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1.
进行了高分辨层序地层划分,济阳地区石炭—二叠系共划分出7个层序,层序1、2、3为二元结构层序,即由海侵体系域和高水位体系域构成;层序4~7为三元结构层序,由低水位、水进和高水位体系域构成。煤成气主要储层发育在层序4~7的低水位和高水位体系域中。主要的骨架砂岩有:三角洲平原以分流河道为主体的三角洲砂体;河流体系中的河道充填沉积,以边滩为主体;湖泊体系中以湖泊三角洲及湖泊滨岸砂质沉积为主体的分流河道沉积和滨浅湖砂质沉积;河流-湖泊复合沉积体系中的河道充填沉积和滨岸带砂质沉积;决口扇沉积也是骨架砂体之一。储集在二叠系砂岩(属于致密砂岩)储层内的煤成气藏为重要的天然气藏。石炭—二叠系砂岩成岩作用强烈,原生粒间孔隙保存较少,大部分的粒间孔隙是由于后期溶蚀作用形成的。这种次生的粒间孔隙和充填在粒间孔隙之间的杂基或胶结物后期经溶蚀作用形成。  相似文献   

2.
对鄂尔多斯盆地南部山西组二段—下石盒子组八段储层砂岩的岩石学特征、孔隙类型与物性特征、胶结物种类及成岩作用特点的详细研究表明:山西组二段—下石盒子组八段砂岩的主要孔隙类型大部分是与胶结物和泥质杂基有关的微孔隙,也是造成研究区砂岩储层低孔低渗的内在原因之一。砂岩主要的成岩作用包括机械压实作用、胶结作用、溶蚀溶解作用。压实作用是成岩早期导致砂岩储层质量变差的主要原因之一;胶结作用包括硅质胶结、钙质胶结和粘土矿物胶结,硅质胶结对储层物性的贡献大于其他胶结类型,方解石是造成储层物性降低的主要胶结物;煤系地层埋藏后提供的酸性孔隙流体造成早期长石和方解石的溶蚀溶解,形成次生孔隙,对早期储层物性起到了一定的改善作用,但由于后期强烈的方解石胶结作用而消失殆尽。  相似文献   

3.
塔里木盆地石炭系东河砂岩是我国典型的深埋海相碎屑岩优质储层,储集砂体物性好,但受碳酸盐胶结物影响导致非均质性较强。为了更准确地预测优质储层发育带,通过精细岩心观察、大量薄片鉴定及碳氧同位素和阴极发光资料分析,对哈拉哈塘地区石炭系东河砂岩段碳酸盐胶结物宏观及微观沉积特征和成因进行了研究。研究发现:前滨及上临滨相带砂岩含油性较好,不含油的含碳酸盐胶结物砂层主要有Ⅰ类生物潜穴型、Ⅱ类层理纹层型、Ⅲ类薄层灰质砂岩型和Ⅳ类钙质砂岩团块型4种岩性组合;碳酸盐胶结物主要类型为方解石,其次为铁方解石,主要填充在溶蚀粒间孔及碎屑颗粒粒内溶孔中。东河砂岩储层中碳酸盐胶结物主要为有机酸脱羧成因,常见于Ⅱ、Ⅲ类岩性组合;少量生物成因及沉积暴露成因,主要见于Ⅰ类和Ⅳ类岩性组合。研究区碳酸盐胶结物δ13C较高的关键原因是东侧轮南低凸起的奥陶系碳酸盐岩地层侵蚀溶蚀供给。  相似文献   

4.
利用辽东湾西北部A区6口井的录井、测井、岩心资料,通过细致的层序地层学及沉积学分析,将研究层段自下而上划分为SQs2和SQs1两个三级层序,每个层序均可划分出湖扩体系域(TST)和高位体系域(HST),并识别出三个层序边界和两个最大湖泛面,自下而上分别为SQs2底界面SBs2、最大湖泛面mfss2、SQs1底界面SBs1、最大湖泛面mfss1、SQs1顶界面SBd3。钻井揭示沙二段主要为砂岩、含砾砂岩,以粗碎屑岩发育为特征;沙一段主要为泥岩和白云岩,以泥岩发育为主要特征。研究区沉积相为湖泊相,滨浅湖亚相,微相发育泥滩、混合滩、砂质滩坝和钙质浅滩。低突起及其斜坡地区,在SQs2以混合滩沉积为主,在SQs1以泥滩沉积为主;陡坡地区,在SQs2发育砂质滩坝,在SQs1发育钙质浅滩。SQs2砂岩发育层段和SQs1的生物白云岩发育层段为良好的储层。  相似文献   

