Gravity-flow deposits and their exploration prospects in the Oligocene Dongying Formation, northwestern Bozhong Subbasin, Bohai Bay Basin, China
暂无分享,去创建一个
Shang Xu | Changgui Xu | Yuanyin Zhang | Fang Hao | H. Zou | Xintao Zhang | Qi Wang | Baishui Gao
[1] Wei Wei,et al. Architecture of lacustrine mass-transport complexes in the Mesozoic Songliao Basin, China ☆ , 2016 .
[2] Huaqing Liu,et al. Sedimentary characteristics and seismic geomorphology of gravity-flow channels in a rift basin: Oligocene Shahejie Formation, Qinan Slope, Huanghua Depression of Bohai Bay Basin, China , 2016 .
[3] N. Stark,et al. The role of mass-transport deposits and turbidites in shaping modern lacustrine deepwater channels , 2016 .
[4] Suyun Hu,et al. Sequence stratigraphy and importance of syndepositional structural slope-break for architecture of Paleogene syn-rift lacustrine strata, Bohai Bay Basin, E. China , 2016 .
[5] C. Gong,et al. Differential compaction faults and their implications for fluid expulsion in the northern Bozhong Subbasin, Bohai Bay Basin, China , 2015 .
[6] O. Catuneanu,et al. High-resolution sequence stratigraphy of clastic shelves III: Applications to reservoir geology , 2015 .
[7] Dong Li,et al. Origin and anatomy of two different types of mass–transport complexes: A 3D seismic case study from the northern South China Sea margin , 2014 .
[8] Keyu Liu,et al. Three-dimensional facies architecture analysis using sequence stratigraphy and seismic sedimentology: Example from the Paleogene Dongying Formation in the BZ3-1 block of the Bozhong Sag, Bohai Bay Basin, China , 2014 .
[9] D. Hodgson,et al. The role of tectonics and mass-transport complex emplacement on upper slope stratigraphic evolution: A 3D seismic case study from offshore Angola , 2013 .
[10] O. Catuneanu,et al. High-resolution sequence stratigraphy of clastic shelves II: Controls on sequence development , 2013 .
[11] C. Jackson,et al. Origin of an anhydrite sheath encircling a salt diapir and implications for the seismic imaging of steep-sided salt structures, Egersund Basin, Northern North Sea , 2012, Journal of the Geological Society.
[12] Chiyang Liu,et al. The important turning points during evolution of Cenozoic basin offshore the Bohai Sea: Evidence and regional dynamics analysis , 2012, Science China Earth Sciences.
[13] Zhou Xin,et al. Analysis of sedimentary facies of Dongying Formation in the Bozhong Sag , 2012 .
[14] Changsong Lin,et al. Depositional systems and sequence architecture of the Oligocene Dongying Formation, Liaozhong depression, Bohai Bay Basin, northeast China , 2011 .
[15] Fang Hao,et al. Lacustrine source rock deposition in response to co-evolution of environments and organisms controlled by tectonic subsidence and climate, Bohai Bay Basin, China , 2011 .
[16] P. Kukla,et al. 3D seismic geomorphology and sedimentology of the Chalk Group, southern Danish North Sea , 2011, Journal of the Geological Society.
[17] M. Marani,et al. Mass-transport complex evolution in a tectonically active margin (Gioia Basin, Southeastern Tyrrhenian Sea) , 2011 .
[18] X. Janson,et al. Lithofacies Analysis and Stratigraphic Architecture of a Deep-Water Carbonate Debris Apron: Lower Cretaceous (Latest Aptian to Latest Albian) Tamabra Formation, Poza Rica Field Area, Mexico , 2011 .
[19] John A. Howell,et al. 3D seismic imaging of lower delta-plain beach ridges: lower Brent Group, northern North Sea , 2010, Journal of the Geological Society.
[20] Fang Hao,et al. Charging of oil fields surrounding the Shaleitian uplift from multiple source rock intervals and generative kitchens, Bohai Bay basin, China , 2010 .
[21] T. Alves,et al. MTD distribution on a 'passive' continental margin: The Espírito Santo Basin (SE Brazil) during the Palaeogene , 2010 .
[22] Weilin Zhu,et al. Revitalization of a mature oil-bearing basin by a paradigm shift in the exploration concept. A case history of Bohai Bay, Offshore China , 2010 .
[23] J. Qi,et al. Cenozoic structural deformation and dynamic processes of the Bohai Bay basin province, China , 2010 .
