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Dongmei Tian, Tao Jiang*, Baojun Liu, Jun Liu, Zhongtao Zhang, Hui Xu, Cong Cheng. 2019. Early Miocene sedimentary processes and their hydrocarbon implications in the Baiyun sag of Pearl River Mouth Basin, northern South China Sea. Marine and Petroleum Geology, 101: 132-147.
v Jiang, T.*, Gao, H.F., He, J.K., Tian, D.M. 2019. Post-spreading volcanism in the central South China Sea: insights from zircon U-Pb dating on volcaniclastic breccia and seismic features. Marine Geophysical Research, 40: 185-198.
v Ming Su, Chihua Wu, Hui Chen, Dengfeng Li,Tao Jiang, Xinong Xie, Xiaoming Sun, Haijing Jiao, Zhenfeng Wang. 2019. Late Miocene provenance evolution at the head of Central Canyon in the Qiongdongnan Basin, northern South China Sea. Marine and Petroleum Geology,110: 787-796.
v Huber, B.T., Hobbs, R.W., Bogus, K.A., Batenburg, S.J., Brumsack, H.-J., do Monte Guerra, R., Edgar, K.M., Edvardsen, T., Garcia Tejada, M.L., Harry, D.L., Hasegawa, T., Haynes, S.J., Jiang, T., Jones, M.M., Kuroda, J., Lee, E.Y., Li, Y.-X., MacLeod, K.G., Maritati, A., Martinez, M., O’Connor, L.K., Petrizzo, M.R., Quan, T.M., Richter, C., Riquier, L., Tagliaro, G.T., Wainman, C.C., Watkins, D.K., White, L.T., Wolfgring, E., and Xu, Z., 2019. Expedition 369 summary. In Hobbs, R.W., Huber, B.T., Bogus, K.A., and the Expedition 369 Scientists. Australia Cretaceous Climate and Tectonics. Proceedings of the International Ocean Discovery Program, 369: College Station, TX (International Ocean Discovery Program). https://doi.org/10.14379/iodp.proc.369.101.2019.
v K.G. MacLeod , L.T. White , C.C. Wainman , M. Martinez , M.M. Jones , S.J. Batenburg , L. Riquier , S.J. Haynes , D.K. Watkins , K.A. Bogus , H.-J. Brumsack , R. do Monte Guerra , K.M. Edgar, T. Edvardsen , M.L. Garcia Tejada , D.L. Harry , T. Hasegawa , R.W. Hobbs , B.T. Huber , T. Jiang, J. Kuroda , E.Y. Lee , Y.-X. Li, A. Maritati , L.K. O’Connor, M.R. Petrizzo , T.M. Quan, C. Richter , G. Tagliaro , E. Wolfgring, and Z. Xu. Late Cretaceous stratigraphy and paleoceanographic evolution in the Great Australian Bight Basin based on results from IODP Site U1512. Gandwana Research, in press
v Wainman, C.C., Borissova, I., Harry, D.L., Hobbs, R.W., Mantle, D.J., Maritati, A., Lee, E.Y., and the Expedition 369 Scientists. 2019. Evidence for non-marine Jurassic to earliest Cretaceous sediments in the pre-breakup section of the Mentelle Basin, southwestern Australia. Australian Journal of Earth Sciences. https://doi.org/10.1080/08120099.2019.1627581
v Tao Jiang, Xiangjun Liu, Tao Yu, Yipan Hu. 2018. OSL dating of late Holocene coastal sediments and its implication forsea-level eustacy in Hainan Island, Southern China. Quaternary International, 468: 24-32.
v Yingci Feng, Wenhuan Zhan, Hongjun Chen, Tao Jiang, Jinchang Zhang, Andrzej Osadczuk, Yantao Yao, Wei Li, Jie Sun, Lei Guo, Wenkai Huang, Shun Li, Wenyan Zhang. 2018. Seismic characteristics and sedimentary record of the late Pleistocene delta offshore south-western Hainan Island, north-western South China Sea. Interpretation,6(4):31-43.
v Gang Hu, Chao-Lu Yi, Jia-Fu Zhang, Guirong Cao, Baolin Pan, Jinhua Liu, Tao Jiang, Shuangwen Yi, Dehong Li, Jianwei Huang. 2018. Chronology of a lacustrine core in Linggo Co using a combination of OSL, 14C and 210Pb: implication for dating lacustrine sediments in Tibetan Plateau. Boreas, 47(2): 656-670.