5.
为查明塔里木盆地塔北隆起轮南古潜山东—草湖凹陷地区下石炭统巴楚组东河砂岩段—角砾岩段的层序地层与沉积相展布特征,基于钻井、测井和地震资料,应用沉积学、层序地层学和地震沉积学原理,对研究区巴楚组的层序地层与沉积环境进行了详细研究。结果表明:(1)从下至上,巴楚组的下部东河砂岩段可划分为1个准层序组、3个准层序(DH1、DH2、DH3),上部角砾岩段可划分为1个准层序组、1个准层序(DH4),4期准层序沉积期均为水进沉积环境。(2)研究区在巴楚组沉积期主要发育扇三角洲-滨岸沉积体系,其中第1期准层序(DH1)与第4期准层序(DH4)以扇三角洲沉积为主,第2期准层序(DH2)与第3期准层序(DH3)以海相滨岸砂岩沉积为主。  相似文献   

6.
山东济阳石炭-二叠系煤成气储层沉积研究   总被引:3,自引:0,他引:3  
在建立层序地层格架的基础上进行煤成气储层沉积学研究。储集在二叠系砂岩(属于致密砂岩)储层内的煤成气藏成为重要的天然气藏。济阳地区上石盒子组万山段、奎山段和孝妇河段,发育河流相、湖泊滨岸相为主要特色的砂质沉积,是煤成气主要储集层。主要储层沉积相为河道滞留与边滩组成的河道充填。煤成气储集空间主要是次生孔隙。本区石炭-二叠系砂岩成岩作用强烈,原生粒间孔保存较少,大部分的粒间孔隙是由于后期溶蚀作用形成的。这种次生的粒间孔隙充填在粒间孔隙之间的杂基或胶结物后期经溶蚀作用形成。二叠系气藏的直接盖层主要是下石盒子组的河漫相、山西组及太原组的三角洲平原和湖沼相沉积的泥岩、煤和炭质泥岩。  相似文献   

7.
据岩心、录井、测井等资料,分析塔北南坡志留系柯坪塔格组下段底部砂岩亚段沉积体系类型及空间分布特征。塔北南坡志留系柯坪塔格组下段底部砂岩亚段发育一套海侵背景下形成的碎屑滨岸一浅海沉积体系,其中,碎屑滨岸体系可进一步划分为后滨、前滨、临滨沉积。后滨亚相以砂泥岩互层为特征,见泥砾;前滨亚相以中粗砂岩为主,泥岩较少;临滨亚相为砂泥岩不等的厚互层,上临滨砂岩所占比例较高,下临滨泥岩增多。浅海相以泥岩为主。平面上,沉积体系自NW向ES呈后滨-前滨-临滨-浅海不规则带状展布,垂向上,自下而上呈后滨-前滨-临滨-浅海演化序列。该沉积相格局的确定,为分析有利储层及确定下一步有利勘探目标奠定了基础。  相似文献   

8.
塔里木盆地巴楚及塔中地区二叠系层序地层学分析   总被引:3,自引:2,他引:1  
通过钻井、测井以及野外剖面等资料的综合分析,塔里木盆地巴楚及塔中地区二叠系可识别出6个层序边界.除B4为Ⅱ型层序边界外,其他各层序边界均为Ⅰ型层序边界,并以侵蚀下切为特征.根据6个层序边界可将二叠系划分为5个三级层序,这些层序均符合Vail经典层序地层学模式.SQ4层序可识别出湖侵体系域和高位体系域,SQ1、SQ2、SQ3、SQ5层序可识别出低位体系域、海(湖)侵体系域和高位体系域.低位体系域为河流相性质的侵蚀沟谷充填沉积,海(湖)侵体系域为滨浅湖和半深湖沉积,高位体系域为半深湖-滨浅湖以及三角洲沉积,另外,SQ3层序高位体系域上部还发育火山岩.河流相侵蚀沟谷充填沉积和三角洲沉积主要分布在塔东隆起西部斜坡上.  相似文献   

