相似文献   

11.
ANNA BREDA  NEREO PRETO 《Sedimentology》2011,58(6):1613-1647
The Travenanzes Formation is a terrestrial to shallow‐marine, siliciclastic–carbonate succession (200 m thick) that was deposited in the eastern Southern Alps during the Late Triassic. Sedimentary environments and depositional architecture have been reconstructed in the Dolomites, along a 60 km south–north transect. Facies alternations in the field suggest interfingering between alluvial‐plain, flood‐basin and shallow‐lagoon deposits, with a transition from terrestrial to marine facies belts from south to north. The terrestrial portion of the Travenanzes Formation consists of a dryland river system, characterized by multicoloured floodplain mudstones with scattered conglomeratic fluvial channels, merging downslope into small ephemeral streams and sheet‐flood sandstones, and losing their entire discharge subaerially before the shoreline. Calcic and vertic palaeosols indicate an arid/semi‐arid climate with strong seasonality and intermittent discharge. The terrestrial/marine transition shows a coastal mudflat, the flood basin, which is usually exposed, but at times is inundated by both major river floods and sea‐water storm surges. Locally coastal sabkha deposits occur. The marine portion of the Travenanzes Formation comprises carbonate tidal‐flat and shallow‐lagoon deposits, characterized by metre‐scale shallowing‐upward peritidal cycles and subordinate intercalations of dark clays from the continent. The depositional architecture of the Travenanzes Formation suggests an overall transgressive pattern organized in three carbonate–siliciclastic cycles, corresponding to transgressive–regressive sequences with internal higher‐frequency sedimentary cycles. The metre‐scale sedimentary cyclicity of the Travenanzes Formation continues without a break in sedimentation into the overlying Dolomia Principale. The onset of the Dolomia Principale epicontinental platform is marked by the exhaustion of continental sediment supply.  相似文献   