v Huber, B.T., Hobbs, R.W., Bogus, K.A., and the Expedition 369 Scientists. 2018. Expedition 369 Preliminary Report: Australia Cretaceous Climate and Tectonics.InternationalOceanDiscoveryProgram. https://doi.org/10.14379/iodp.pr.369.2018.
v Caiwei Fan, Tao Jiang, Kun Liu, Jiancai Tan, Hu Li, Anqi Li. 2018. Genesis of Miocene litho‑stratigraphictrap and hydrocarbon accumulation in theQiongdongnan Basin, northernSouth China Sea. Geoscience Letters, 5(1): 1-13.
v Shu Jiang, Hongliu Zeng, Lorena Moscardelli, Grant Wach, Flávio J. Feijó, Michael Gardosh, Tao Jiang, Hongtao Zhu, Sverre Henriksen, Sudeep Kanungo. 2018. Introduction to special section: Recent advances in geology and geophysics of deepwater reservoirs. Interpretation, 6(4): doi.org/10.1190/INT-2018-0830-SPSEINTRO.1.
v Hu, G., Yi, C.L., Zhang, J.F., Dong, G.C., Liu, J. H., Xu, X. K., Jiang, T. 2017. Extensive glacial advances during the Last Glacial Maximum near the eastern Himalayan systaxis. Quaternary International, 443:1-12.
v Shao, L., Cao., L., Pang, X., Jiang, T., Qiao, P., Zhao, M. 2016. Detrital zircon provenance of the Paleogene syn-rift sediments in the northern South China Sea. Geochemistry, Geophysics, Geosystems, 17:255-269.
v Hu, G., Yi, C.L., Zhang, J.F., Liu, J.H., Jiang, T., Li, S.H. 2016. Late Quaternary glacial advances in the eastern Qilianshan, north-eastern Tibet, as inferred from luminescence dating of fluvioglacial sediments. Journal of Quaternary Science, 31: 587-597.
v Jiang, T., Cao, L.C., Xie, X.N., Wang, Z.F., Li, X.S., Zhang, Y.Z., Zhang, D.J., Sun, H. 2015.Insights from heavy minerals and zircon U-Pb ages into the middle Miocene-Pliocene provenance evolution of the Yinggehai Basin, northwestern South China Sea. Sedimentary Geology, 327: 32-42.
v Cao, L.C.Jiang, T.*,Wang, Z.F, Zhang, Y.Z., Sun, H. 2015.Provenance of Upper Miocene sediments in the Yinggehai and Qiongdongnan basins, northwestern South China Sea: Evidence from REE, heavy minerals and zircon U-Pb ages.Marine Geology, 361: 136-146.
v Jiang, T., Xie, X. N., Chen, H., et al. 2015. Geochemistry of Pore Water and Associated Reactions in the Diapiric Area of YinggehaiBasin, Northern South China Sea. Journal of Earth Science, 26(3): 306-316.
v Hu, G., Yi, C.L., Zhang, J.F., Liu, J.H., Jiang, T. 2015. Luminescence dating of glacial deposits near the eastern Himalayan syntaxis using different grain-size fractions. Quaternary Science Reviews, 124: 124-144.
v Zhang, J.F., Feng, J.L., Hu, G., Wang, J.B., Yang, Y.B., Lin, Y.C., Jiang, T.,Zhou, L.P. 2015. Holocene proglacial loess in the Ranwu valley, southeastern Tibet, and its paleoclimatic implications. Quaternary International, 372: 9-22.