9.
上扬子地区下寒武统页岩展现出了良好的页岩气勘探前景,是中国乃至全球开展古老层系海相页岩气勘探研究的重要领域。利用高分辨率层序地层学方法在海相细粒沉积岩中建立高精度层序地层格架,对川西南地区下寒武统进行层序划分与对比,可有效预测富有机质发育层段,指导非常规油气勘探。本文以川西南地区下寒武统麦地坪组-筇竹寺组细粒沉积岩为研究对象,选取金石103井,通过岩心精细描述和高精度薄片分析,将麦地坪组-筇竹寺组划分为磷质岩、弱纹层硅质泥岩、硅质粉砂质泥岩、变形层理泥质粉砂岩、块状硅质粉砂岩、暗纹层粉砂质泥岩、透镜状粒序泥质粉砂岩、波状纹层泥质粉砂岩、贫纹层粉砂质泥岩、富纹层泥质粉砂岩和钙质胶结硅质粉砂岩等11种岩相类型,并以此为基础识别了混积潮坪、泥质深水陆棚、砂泥质深水陆棚、泥质浅水陆棚和砂泥质浅水陆棚5类沉积相;通过岩心精细观察,识别出了3个三级层序界面,包括震旦系-寒武系不整合面SB1、麦地坪组-筇竹寺组岩性突变面SB2和岩性组合转换面SB3。根据岩相叠加样式及沉积构造定量统计,在麦地坪组-筇竹寺组中划分了35个准层序、14个准层序组,总结了由潮汐流控主导的“磷质颗粒灰岩+磷质-钙质砂岩+钙质...  相似文献   

10.
塔中40油田东河砂岩储层特征及其控制因素   总被引:7,自引:0,他引:7  
东河砂岩是塔中40油田的主要产层,根据岩性不同,由上至下可分含砾砂岩段和均质砂岩段,两段储层的储集物性相差很大,其中均质砂岩较好,通过岩心观察储层岩石学戚岩作用和孔隙演化等多种特征研究,认为含砾砂岩段为临滨亚相的产物,均质砂岩段为前滨亚相的产物,这是两段储层物性相差大的重要原因之一.在岩石组份上,含砾砂岩中碳酸盐胶结物的含量比均质砂岩高得多,通过细致的微观特征分析,认为这种碳酸盐胶结物可能是埋藏过程中粘土矿物蒙脱石向伊利石转化,析出的钙、镁、铁等离子与碳酸根离子反应所产生;这些碳酸盐胶结物后被溶蚀形成现今的储层.含砾砂岩段储层较差可能是由于其沉积于临滨环境,源始孔隙度较低,成岩改造后相对更致密,在溶蚀过程中,溶蚀流体通过少,胶结物被溶蚀的少所形成.沉积相和成岩作用中的胶结作用、溶蚀作用是东河砂岩储层发育的主要控制因素.  相似文献   

11.
赵俊威 《地质与勘探》2017,53(3):590-598
本文研究海平面变化对海相单一亚相储层宏观非均质性的影响。以经典层序地层学理论为指导,应用岩心测试、测井数据,对哈得油田东河砂岩段临滨亚相储层宏观非均质性进行了分析,提出了海平面升降对临滨亚相储层宏观非均质性控制机理,确定了海平面相对变化控制的储层宏观非均质性分布模式。结果表明,准层序、准层序组及体系域内不同级次的海平面变化,对沉积物形成的水动力条件及沉积后所处表生环境产生较大影响,各项储层宏观非均质参数表现出明显的规律性,使准层序内单一临滨亚相储层宏观非均质性表现为向上减弱的变化趋势;准层序组内由于准层序堆砌特征差异,使退积式准层序组内临滨亚相储层宏观非均质性呈向上变强的特征,而进积式准层序组内表现为由强到弱的趋势;高位体系域内单一临滨亚相储层宏观非均质性总体表现为向上逐渐减弱。  相似文献   

12.
本文研究海平面变化对海相单一亚相储层宏观非均质性的影响。以经典层序地层学理论为指导,应用岩心测试、测井数据,对哈得油田东河砂岩段临滨亚相储层宏观非均质性进行了分析,提出了海平面升降对临滨亚相储层宏观非均质性控制机理,确定了海平面相对变化控制的储层宏观非均质性分布模式。结果表明,准层序、准层序组及体系域内不同级次的海平面变化,对沉积物形成的水动力条件及沉积后所处表生环境产生较大影响,各项储层宏观非均质参数表现出明显的规律性,使准层序内单一临滨亚相储层宏观非均质性表现为向上减弱的变化趋势;准层序组内由于准层序堆砌特征差异,使退积式准层序组内临滨亚相储层宏观非均质性呈向上变强的特征,而进积式准层序组内表现为由强到弱的趋势;高位体系域内单一临滨亚相储层宏观非均质性总体表现为向上逐渐减弱。  相似文献   

