[1]
|
Deptuck M E, Sylvester Z, Pirmez C, et al. Migration-aggradation history and 3-D seismic geomorphology of submarine channels in the Pleistocene Benin-major canyon, western Niger Delta slope[J]. Marine and Petroleum Geology, 2007, 24(6/7/8/9): 406-433. |
[2]
|
刘军,庞雄,颜承志,等. 南海北部陆坡白云深水区深水沉积结构要素[J]. 吉林大学学报(地球科学版),2011,41(4):992-998.
Liu Jun, Pang Xiong, Yan Chengzhi, et al. Deepwater depositional elements in Baiyun deepwater area of the northern continental slope, South China Sea[J]. Journal of Jilin University (Earth Science Edition), 2011, 41(4): 992-998. |
[3]
|
Ashiru O R, Qin Y, Wu S. Structural controls on submarine channel morphology, evolution, and architecture, offshore western Niger Delta[J]. Marine and Petroleum Geology, 2020, 118: 104413. |
[4]
|
Posamentier H W. Depositional elements associated with a basin floor channel-levee system: Case study from the gulf of Mexico[J]. Marine and Petroleum Geology, 2003, 20(6/7/8): 677-690. |
[5]
|
Dmitrieva E, Jackson C A L, Huuse M, et al. Paleocene deep-water depositional systems in the North Sea Basin: A 3D seismic and well data case study, offshore Norway[J]. Petroleum Geoscience, 2012, 18(1): 97-114. |
[6]
|
陈昱瑶,周江羽,钟佳,等. 南海西北缘深水水道体系的地震响应及其演化[J]. 海洋地质与第四纪地质,2014,34(2):69-78.
Chen Yuyao, Zhou Jiangyu, Zhong Jia, et al. Seismic characteristics of deepwater channel system in northwestern margin of South China Sea and its evolution[J]. Marine Geology & Quaternary Geology, 2014, 34(2): 69-78. |
[7]
|
陈宇航,姚根顺,吕福亮,等. 东非鲁伍马盆地渐新统深水水道—朵体沉积特征及控制因素[J]. 石油学报,2017,38(9):1047-1058.
Chen Yuhang, Yao Genshun, Fuliang Lü, et al. Sedimentary characteristics and controlling factors of Oligocene deep-water channel-lobe in Rovuma Basin of the East Africa[J]. Acta Petrolei Sinica, 2017, 38(8): 1047-1058. |
[8]
|
康洪全,孟金落,程涛,等. 巴西坎波斯盆地深水沉积体系特征[J]. 石油勘探与开发,2018,45(1):93-104.
Kang Hongquan, Meng Jinluo, Cheng Tao, et al. Characteristics of deep water depositional system in Campos Basin, Brazil[J]. Petroleum Exploration and Development, 2018, 45(1): 93-104. |
[9]
|
姚悦,周江羽,雷振宇,等. 西沙海槽盆地强限制性中央峡谷水道地震相与内部结构的分段特征[J]. 沉积学报,2018,36(4):787-795.
Yao Yue, Zhou Jiangyu, Lei Zhenyu, et al. High restriction seismic facies and inner structural segmentation features of the central canyon channel systems in Xisha trough basin[J]. Acta Sedimentologica Sinica, 2018, 36(4): 787-795. |
[10]
|
Wu W, Li Q, Yu J, et al. The Central Canyon depositional patterns and filling process in east of Lingshui Depression, Qiongdongnan Basin, northern South China Sea[J]. Geological Journal, 2018, 53(6): 3064-3081. |
[11]
|
李全,吴伟,康洪全,等. 西非下刚果盆地深水水道沉积特征及控制因素[J]. 石油与天然气地质,2019,40(4):917-929.
Li Quan, Wu Wei, Kang Hongquan, et al. Characteristics and controlling factors of deep-water channel sedimentation in Lower Congo Basin, West Africa[J]. Oil & Gas Geology, 2019, 40(4): 917-929. |
[12]
|
吴伟,刘俊成,刘琮滢,等. 珠江口盆地白云凹陷珠江组陆架边缘三角洲沉积与生物遗迹特征[J]. 中国石油大学学报(自然科学版),2020,44(4):152-162.