[24] T. Cross,et al. Lacustrine turbidite channels and fans in the Mesozoic Songliao Basin, China , 2010 .
[25] G. Shanmugam,et al. Sandy Debrites and Tidalites of Pliocene Reservoir Sands in Upper-Slope Canyon Environments, Offshore Krishna–Godavari Basin (India): Implications , 2009 .
[26] Fang Hao,et al. Mechanisms for oil depletion and enrichment on the Shijiutuo uplift, Bohai Bay Basin, China , 2009 .
[27] W. E. Galloway,et al. Towards the standardization of sequence stratigraphy , 2009 .
[28] L. Moscardelli,et al. New classification system for mass transport complexes in offshore Trinidad , 2008 .
[29] Fang Hao,et al. Petroleum migration and accumulation in the Bozhong sub-basin, Bohai Bay basin, China: Significance of preferential petroleum migration pathways (PPMP) for the formation of large oilfields in lacustrine fault basins , 2007 .
[30] L. Moscardelli,et al. Mass-transport complexes and associated processes in the offshore area of Trinidad and Venezuela , 2006 .
[31] Roger M. Slatt,et al. Introduction to the Petroleum Geology of Deepwater Setting , 2006 .
[32] O. Catuneanu. Principles of sequence stratigraphy , 2006 .
[33] J. Cartwright,et al. 3D seismic analysis of circular evaporite dissolution structures, Eastern Mediterranean , 2005, Journal of the Geological Society.
[34] G. Papatheodorou,et al. A high resolution approach in the recent sedimentation processes at the head of Zakynthos Canyon, western Greece , 2005 .
[35] Yongtai Yang,et al. Hydrocarbon habitat of the offshore Bohai Basin, China , 2004 .
[36] A. Saller,et al. Linked lowstand delta to basin-floor fan deposition, offshore Indonesia: An analog for deep-water reservoir systems , 2004 .
[37] D. Mosher,et al. Importance of Mass Transport Complexes in the Quaternary Development of the Nile Fan, Egypt , 2004 .
[38] J. Wagoner,et al. Basin 4 of the Brazos-Trinity Slope System, Western Gulf of Mexico: The Terminal Portion of a Late Pleistocene Lowstand Systems Tract , 2003 .
[39] T. A. Mcgilvery,et al. The Influence of Local Gradients on Accommodation Space and Linked Depositional Elements Across a Stepped Slope Profile, Offshore Brunei , 2003 .
[40] G. Shanmugam. 50 years of the turbidite paradigm (1950s—1990s): deep-water processes and facies models—a critical perspective , 2000 .
[41] D. T. Lawrence,et al. Exploring Deepwater Technical Challenges in the Gulf of Mexico , 2000 .
[42] M. J. Pearson,et al. Source rock palaeoenvironments and controls on the distribution of dibenzothiophenes in lacustrine crude oils, Bohai Bay Basin, eastern China , 1999 .
[43] B. Hart. Definition of subsurface stratigraphy, structure and rock properties from 3-D seismic data , 1999 .
[44] B. E. Bowen,et al. Systems Tracts, Seismic Facies, and Attribute Analysis Within a Sequence-Stratigraphic Framework—Example from the Offshore Louisiana Gulf Coast , 1993 .
[45] A. Seilacher,et al. Cycles and Events in Stratigraphy , 1991 .
[46] W. Normark,et al. An Integrated Approach to the Study of Turbidite Systems , 1991 .
[47] W. Normark,et al. Comparing Examples of Modern and Ancient Turbidite Systems: Problems and Concepts , 1987 .
[48] J. M. Coleman,et al. Deltaic Influences on Shelfedge Instability Processes , 1983 .
[49] C. Payton,et al. Seismic stratigraphy and global changes of sea level; Part 2, The depositional sequence as a basic unit for stratigraphic analysis , 1977 .
[50] P. Vail,et al. Seismic stratigraphy and global changes of sea level, Part 4 : Global cycles of relative changes of sea level , 1977 .
[51] W. Fisher,et al. Seismic-Stratigraphic Interpretation of Depositional Systems: Examples from Brazilian Rift and Pull-Apart Basins: Section 2. Application of Seismic Reflection Configuration to Stratigraphic Interpretation , 1977 .
[52] J. Espitalie,et al. Méthode rapide de caractérisation des roches mètres, de leur potentiel pétrolier et de leur degré d'évolution , 1977 .