13.
Abstract Physical stratigraphy within shoreface‐shelf parasequences contains a detailed, but virtually unstudied, record of shallow‐marine processes over a range of historical and geological timescales. Using high‐quality outcrop data sets, it is possible to reconstruct ancient shoreface‐shelf morphology from clinoform surfaces, and to track the evolving morphology of the ancient shoreface‐shelf. Our results suggest that shoreface‐shelf morphology varied considerably in response to processes that operate over a range of timescales. (1) Individual clinoform surfaces form as a result of enhanced wave scour and/or sediment starvation, which may be driven by minor fluctuations in relative sea level, sediment supply and/or wave climate over short timescales (101?103 years). These external controls cannot be distinguished in vertical facies successions, but may potentially be differentiated by the resulting clinoform geometries. (2) Clinoform geometry and distribution changes systematically within a single parasequence, reflecting the cycle in sea level and/or sediment supply that produced the parasequence (102?105 years). These changes record steepening of the shoreface‐shelf profile during early progradation and maintenance of a relatively uniform profile during late progradation. Modern shorefaces are not representative of this stratigraphic variability. (3) Clinoform geometries vary greatly between different parasequences as a result of variations in parasequence stacking pattern and relict shelf morphology during shoreface progradation (105?108 years). These controls determine the external dimensions of the parasequence.  相似文献   

14.
The Quilalar Formation and correlative Mary Kathleen Group in the Mount Isa Inlier, Australia, conformably overlie rift-related volcanics and sediments and non-conformably overlie basement rocks. They represent a thermal-relaxation phase of sedimentation between 1780 and 1740 Ma. Facies analysis of the lower siliciclastic member of the Quilalar Formation and the coeval Ballara Quartzite permits discrimination of depositional systems that were restricted areally to either N-S-trending marginal platform or central trough palaeogeographic settings. Four depositional systems, each consisting of several facies, are represented in the lower Quilalar Formation-Ballara Quartzite; these are categorized broadly as storm-dominated shelf (SDS), continental (C), tide-dominated shelf (TDS) and wave-dominated shoreline (WDS). SDS facies consist either of black pyritic mudstone intervals up to 10 m thick, or mudstone and sandstone associated in 6–12-m-thick, coarsening-upward parasequences. Black mudstones are interpreted as condensed sections that developed as a result of slow sedimentation in an outer-shelf setting starved of siliciclastic influx. Vertical transition of facies in parasequences reflects flooding followed by shoaling of different shelf subenvironments; the shoreface contains evidence of subaerial exposure. Continental facies consist of fining-upward parasequences of fluvial origin and tabular, 0·4–4-m-thick, aeolian parasequences. TDS facies are represented by stacked, tabular parasequences between 0·5 and 5 m thick. Vertical arrangement of facies in parasequences reflects flooding and establishment of a tidal shelf followed by shoaling to intertidal conditions. WDS facies are preserved in 0·5–3-m-thick, stacked, tabular parasequences. Vertical transition of facies reflects initial flooding with wave reworking of underlying arenites along a ravinement surface, followed by shoaling from lower shoreface to foreshore conditions. Parasequences are stacked in retrogradational and progradational parasequence sets. Retrogradational sets consist of thin SDS parasequences in the trough, and C, TDS and probably WDS parasequences on the platforms. Thick SDS parasequences in the trough, and TDS, subordinate C and probably WDS parasequences on the platforms make up progradational parasequence sets. Depositional systems are associated in systems tracts that make up 40–140-m-thick sequences bounded by type-2 sequence boundaries that are disconformities. Transgressive systems tracts consist of C, TDS and probably WDS depositional systems on the platforms and the SDS depositional system and suspension mudstone deposits in the trough. The transgressive systems tract is characterized by retrogradational parasequence sets and developed in response to accelerating rates of sea-level rise following lowstand. Condensed-section deposits in the trough, and the thickest TDS parasequences on the platforms reflect maximum rates of sea-level rise and define maximum flooding surfaces. Highstand systems tract deposits are progradational. Early highstand systems tracts are represented by TDS and probably WDS depositional systems on the platforms and suspension mudstone deposits in the trough and reflect decreasing rates of sea-level rise. Later highstand systems tracts consist of the progradational SDS depositional system in the trough and, possibly, thin continental facies on the platforms. This stage of sequence development is related to slow rates of sea-level rise, stillstand and slow rates of fall. Lowstand deposits of shelf-margin systems tracts are not recognized but may be represented by shoreface deposits at the top of progradational SDS parasequence sets.  相似文献   

