Development of a Middle–Late Holocene subaqueous clinoform in the northern Jiangsu coastal zone, western South Yellow Sea
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Xiuli Feng | Jian Liu | Y. Saito | Jiandong Qiu | Hong Wang | Lilei Chen | Xin Zhang | Yuhui An
[1] J Zhang,et al. Avulsion of the Yellow River into the South Yellow Sea during the early to middle Holocene: Evidence from Clay Provenance of the Yangtze Paleovalley , 2023, Palaeogeography, Palaeoclimatology, Palaeoecology.
[2] W. Rao,et al. Identifying the clay-size sediment provenance of the radial sand ridges in the southwestern Yellow Sea using geochemical and Sr Nd isotopic tracers , 2023, Marine Geology.
[3] Xiaomei Xu,et al. Climate-driven provenance variation and sedimentary system evolution at the Changjiang distal mud since the mid-Holocene , 2022, Marine Geology.
[4] Li Wu,et al. Early–Middle Holocene marine–terrestrial changes in the southeastern Lixiahe Plain, East China: Land-forming mechanisms, regional significance, and implications for Neolithic cultural origins , 2021 .
[5] R. Nicholls,et al. Twenty-first-century projections of shoreline change along inlet-interrupted coastlines , 2021, Scientific Reports.
[6] Yifei Zhao,et al. Multi-proxy reconstruction of the Holocene transition from a transgressive to regressive coastal evolution in the northern Jiangsu Plain, East China , 2021 .
[7] Zhongyuan Chen,et al. Inter-comparison of optically stimulated luminescence (OSL) ages between different fractions of Holocene deposits from the Yangtze delta and its environmental implications , 2021 .
[8] E. Bard,et al. Marine20—The Marine Radiocarbon Age Calibration Curve (0–55,000 cal BP) , 2020, Radiocarbon.
[9] Y. Saito,et al. Climate and human battle for dominance over the Yellow River's sediment discharge: From the Mid-Holocene to the Anthropocene , 2020, Marine Geology.
[10] Y. Saito,et al. Formation of the Yangtze Shoal in response to the post-glacial transgression of the paleo-Yangtze (Changjiang) estuary, China , 2020, Marine Geology.
[11] Jiang Dong,et al. Mineralogical and isotopic evidence for the sediment provenance of the western South Yellow Sea since MIS 3 and implications for paleoenvironmental evolution , 2019, Marine Geology.
[12] Lei He,et al. New evidence on the spatial-temporal distribution of superlobes in the Yellow River Delta Complex , 2019, Quaternary Science Reviews.
[13] S. Patruno,et al. Clinoforms and clinoform systems: Review and dynamic classification scheme for shorelines, subaqueous deltas, shelf edges and continental margins , 2018, Earth-Science Reviews.
[14] Xuefa Shi,et al. Formation processes and evolution of Holocene sediments in the Yangtze offshore area: A review and new interpretation on the response to sea-level rise and deltaic progradation , 2018, Quaternary International.
[15] J. Milliman,et al. Human impacts on sediment in the Yangtze River: A review and new perspectives , 2018 .
[16] F. Lobo,et al. A non-deltaic clinoform wedge fed by multiple sources off São Sebastião Island, southeastern Brazilian Shelf , 2018, Geo-Marine Letters.
[17] Xuefa Shi,et al. History of Asian eolian input to the Sea of Japan since 15 Ma: Links to Tibetan uplift or global cooling? , 2017 .
[18] K. Krauss,et al. Historical changes in organic matter input to the muddy sediments along the Zhejiang-Fujian Coast, China over the past 160 years , 2017 .
[19] Lei He,et al. Coastal circulation in the southwestern Yellow Sea in the summers of 2008 and 2009 , 2017 .
[20] J. Ji,et al. Using Nd-Sr isotopes and rare earth elements to study sediment provenance of the modern radial sand ridges in the southwestern Yellow Sea , 2017 .
[21] X. Qin,et al. Geochemistry of sediments from the Huaibei Plain (east China): Implications for provenance, weathering, and invasion of the Yellow River into the Huaihe River , 2016 .
[22] Yongping Chen,et al. Suspended sediment fluxes in the radial sand ridge field of South Yellow Sea , 2016 .
[23] Zhang Changkuan,et al. Maximum tidal range analysis of radial sand ridges in the southern Yellow Sea , 2015 .
[24] Pengke Huang,et al. Mineral distributions in surface sediments of the western South Yellow Sea: implications for sediment provenance and transportation , 2015, Chinese Journal of Oceanology and Limnology.
[25] K. Lambeck,et al. Sea level and global ice volumes from the Last Glacial Maximum to the Holocene , 2014, Proceedings of the National Academy of Sciences.
[26] Y. Saito,et al. Sedimentary evolution of the Holocene subaqueous clinoform off the southern Shandong Peninsula in the Western South Yellow Sea , 2014, Journal of Ocean University of China.
[27] Jing Zhang,et al. Characteristics of the Changjiang plume and its extension along the Jiangsu Coast , 2014 .
[28] J. Okuno,et al. Initiation of the Changjiang (Yangtze) delta and its response to the mid-Holocene sea level change , 2013 .
[29] J. Liu,et al. Subaqueous deltaic formation of the Old Yellow River (AD 1128-1855) on the western South Yellow Sea , 2013 .