Wu Wei, Liu Juncheng, Liu Cong-ying, et al. Sedimentary and ichonology characteristics of continental shelf-edge delta of Zhujiang Formation in Baiyun Sag, Pearl River Mouth Basin[J]. Journal of China University of Petroleum (Edition of Natural Science), 2020, 44(4): 152-162. |
[13]
|
Deptuck M E, Steffens G S, Barton M, et al. Architecture and evolution of upper fan channel-belts on the Niger Delta slope and in the Arabian Sea[J]. Marine and Petroleum Geology, 2003, 20(6/7/8): 649-676. |
[14]
|
Mayall M, Jones E, Casey M. Turbidite channel reservoirs—Key elements in facies prediction and effective development[J]. Marine and Petroleum Geology, 2006, 23(8): 821-841. |
[15]
|
张文彪,段太忠,刘志强,等. 深水浊积水道沉积构型模式及沉积演化:以西非M油田为例[J]. 地球科学,2017,42(2):273-285.
Zhang Wenbiao, Duan Taizhong, Liu Zhiqiang, et al. Architecture model and sedimentary evolution of deepwater turbidity channel: A case study of M oilfield in West Africa[J]. Earth Science, 2017, 42(2): 273-285. |
[16]
|
Wood L J, Mize-Spansky K L. Quantitative seismic geomorphology of a Quaternary leveed-channel system, offshore eastern Trinidad and Tobago, northeastern South America[J]. AAPG Bulletin, 2009, 93(1): 101-125. |
[17]
|
赵晓明,吴胜和,刘丽. 尼日尔三角洲盆地Akpo油田新近系深水浊积水道储层构型表征[J]. 石油学报,2012,33(6):1049-1058.
Zhao Xiaoming, Wu Shenghe, Liu Li. Characterization of reservoir architectures for Neogene deepwater turbidity channels of Akpo oilfield, Niger Delta Basin[J]. Acta Petrolei Sinica, 2012, 33(6): 1049-1058. |
[18]
|
赵晓明,刘丽,谭程鹏,等. 海底水道体系沉积构型样式及控制因素:以尼日尔三角洲盆地陆坡区为例[J]. 古地理学报,2018,20(5):825-840.
Zhao Xiaoming, Liu Li, Tan Chengpeng, et al. Styles of submarine-channel architecture and its controlling factors: A case study from the Niger Delta Basin slope[J]. Journal of Palaeogeography, 2018, 20(5): 825-840. |
[19]
|
Alpak F O, Barton M D, Naruk S J. The impact of fine-scale turbidite channel architecture on deep-water reservoir performance[J]. AAPG Bulletin, 2013, 97(2): 251-284. |
[20]
|
Peakall J, McCaffrey B, Kneller B. A process model for the evolution, morphology, and architecture of sinuous submarine channels[J]. Journal of Sedimentary Research, 2000, 70(3): 434-448. |
[21]
|
Gee M J R, Gawthorpe R L, Bakke K, et al. Seismic geomorphology and evolution of submarine channels from the Angolan continental margin[J]. Journal of Sedimentary Research, 2007, 77(5): 433-446. |
[22]
|
Labourdette R. Integrated three-dimensional modeling approach of stacked turbidite channels[J]. AAPG Bulletin, 2007, 91(11): 1603-1618. |
[23]
|
Harishidayat D, Omosanya K O, Johansen S E. 3D seismic interpretation of the depositional morphology of the Middle to Late Triassic fluvial system in eastern Hammerfest Basin, Barents Sea[J]. Marine and Petroleum Geology, 2015, 68: 470-479. |
[24]
|
Li Quan, Wu Wei, Liang Jianshe, et al. Deep-water channels in the Lower Congo Basin: Evolution of the geomorphology and depositional environment during the Miocene[J]. Marine and Petroleum Geology, 2020, 115: 104260. |
[25]
|
袁圣强,曹锋,吴时国,等. 南海北部陆坡深水曲流水道的识别及成因[J]. 沉积学报,2010,28(1):68-75.