v Li, C F , Li, J B, Ding, WW, Franke, D, Yao, Y J, Shi, H S, Pang, X, Cao, Y, Lin, J, Kulhanek, D K, Williams, T, Bao, R, Briais, A, Brown, E A , Chen, Y F, Clift, P D, Colwell, F S, Dadd, K A, Hernandez-Almeida, I, Huang, XL, Hyun, S, Jiang, T, Koppers, AAP, Li, QY, Liu, CL, Liu, QS, Liu, ZF, Nagai, RH, Peleo-Alampay, A, Su, X, Sun, Z, Tejada, MLG,,Trinh, HS, Yeh, YC, Zhang, CL, Zhang, F, Zhang, GL , Zhao, XX.2015. Seismic stratigraphy of the central South China Sea basin and implications for neotectonics.Journal of Geophysical Research-Solid Earth, 120:1377-1399. doi: 10.1002/2014JB011686
v Li, C.-F., Lin, J., Kulhanek, D.K., and the Expedition 349 Scientists(T. Jiang wrote the part of sedimentary geology). 2015. Proceedings of the International Ocean Discovery Program, 349: South China Sea Tectonics.College Station, TX (InternationalOcean Discovery Program). doi: 10.14379/idop.proc.349.2015.
v Wang, Z. F., Jiang, T.*, Zhang, D.J., Wang, Y.H., Zuo, Q.M., He, W.J. 2015.Evolution of deepwater sedimentary environments and its implication for hydrocarbon exploration in Qiongdongnan Basin, northwestern South China Sea.ActaOceanologicaSinica, 34(4):1-10.
v Jiang, T., Zhang, Y.Z., Tang, S.L., Zhang, D.J., Zuo, Q.M., Lin, W.R., Wang, Y.H., Sun, H., Wang, B. 2014. CFD simulation on the generation of turbidites in deepwater areas: a case study of turbidity current processes in Qiongdongnan Basin, northern South China Sea. Acta Oceanologica Sinica, 33(12):127-137.
v Jiang, T., Tang, S.L., Xie, X.N., Wang, B. 2014.Numerical Simulation on Sedimentary Processes of Turbidity Current and its Applications on Reservoir Prediction in Qiongdongnan Basin, Northern South China Sea. In: Jianwen Yang eds. Basins: Methods of Formation, Ongoing Developments and Emerging Challenges. Nova Science Publishers, Inc. New York. 27-48.
v Expedition 349 Scientists( T. Jiang Wrote the part of sedimentary geology). 2014. South China Sea tectonics: Opening of the South China Sea and its implications for southeast Asian tectonics, climate, and deep mantle processes since the late Mesozoic. International Ocean Discovery Program Preliminary Report, 349: 1-109. doi:10.14379/iodp.pr.349.2014.
v Hu,G., Yi, C.L., Zhang, J.F., Liu, J.H, Jiang, T., Qin, X. 2014.Optically stimulated luminescence dating of a moraine and a terrace in Laohugou valley, western Qilian Shan, northeastern Tibet.Quaternary International, 321: 37-49.
v Su, M., Xie, X.N., Xie, Y.H., Wang, Z.F., Zhang,C., Jiang, T.,He, Y.L. 2014.The segmentations and the significances of the Central Canyon System in the Qiongdongnan Basin, northern South China Sea.Journal of Asian Earth Sciences, 79: 552-563.
v Li,C.F., Xu,X.,Lin,J.,Sun,Z., Zhu,J., Yao,Y.J., Zhao,X.X., Liu,Q.S., Kulhanek,D.K., Wang,J., Song,T.R., Zhao,J.F., Qiu,N., Guan,Y.X., Zhou,Z.Y., Williams,T., Bao,R., Briais,A., Brown,E.A., Chen,Y.F., Clift, P.D., Colwell,F.S., Dadd,K.A., Ding,W.W., Almeida,I.H., Huang,X.L., Hyun,S., Jiang, T.,Koppers,A.A.P., Li,Q.Y., Liu,C.L., Liu,Z.F, Nagai,R.H., Alampay,A.P., Su,X., Tejada,M.L.G., Trinh,H.S., Yeh,Y.C., Zhang,C.L., Zhang, F., Zhang, G.L. 2014.Ages and magnetic structures of the South China Sea constrained by deep tow magnetic surveys and IODP Expedition 349.Gepchemistry, Geophysics, Geosystems, 15: 4958-4983.
v Su, M., Zhang, C., Xie, X.N., Wang, Z.F.,Jiang, T., He, Y.L., Zhang, C.M. 2014.Controlling factors on the submarine canyon system: a case study of the Central Canyon System in the Qiongdongnan Basin, northern South China Sea.Science China: Earth Sciences, 57(10): 2457-2468.