15.
西藏北部雁石坪地区晚巴柔—早巴通期玛托组是一个以砂岩、泥岩为主夹少量灰岩组成的混积型陆棚环境的沉积。含有介壳的凝缩段、下超面及沟蚀面,它们是划分体系域的关键界面。体系域具有二元结构特征,即海侵—高水位体系域,且TST沉积旋回厚度>HST,准层序类型有3种,分别是以砂岩为主的准层序、以泥岩为主的准层序和以潮坪体系向上变浅的准层序,准层序叠置构成进积型和退积型准层序组。采用沉积体系分析方法,初步建立研究区玛托组相对海平面变化曲线,并与藏南及全球海平面曲线进行对比分析,结合碳、氧同位素和磁化率资料,探讨研究区晚巴柔—早巴通期玛托组海平面变化控制因素。研究认为全球海平面变化控制了雁石坪地区晚巴柔早期海平面变化,而班公湖—怒江逢合带向北俯冲构造活动引起的区域洋盆容积变化是晚巴柔晚期—早巴通期海平面变化的主要因素。  相似文献   

16.
深层致密砂岩储层特征及物性控制因素   总被引:1,自引:1,他引:0  
基于川东北元坝西地区10口钻井的须二下亚段砂岩物性测试数据,结合铸体薄片、氩离子抛光扫描电镜和压汞测试等手段,分析了致密砂岩储层的特征及物性控制因素。研究表明元坝西须二下亚段砂岩为低孔中低渗储层,孔隙度为0.99%~10.53%,渗透率为(0.003 6~1.41)×10-3 μm2,孔渗关系表现为“分层”特征,根据孔渗关系可划分出低孔中渗储层,低孔低渗储层和特低孔低渗储层3种类型储层。不同类型储层的砂岩物性受沉积条件和成岩作用共同控制,沉积条件决定了砂岩岩石学特征,进而对成岩作用产生重要影响;成岩作用的非均质性最终决定了储层物性的差异。不同类型储层砂岩在垂向上表现出强烈的成岩非均质性,发育岩屑溶蚀段(绿泥石膜胶结段)—硅质胶结段—方解石胶结段的成岩组合序列。优质储层主要分布在发育强烈溶蚀作用河道砂体中部的中粒(长石)岩屑砂岩中。此项研究结果能更好地进行深层致密砂岩甜点预测,指导四川盆地深层致密砂岩气的勘探。  相似文献   

17.
柳赞油田位于河北省滦南县与唐海县交界处,是冀东油田的主力油田之一。构造上处于燕山褶皱带前缘,渤海湾盆地南堡凹陷的东部。受柏各庄断层活动及古斜坡地形的影响,该区古近系沙三段地层属于近源快速堆积沉积,分选差,成熟度低,岩相复杂,为典型的扇三角洲沉积。通过对沉积特征和沉积相带展布的分析,建立了工区扇三角洲的沉积模式。以层序地层学原理和方法为手段,应用测井和三维地震资料,通过不整合面、湖泛面等层序界面和沉积旋回的识别,将柳赞油田沙河街组地层划分为4个准层序组,12个准层序,建立了高分辨率的层序地层格架,分析了准层序在垂向上的叠置样式,把准层序组归纳为进积式和退积式两种类型,确定了优质储层在准层序和准层序组中出现的位置及分布规律。论文在分析沙河街组沉积时期古地形、古气候与古生态特征的基础上,应用砂岩厚度等值线图,恢复了柳赞油田古近系沙河街组岩相古地理面貌。研究表明,工区内发育扇三角洲前缘亚相,分支水道是主要的砂体微相,砂体沿北东-南西向延伸,与古物源方向基本一致。  相似文献   