12.
Two Palaeogene fluvial fan systems linked to the south‐Pyrenean margin are recognized in the eastern Ebro Basin: the Cardona–Súria and Solsona–Sanaüja fans. These had radii of 40 and 35 km and were 800 and 600 km2 in area respectively. During the Priabonian to the Middle Rupelian, the fluvial fans built into a hydrologically closed foreland basin, and shallow lacustrine systems persisted in the basin centre. In the studied area, both fans are part of the same upward‐coarsening megasequence (up to 800 m thick), driven by hinterland drainage expansion and foreland propagation of Pyrenean thrusts. Fourteen sedimentary facies have been grouped into seven facies associations corresponding to medial fluvial fan, channelized terminal lobe, non‐channelized terminal lobe, mudflat, deltaic, evaporitic playa‐lake and carbonate‐rich, shallow lacustrine environments. Lateral correlations define two styles of alluvial‐lacustrine transition. During low lake‐level stages, terminal lobes developed, whereas during lake highstands, fluvial‐dominated deltas and interdistributary bays were formed. Terminal lobe deposits are characterized by extensive (100–600 m wide) sheet‐like fine sandstone beds formed by sub‐aqueous, quasi‐steady, hyperpycnal turbidity currents. Sedimentary structures and trace fossils indicate rapid desiccation and sub‐aerial exposure of the lobe deposits. These deposits are arranged in coarsening–fining sequences (metres to tens of metres in thickness) controlled by a combination of tectonics, climatic oscillations and autocyclic sedimentary processes. The presence of anomalously deeply incised distributary channels associated with distal terminal lobe or mudflat deposits indicates rapid lake‐level falls. Deltaic deposits form progradational coarsening‐upward sequences (several metres thick) characterized by channel and friction‐dominated mouth‐bar facies overlying white‐grey offshore lacustrine facies. Deltaic bar deposits are less extensive (50–300 m wide) than the terminal lobes and were also deposited by hyperpycnal currents, although they lack evidence of emergence. Sandy deltaic deposits accumulated locally at the mouths of main feeder distal fan streams and were separated by muddy interdistributary bays; whereas the terminal lobe sheets expand from a series of mid‐fan intersection points and coalesced to form a more continuous sandy fan fringe.  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.
ABSTRACT The middle Miocene sedimentary fill of the Calatayud Basin in north‐eastern Spain consists of proximal to distal alluvial fan‐floodplain and shallow lacustrine deposits. Four main facies groups characteristic of different sedimentary environments are recognized: (1) proximal and medial alluvial fan facies that comprise clast‐supported gravel and subordinate sandstone and mudstone, the latter exhibiting incipient pedogenic features; (2) distal alluvial fan facies, formed mainly of massive mudstone, carbonate‐rich palaeosols and local carbonate pond deposits; (3) lake margin facies, which show two distinct lithofacies associations depending on their distribution relative to the alluvial fan system, i.e. front (lithofacies A), comprising massive siliciclastic mudstone and tabular carbonates, or lateral (lithofacies B) showing laminated and/or massive siliciclastic mudstone alternating with tabular and/or laminated carbonate beds; and (4) mudflat–shallow lake facies showing a remarkable cyclical alternation of green‐grey and/or red siliciclastic mudstone units and white dolomitic carbonate beds. The cyclic mudflat–shallow lake succession, as exposed in the Orera composite section (OCS), is dominantly composed of small‐scale mudstone–carbonate/dolomite cycles. The mudstone intervals of the sedimentary cycles are interpreted as a result of sedimentation from suspension by distal sheet floods, the deposits evolving either under subaerial exposure or water‐saturated conditions, depending on their location on the lacustrine mudflat and on climate. The dolomite intervals accumulated during lake‐level highstands with Mg‐rich waters becoming increasingly concentrated. Lowstand to highstand lake‐level changes indicated by the mudstone/dolomite units of the small‐scale cycles reflect a climate control (from dry to wet conditions) on the sedimentation in the area. The spatial distribution of the different lithofacies implies that deposition of the small‐scale cycles took place in a low‐gradient, shallow lake basin located in an interfan zone. The development of the basin was constrained by gradual alluvial fan aggradation. Additional support for the palaeoenvironmental interpretation is derived from the isotopic compositions of carbonates from the various lithofacies that show a wide range of δ18O and δ13C values varying from ?7·9 to 3·0‰ PDB and from ?9·2 to ?1·7‰ PDB respectively. More negative δ18O and δ13C values are from carbonate‐rich palaeosols and lake‐margin carbonates, which extended in front of the alluvial fan systems, whereas more positive values correspond to dolomite beds deposited in the shallow lacustrine environment. The results show a clear trend of δ18O enrichment in the carbonates from lake margin to the centre of the shallow lake basin, thereby also demonstrating that the lake evolved under hydrologically closed conditions.  相似文献   

15.
西藏措勤盆地下白垩统多巴组沉积环境分析   总被引:9,自引:3,他引:6  
王冠民 《沉积学报》2000,18(3):349-354
西藏措勤前陆盆地下白垩统多巴组是一套分布面积广大,比较特征的碳酸盐、陆源碎屑混合沉积的地层,本文通过对几条较完整的主干剖面的详细沉积相分析,揭示了多巴组的主要沉积环境包括潮坪、低能潮下带、近岸碳酸盐台地缓坡、台缘介壳滩及碳酸盐台地等几种主要类型,建立了多巴组的沉积相模式,并指出多巴组的沉积演化主要受控于盆地构造运动和全球海平面变化,这将有助于该地区的构造沉积演化研究。  相似文献   

16.
东濮凹陷西洼南段老第三系岩相古地理特征   总被引:3,自引:3,他引:0       下载免费PDF全文
东濮凹陷西洼南段老第三系属地堑型湖盆沉积,主要发育河流相、三角洲相、冲积扇相、扇三角洲相以及湖泊相。两条边界断层,尤其是西侧长垣断层的活动性控制着该区的岩相古地理格局:断层活动强烈时,湖盆水域扩大,湖水加深,主要发育扇三角洲、三角洲及深湖-半深湖沉积;断层活动减弱时,水体变浅或干涸,湖盆被充填,主要发育冲积扇或河流相沉积。  相似文献   