[30] Yanyan Kang,et al. Coastal evolution of Yancheng, northern Jiangsu, China since the mid-Holocene based on the Landsat MSS imagery , 2013, Journal of Geographical Sciences.
[31] Y. Saito,et al. Tidal Influence on the Transport of Suspended Matter in the Southwestern Yellow Sea at 6 ka , 2013 .
[32] Xuefa Shi,et al. Sr–Nd isotopic constraints on terrigenous sediment provenances and Kuroshio Current variability in the Okinawa Trough during the late Quaternary , 2012 .
[33] H. Feng,et al. Magnetic and geochemical evidence of Yellow and Yangtze River influence on tidal flat deposits in northern Jiangsu Plain, China , 2012 .
[34] Qinyu Liu,et al. Recent progress in China in the study of ocean’s role in climate variation , 2012, Acta Oceanologica Sinica.
[35] Y. Saito,et al. Delta development and channel incision during marine isotope stages 3 and 2 in the western South Yellow Sea , 2010 .
[36] J. Walsh,et al. Understanding fine-grained river-sediment dispersal on continental margins , 2009 .
[37] Xuefa Shi,et al. Nd and Sr isotopic compositions of sediments from the Yellow and Yangtze Rivers: Implications for partitioning tectonic terranes and crust weathering of the Central and Southeast China , 2008 .
[38] Zuosheng Yang,et al. A unique Yellow River-derived distal subaqueous delta in the Yellow Sea , 2007 .
[39] J. Milliman,et al. Flux and fate of Yangtze River sediment delivered to the East China Sea , 2007 .
[40] Y. Saito,et al. Sedimentary evolution of the Holocene subaqueous clinoform off the Shandong Peninsula in the Yellow Sea , 2007 .
[41] Yeli Yuan,et al. Three‐dimensional structure of the summertime circulation in the Yellow Sea from a wave‐tide‐circulation coupled model , 2006 .
[42] A. Brad Murray,et al. Fluvial and marine controls on combined subaerial and subaqueous delta progradation: Morphodynamic modeling of compound‐clinoform development , 2005 .
[43] Y. Saito,et al. Late Quaternary evolution of the Yellow/East China Sea tidal regime and its impacts on sediments dispersal and seafloor morphology , 2003 .
[44] Antonio Cattaneo,et al. The late-Holocene Gargano subaqueous delta, Adriatic shelf: Sediment pathways and supply fluctuations , 2003 .
[45] Congxian Li,et al. Discrimination of geochemical compositions between the Changjiang and the Huanghe sediments and its application for the identification of sediment source in the Jiangsu coastal plain, China , 2002 .
[46] Y. Saito,et al. The Huanghe (Yellow River) and Changjiang (Yangtze River) deltas: a review on their characteristics, evolution and sediment discharge during the Holocene , 2001 .
[47] B. Deng,et al. Holocene regression and the tidal radial sand ridge system formation in the Jiangsu coastal zone, east China , 2001 .
[48] S. Kuehl,et al. The significance of large sediment supply, active tectonism, and eustasy on margin sequence development: Late Quaternary stratigraphy and evolution of the Ganges–Brahmaputra delta , 2000 .
[49] G. Laslett,et al. OPTICAL DATING OF SINGLE AND MULTIPLE GRAINS OF QUARTZ FROM JINMIUM ROCK SHELTER, NORTHERN AUSTRALIA: PART I, EXPERIMENTAL DESIGN AND STATISTICAL MODELS* , 1999 .
[50] N. Driscoll,et al. Three-dimensional quantitative modeling of clinoform development , 1999 .
[51] Xiaodong Zhu,et al. Evolution of radiative sand ridge field of the South Yellow Sea and its sedimentary characteristics , 1999 .
[52] Ren Mei-e,et al. Anthropogenic influences on changes in the sediment load of the Yellow River, China, during the Holocene , 1994 .
[53] C. Xue. Historical changes in the Yellow River delta, China , 1993 .
[54] R. H. Meade,et al. World-Wide Delivery of River Sediment to the Oceans , 1983, The Journal of Geology.
[55] G. Wasserburg,et al. Sm-Nd isotopic evolution of chondrites , 1980 .
[56] Huiand Wu,et al. Winter Counter‐Wind Transport in the Inner Southwestern Yellow Sea , 2018 .
[57] W. Balsam,et al. Geochemical constraints on the provenance of surface sediments of radial sand ridges off the Jiangsu coastal zone, East China , 2015 .
[58] X. Zou,et al. The sand ridge field of the South Yellow Sea: Origin by river–sea interaction , 2012 .
[59] Zhang Zhao-feng. Variations in 143Nd/144Nd and 87Sr/86Sr of Lingtai profile over the past 7 Ma , 2005 .
[60] Xue Chun-ting. The Huanghe River course and delta from end of Late Pleistocene to the 7th century BC , 2004 .
[61] M. Allison,et al. The geological record preserved by Amazon shelf sedimentation , 1996 .
[62] P. Vail,et al. Sequence Stratigraphic Concepts Applied to Paleogene Outcrops, Gulf and Atlantic Basins , 1988 .
[63] Li Ping,et al. The characteristics and distribution of holocene sand bodies in the Changjiang delta area , 1983 .