18.
Abstract Linking siliciclastic diagenesis to sequence stratigraphy allows a better understanding of the parameters controlling the spatial and temporal distribution of diagenetic alterations, and hence of reservoir quality. A study of the coal-bearing, alluvial, deltaic, estuarine and shallow-marine sandstones of the Rio Bonito Formation, early Permian, Paraná Basin (southern Brazil), reveals that the distribution of diagenetic alterations and of related reservoir quality evolution can be constrained within a sequence stratigraphic framework. Calcite, dolomite, siderite, kaolinite and pyrite cementation is consistently linked to sequence and parasequence boundaries, transgressive and maximum flooding surfaces and is systematically distributed within lowstand, transgressive and highstand systems tracts. Diagenesis of coal layers at parasequence boundaries has promoted the formation of stratabound calcite (detectable in resistivity wire line logs), concretionary pyrite and kaolinite and of silicate grain dissolution in sandstones located above and below these boundaries, particularly in the transgressive systems tract. Meteoric water diagenesis caused grain dissolution and the formation of kaolinite in sandstones below sequence boundaries and in lowstand systems tract sandstones. Carbonate bioclasts and low sedimentation rates in lag deposits at parasequence boundaries, transgressive and maximum flooding surfaces favoured the formation of grain-rimming siderite. The results of this study are relevant to the exploration of coal-bed methane and other coal-bearing reservoirs, where it is crucial to unravel and predict the distribution and quality of reservoirs and compartments.  相似文献   

19.
高分辨露头层序地层学的研究基础──准层序的识别   总被引:10,自引:2,他引:10  
以塔里木盆地西南缘下石炭统和什拉甫组为例,将微相分析及古生态分析应用于准层序研究之中。在此基础之上,分析沉积层序及其内部各体系域、各种界面的沉积特征。同时,根据准层序垂直叠加的特征来寻找沉积层序内部更高级次的旋回,以达到提高沉积层序的分辨率之目的,恢复该地区维宪期多级次古海平面变化特征。强调准层序分析是高分辨露头层序地层学的研究基础。  相似文献   

20.
Although modern wave‐dominated shorelines exhibit complex geomorphologies, their ancient counterparts are typically described in terms of shoreface‐shelf parasequences with a simple internal architecture. This discrepancy can lead to poor discrimination between, and incorrect identification of, different types of wave‐dominated shoreline in the stratigraphic record. Documented in this paper are the variability in facies characteristics, high‐resolution stratigraphic architecture and interpreted palaeo‐geomorphology within a single parasequence that is interpreted to record the advance of an ancient asymmetrical wave‐dominated delta. The Standardville (Ab1) parasequence of the Aberdeen Member, Blackhawk Formation is exposed in the Book Cliffs of central Utah, USA. This parasequence, and four others in the Aberdeen Member, record the eastward progradation of north/south‐trending, wave‐dominated shorelines. Within the Standardville (Ab1) parasequence, distal wave‐dominated shoreface‐shelf deposits in the eastern part of the study area are overlain across a downlap surface by southward prograding fluvial‐dominated delta‐front deposits, which have previously been assigned to a separate ‘stranded lowstand parasequence’ formed by a significant, allogenic change in relative sea‐level. High‐resolution stratigraphic analysis of these deposits reveals that they are instead more likely to record a single episode of shoreline progradation characterized by alternating periods of normal regressive and forced regressive shoreline trajectory because of minor cyclical fluctuations in relative sea‐level. Interpreted normal regressive shoreline trajectories within the wave‐dominated shoreface‐shelf deposits are marked by aggradational stacking of bedsets bounded by non‐depositional discontinuity surfaces. Interpreted forced regressive shoreline trajectories in the same deposits are characterized by shallow incision of fluvial distributary channels and strongly progradational stacking of bedsets bounded by erosional discontinuity surfaces that record enhanced wave‐base scour. Fluvial‐dominated delta‐front deposits most probably record the regression of a lobate delta parallel to the regional shoreline into an embayment that was sheltered from wave influence. Wave‐dominated shoreface‐shelf and fluvial‐dominated delta‐front deposits occur within the same parasequence, and their interpretation as the respective updrift and downdrift flanks of a single asymmetrical wave‐dominated delta that periodically shifted its position provides the most straightforward explanation of the distribution and relative orientation of these two deposit types.  相似文献   

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