Yuan Sheng- qiang, Cao Feng, Wu Shiguo, et al. Architecture and origin of deepwater sinuous channel on the slope of northern South China Sea[J]. Acta Sedimentologica Sinica, 2010, 28(1): 68-75. |
[26]
|
Gong C L, Wang Y M, Zhu W L, et al. Upper Miocene to Quaternary unidirectionally migrating deep-water channels in the Pearl River Mouth Basin, northern South China Sea[J]. AAPG Bulletin, 2013, 97(2): 285-308. |
[27]
|
Fonnesu M, Palermo D, Galbiati M, et al. A new world-class deep-water play-type, deposited by the syndepositional interaction of turbidity flows and bottom currents: The giant Eocene Coral Field in northern Mozambique[J]. Marine and Petroleum Geology, 2020, 111: 179-201. |
[28]
|
Bull S, Browne G H, Arnot M J, et al. Influence of mass transport deposit (MTD) surface topography on deep-water deposition: An example from a predominantly fine-grained continental margin, New Zealand[M]//Georgiopoulou A, Amy L A, Benetti S, et al. Subaqueous mass movements and their consequences: Advances in process understanding, monitoring and hazard assessments. London: Geological Society, 2020: SP 500-2019-192. |
[29]
|
King P R, Thrasher G P. Cretaceous-Cenozoic geology and petroleum systems of the Taranaki Basin, New Zealand[M]. Lower Hutt: Institute of Geological & Nuclear Sciences, 1996: X-191. |
[30]
|
Uruski C I. New Zealand’s deepwater frontier[J]. Marine and Petroleum Geology, 2010, 27(9): 2005-2026. |
[31]
|
Rad F. PEP 38451 romney-1 well completion report[R]. PR4951, New Zealand: Company for NZP&M, 2015. |
[32]
|
Higgs K E, Arnot M J, Browne G H, et al. Reservoir potential of Late Cretaceous terrestrial to shallow marine sandstones, Taranaki Basin, New Zealand[J]. Marine and Petroleum Geology, 2010, 27(9): 1849-1871. |
[33]
|
King P R, Scott G H, Robinson P H. Description, correlation and depositional history of Miocene sediments outcropping along north Taranaki coast[M]. Lower Hutt: Institute of Geological & Nuclear Sciences Limited, 1993: 199. |
[34]
|
Shell BP Todd Oil Services Ltd. Well resume Te ranga-1, Ppl 38107 Taranaki New Plymouth. Ministry of Economic Development unpublished petroleum report[R]. Wellington: Ministry of Economic Development, 1986 : 809, 818. |
[35]
|
Wizevich M C, Thrasher G P, Bussell M R, et al. Evidence for marine deposition in the Late Cretaceous Pakawau group, northwest Nelson[J]. New Zealand Journal of Geology and Geophysics, 1992, 35(3): 363-369. |
[36]
|
Sykes R, Zink K G, Funnell R H. Chemometric analysis of oil families and oil-source rock correlations in New Zealand Basins: Implications for source kitchens and migration pathways[C]//Proceedings of 2010 New Zealand petroleum conference: Conference proceedings: Transformation. Wellington: Crown Minerals, Ministry of Economic Development, 2010: 20. |
[37]
|
Hayward B W, Wood R A. Computer-generated geohistory plots for taranaki drillhole sequences[R]. New Zealand Geological Survey Report PAL 147, Lower Hutt: New Zealand Geological Survey, 1989: 73. |
[38]
|
King P R, Thrasher G P. Post-Eocene development of the Taranaki Basin, New Zealand: Convergent overprint of a passive margin[M]//Watkins J S, Feng Z Q, McMillen K J. Geology and geophysics of continental margins. Tulsa: American Association of Petroleum Geologists, 1992: 93-118. |
[39]
|
Nwoko J, Kane I, Huuse M. Mass transport deposit (MTD) relief as a control on post-MTD sedimentation: Insights from the Taranaki Basin, offshore New Zealand[J]. Marine and Petroleum Geology, 2020, 120: 104489. |
[40]
|
谢清惠,邓宏文. 地层切片技术在中新统刚果扇中的应用[J]. 大庆石油地质与开发,2013,32(6):135-140.
Xie Qinghui, Deng Hongwen. Application of strata slicing technique in Miocene Congo Fan[J]. Petroleum Geology & Oilfield Development in Daqing, 2013, 32(6): 135-140. |
[41]
|
McHargue T, Pyrcz M J, Sullivan M D, et al. Architecture of turbidite channel systems on the continental slope: Patterns and predictions[J]. Marine and Petroleum Geology, 2011, 28(3): 728-743. |
[42]
|
李华,何幼斌,王振奇. 深水高弯度水道—堤岸沉积体系形态及特征[J]. 古地理学报,2011,13(2):139-149.
Li Hua, He Youbin, Wang Zhenqi. Morphology and characteristics of deep water high sinuous channel-levee system[J]. Journal of Palaeogeography, 2011, 13(2): 139-149. |