17.
承德地区土城子组沉积特征及其构造意义   总被引:6,自引:0,他引:6  
承德地区土城子组的沉积地层,主要保存在两个地区,一处为承德向斜,另一处为古北口断层的南部紧邻断层地区,即分别命名的承德盆地和古北口盆地内。根据其沉积特征,可分两个阶段。土城子组沉积早期阶段,盆地充填自下而上表现为冲积扇、砾质辫状河到曲流河的沉积过程。晚期阶段,承德盆地南部以及古北口盆地内近断层处,皆表现为冲积扇沉积,沉积物较早期地层有明显不同,碳酸盐岩颗粒占据主要成分,并沿剖面向上增加;承德盆地南半部分和古北口盆地内古流向分别为自南向北和自北向南。区域构造和土城子组沉积特征表明,在土城子组沉积晚期阶段,该地区构造环境发生了由伸展到挤压的转变,同时可能使盆地发生了正反转。  相似文献   

18.
伊犁盆地南缘侏罗系沉积微相及铀矿控矿条件研究   总被引:10,自引:0,他引:10  
伊犁盆地是一个中生代陆相盆地,其南缘下-中侏罗统含煤地层十分发育。水西沟群划分为八道湾组、三工河组和西山窑组,沉积相分属于冲积扇相、三角洲相和湖泊相。可地浸砂岩型铀矿主要赋存于冲积扇扇中辫状河道微相和三角洲平原分流河道及泥炭沼泽微相。其铀矿床的主要控制因素是:盆地基底及周边地层含铀性;盆地周边构造发育条件;岩相古地理;沉积微相;成岩作用;地下水作用和氧化-还原地球化学分带。  相似文献   

19.
合肥盆地中、新生代沉积相初步研究   总被引:5,自引:0,他引:5       下载免费PDF全文
合肥盆地是与大别山造山带有密切关系的山前前陆盆地,盆地中、新生界沉积物主要来自南面大别山区以及盆地东部、北部剥蚀区。通过野外实际踏勘、室内岩石薄片显微分析,认为合肥盆地中、新生界发育的沉积相主要有冲积扇相、河流相和湖泊相,其中以河流相最为发育。该盆地中、新生界油气源条件比较丰富,储盖条件良好,生储盖组合形式多样,存在多种油气圈闭类型,是一个油气勘探潜力较大的陆相沉积盆地。  相似文献   

20.
The Denizli Basin (southwestern Anatolia, Turkey) contains a record of environmental changes dating since the Early Miocene. Detailed facies analysis of the Neogene formations in this half-graben enables us to document successive depositional regimes and palaeogeographic settings. Sedimentation commenced in the Early Miocene with the deposition of alluvial-fan and fluvial facies (K?z?lburun Formation). At this stage, alluvial fans sourced from elevated areas to the south prograded towards the basin centre. The Middle Miocene time saw the establishment of marginal lacustrine and wetland environments followed by the development of a shallow lake (Sazak Formation). The uppermost part of this unit consists of evaporitic saline lake and saline mudflat facies that grade upward into brackish lacustrine deposits of Late Miocene-Pliocene age (Kolankaya Formation). The lake became shallower at the end of the Pliocene time, as is indicated by expansion shoreface/foreshore facies. In the Early Quaternary, the Denizli Basin was transformed into a graben by the activation of ESE-trending normal faults. Alluvial fans were active at the basin margins, whereas a meandering river system occupied the basin central part.Oxygen isotope data from carbonates in the successive formations show an alternation of wetter climatic periods, when fresh water settings predominated, and very arid periods, when the basin hosted brackish to hypersaline lakes. The Neogene sedimentation was controlled by an active, ESE-trending major normal fault along the basin's southern margin and by climatically induced lake-level changes. The deposition was more or less continuous from the Early Miocene to Late Pliocene time, with local unconformities developed only in the uppermost part of the basin-fill succession. The unconformable base of the overlying Quaternary deposits reflects the basin's transformation from a half-graben into a graben system.  相似文献   

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