v Jiang, T.,Xie, X.N., Wang, Z.F., Li, X.S.., Zhang, Y.Z., Sun, H. 2013. Seismic features and origin of sediment waves in the Qiongdongnan Basin, northern South China Sea.Marine Geophysical Research, 34(3): 281-294.
v Li, X.Q., Fairweather, L., Wu, S.G., Ren, J.Y., Zhang, H.J., Quan,X.Y., Jiang, T., Zhang, C., Su, M., He, Y.L., Wang, D.W. 2013.Morphology, sedimentary features and evolution of a large palaeo submarine canyon in Qiongdongnan basin, Northern South China Sea.Journal of Asian Earth Sciences, 62: 685-696.
v Yao, Y.J., Yang, C.P.,Li, X.J.,,Ren, J.Y., Jiang, T., Tong, D.J., Han, B., Yin,Z.X., Xu, Q.Y. 2013. The seismic reflection characteristics and tectonic significance of the tectonic revolutionary surface of mid-Miocene (T-3 seismic interface) in the southern South China Sea. Chinese Journal of Geophysics-Chinese Edition, 56(4): 1274-1286.
v Pan, B.L, Yi, C.L, Jiang, T., Dong, G.C, Hu, G., Jin, Y. 2012. Holocene lake-level changes of Linggo Co in central Tibet. Quaternary Geochronology, 10: 117-122.
v Su, M., Xie, X.N., Li, J.L.,Jiang, T., et al. 2011.Gravity flow on slope and abyssal systems in the Qiongdongnan basin, Northern South China Sea.ActaGeologicaSinica (English Edition): 85(1): 243-253.
v Jiang, T., Zhang, Y. Z., Xie, X. N., et al. 2010.Characteristics and Origin of Sediment Waves in the Qiongdongnan Basin, northern South China Sea.Geo-Temas, 11: 193-194.
v Zhang, C., Li, J.L., Xie, X.N., Lu, Y.C., and Jiang, T. 2010. Depositional features and evolution patterns of the continental slope system in the Qiongdongnan Basin, northern South China Sea.Geo-Temas, 11: 191-192.
v E. Screaton, G. Kimura, D. Curewitz, G. Moore, F., F. Chester, O. Fabbri, C. Fergusson, F. Girault, D. Goldsby, R. Harris, F. Inagaki, T. Jiang, Y. Kitamura, M. Knuth, C. F. Li, L. C. Liljedahl, L. Louis, K. Milliken, U. Nicholson, N. Riedinger, A. Sakaguchi, E. Solomon, M. Strasser, X. Su, A. Tsutsumi, A. Yamaguchi, K. Ujiee and X. Zhao. 2009. Interactions between deformation and fluids in the frontal thrust region of the NanTroSEIZE transect offshore the Kii Peninsula, Japan: Results from IODP Expedition 316 Sites C0006 and C0007. Geochemistry Geophysics Geosystems, 10: 1-14.
v Kinoshita, M., H. Tobin, J. Ashi, G. Kimura, S. Lallement, E. J. Screaton, D. Curewitz, H. Masago, K. T. Moe, and the Expedition314/315/316Scientists(T. Jiang wrote the part of core-log-seismic integration of Exp.316). 2009. Proceedingsof the Integrated Drilling Program Expeditions, vol.314/315/ 316, doi:10.2204/iodp.proc.314315316.2009.OceanDrill.Program, College Station, Tex.
v Tang, S.L., Ura, T., Nakatani, T., Thornton, B., Jiang, T. 2009. Estimation of the hydrodynamic coefficients of the complex-shaped autonomous underwater vehicle TUNA-SAND.Journal of Marine Science and Techbology, 14: 373-386.
v Xie, X.N., Müller, R.D, Ren, J.Y., Jiang, T., Zhang, C. 2008.Stratigraphic architecture and evolution of the continental slope system in offshore Hainan, northern South China Sea.Marine Geology, 247: 129-144.
v Kimura, G., Screaton, E.J., Curewitz, D., and the Expedition 316 Scientists(T. Jiang wrote the part of Core-log-seismic integration). 2008. NanTroSEIZE Stage 1A: NanTroSEIZE shallow megasply and frontal thrusts.IODP Preliminary Report, 316.doi: 10.2204.iodp.pr.316.2008.
