FANG Shi, LIU Zhao-jun, HU Xian-hui. SEQUENCE STRATIGRAPHIC CHARACTERISTICS OF FLUVIAL FACIES IN THE QUANTOU FORMATION OF BUHAIHELONG AREA, THE SONGLIAO BASIN[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2003, 25(1): 33-38. doi: 10.11781/sysydz200301033
Citation: FANG Shi, LIU Zhao-jun, HU Xian-hui. SEQUENCE STRATIGRAPHIC CHARACTERISTICS OF FLUVIAL FACIES IN THE QUANTOU FORMATION OF BUHAIHELONG AREA, THE SONGLIAO BASIN[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2003, 25(1): 33-38. doi: 10.11781/sysydz200301033

SEQUENCE STRATIGRAPHIC CHARACTERISTICS OF FLUVIAL FACIES IN THE QUANTOU FORMATION OF BUHAIHELONG AREA, THE SONGLIAO BASIN

doi: 10.11781/sysydz200301033
  • Received Date: 2002-08-15
  • Rev Recd Date: 2002-12-10
  • Publish Date: 2003-01-25
  • Based on the developing characteristics of fluvial facies and each sequence stratigrahic unit in the Quantou Formation of Buhaihelong area,the Songliao Basin,which was observed in outcrop,core and seismic data,the differences among the formation mechanism of three stream types were analysed from the angles of allogenic cycles and authigenic cycles.According to the controlling factor of allogenic cycles,that is,the changes of the base level,the sequence stratigraphic framework of the study area was divided,and the sequence stratigraphic model of fluvial facies was established.The lowstand system tract (LST) is dominated by lateral accretion and characterized by developing braided streams;the transgressive system tract (TST) is dominated by vertical accretion and characterized by developing reticulated streams;the highstand system tract (HST) is dominated by lateral accretion and characterized by developing lowenergy meandering streams;and the regressive system tract (RST) is dominated by lateral accretion and characterized by developing highenergy meandering streams.

     

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  • [1]
    Shanlley K W,Mecabe P J.Perspectives on the sequence stratigraphy of continental strata[J].AAPG Bulletin,1994,78(4):544-568.
    [2]
    Shanley K W,Mecake P J.Predicting facies architecture through sequence stratigraphy-an example from the Kaiparowits Plateau,Utah[J].Geology,1991,19:742-745.
    [3]
    Wright V P,Marriott S B.The Sequence stratigraphy of fluvial depositional systems-the role of floodplain sediment storage[J].Seol Geol,1993,86:203-210.
    [4]
    张周良.河流相地层的层序地层学与河流类型[J].地质论评,1996,42(增刊):188-193.
    [5]
    杨波,王晓达,王洪艳.大庆长垣以东地区登娄库组-泉一、二段层序地层特征[J].大庆石油地质与开发,1999,18:17-18.
    [6]
    Bates R L,Jackson J A.Glossary of Geology (3rd ed)[M].Alexandvia,Virginia:American Geological Institute,1987.788.
    [7]
    Wheeler H Z.Symposium on cyclic sedimentation Kansas[J].Geological Survey Bulletin,1964,169,623-630.
    [8]
    Jervey M T.Quantitative geological modeling of siliciclastic rock sequences and their seismic expressions[A].Wilgus K,Vail P R,Posamentier H W,et al.Sea Level Change:An Integrated Approaeh[C].SEPM Spec Publ,1988,42:47-69.
    [9]
    Smith D G,Pntnam P E.Anastomosed river deposites,mo-dern and ancient examples in Alberta,Canada[J].Can J Earth Sci,1980,17:1396-1406.
    [10]
    魏魁生,徐怀大,叶淑芬.松辽盆地白垩系高分辨率层序地层格架[J].石油与天然气地质,1997,18:7-14.
    [11]
    刘招君,郭巍,董清水.湖盆层序地层学术语体系及模式——以松辽盆地西部斜坡区为例[J].长春地质学院学报,1997,27(增刊Ⅱ):54-60.
    [12]
    郭少斌.松辽盆地南部西斜坡层序地层与油气聚集规律[J].石油实验地质,1997,19(4):334-336.
    [13]
    杨常青.松辽盆地南部上侏罗-下白垩统层序特征及油气勘探意义[J].石油实验地质,1995,17(4):334-336..
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