v Jiang, T., Xie, X.N., Tang, S.L., Zhang, C., Du, X.B. 2007. Numerical simulation on the evolution of sediment waves caused by turbidity currents.Chinese Science Bulletin, 52 (17): 2429-2434
v Jiang, T., Xie, X.N., Liu, X.F., Du, X.B. 2007.Diagenetic effects of high thermal overpressure in the Yinggehai basin, offshore South China Sea. In: Bullen& Wang (eds). Water-Rock Interaction.Taylor& Francis Group, London. 213-216
v Zhang, C., Xie, X.N., Jiang, T., Liu, X.F. 2006. Hydrocarbon migration and accumulation along a long-term growth fault: Example from the BZ25-1 oilfield of Bohai basin, eastern China. Journal of Geochemical Exploration, 89: 460-464
v Lu, Y.C., Xie, X.N., Jiang, T., Chen, P., Zhou, Y.Q. 2006. Sea level changes revealed by cosmic dusts:A pilot study of the Upper Permian reefs in Guizhou, China. Journal of Geochemical Exploration, 89: 431-435.
v 程聪,姜涛*,匡增桂,等.2019. 天然气水合物系统特征及其对我国水合物勘查的启示. 地质科技情报,38(4): 30-40.
v 姜涛. 2018. 海底沉积物波的成因之争. 《一万个科学难题(海洋学卷)》. 北京:科学出版社. 543-545.
v 田冬梅, 姜涛*, 张道军, 左倩媚, 孙辉, 何小胡. 2017. 海底水道特征及其成因机制:以莺歌海盆地乐东区莺歌海组一段为例. 地球科学, 42(1): 130-141.
v 解习农, 林畅松, 李忠, 任建业, 姜涛, 姜在兴, 雷超. 2017. 中国盆地动力学研究现状及展望. 沉积学报, 35(5): 877-88.
v 孙辉, 姜涛*, 李春峰, 徐乐. 2014. 日本南海海槽斜坡盆地重力流沉积特征及其对俯冲构造的响应. 地球科学, 39(10): 1383-1394.doi: 1.3799/dqkx.2014.121.
v 余涛, 姜涛. 2014. 光释光测年技术在海洋沉积物研究中的应用现状与展望. 地质科技情报, 33(2): 38-44.
v 苏明, 姜涛, 张翠梅, 张成, 何云龙, 王振峰. 2014. 琼东南盆地中央峡谷体系东段形态-充填特征及其地质意义. 吉林大学学报(地球科学版), 44(6): 1805-1815
v 曹立成, 姜涛*, 张道军, 孙辉. 2012. 琼东南盆地新近系重矿物分布特征及其物源指示意义.中南大学学报, 44(5): 1971-1981
v 张娜, 姜涛*, 张道军. 2012. 琼东南盆地海底地形地貌特征及其对深水沉积的控制.海洋地质与第四纪地质, 32(5): 27-33
v 解习农,姜涛,王华,陆永潮. 2006. 莺歌海盆地底辟带热流体突破的地层水化学证据. 岩石学报, 22(8): 1875-1880
v 姜涛, 解习农. 2005. 莺歌海盆地高温超压环境下储层物性影响因素分析. 地球科学, 30(2): 215-220
v 姜涛, 解习农, 汤苏林. 2005. 浊流形成条件的水动力学模拟及其在储层预测方面的作用. 地质科技情报, 24(2): 1-6
v 姜涛, 解习农, 王华, 等. 2004. 琼东南盆地陆架陆坡体系沉积构成及其演化特征. 见: 李家彪, 高抒 主编, “中国边缘海形成演化系列研究”丛书第三卷. 中国边缘海盆演化与资源效应. 北京: 海洋出版社. 132-138
v 姜涛, 任建业. 2004. 基于盆地模拟技术的潮汕坳陷油气勘探前景预测. 海洋地质动态, 20(5): 20-27.
v 姜涛,解习农. 2003. 细粒浊积体的油气地质意义. 地质科技情报, 22(2): 51-55.
v 姜涛, 解习农. 2003. 细粒浊积体研究现状与展望. 地球学报, 24(3): 289-292.
v 姜涛, 解习农, 任建业, 等. 2001. 莺歌海盆地浊积体的形成背景及沉积特征. 地球科学, 26(Suppl.): 27-31.