[1] |
Liu Z X, Xia D X, Berne S, et al. Tidal deposition systems of China's continental shelf, with special reference to the eastern Bohai Sea[J]. Marine Geology, 1998, 145(3/4): 225-253. |
[2] |
Berne S, Lericolais G, Marsset T, et al. Erosional offshore sand ridges and lowstand shorefaces: Examples from tide- and wave-dominated environments of France[J]. Journal of Sedimentary Research, 1998, 68(4): 540-555. |
[3] |
Reynaud J Y, Tessier B, Proust J N, et al. Eustatic and hydrodynamic controls on the architecture of a deep shelf sand bank (Celtic Sea)[J]. Sedimentology, 1999, 46(4): 703-721. |
[4] |
Wang Y, Zhang Y Z, Zou X Q, et al. The sand ridge field of the South Yellow Sea: Origin by river-sea interaction[J]. Marine Geology, 2012, 291-294: 132-146. |
[5] |
Off T. Rhythmic linear sand bodies caused by tidal currents[J]. AAPG Bulletin, 1963, 47(2): 324-341. |
[6] |
Taylor M, Stone G W. Beach-ridges: A review[J]. Journal of Coastal Research, 1996, 12(3): 612-621. |
[7] |
Weltje G J, von Eynatten H. Quantitative provenance analysis of sediments: Review and outlook[J]. Sedimentary Geology, 2004, 171(1/2/3/4): 1-11. |
[8] |
Wang Y, Zhu D K, You K Y, et al. Evolution of radiative sand ridge field of the south Yellow Sea and its sedimentary characteristics[J]. Science China (Seri. D): Earth Sciences, 1999, 42(1): 97-112. |
[9] |
Yang S Y, Li C X, Jung H S, 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[J]. Marine Geology, 2002, 186(3/4): 229-241. |
[10] |
Ren M E, Shi Y L. Sediment discharge of the Yellow river (China) and its effect on the sedimentation of the Bohai and the Yellow Sea[J]. Continental Shelf Research, 1986, 6(6): 785-810. |
[11] |
Yuan D L, Zhu J R, Li C Y, et al. Cross-shelf circulation in the Yellow and East China Seas indicated by MODIS satellite observations[J]. Journal of Marine Systems, 2008, 70(1/2): 134-149. |
[12] |
王昆山,姜晓黎,叶青,等. 南黄海潮流沙脊区表层沉积物重矿物分布及来源[J]. 海洋地质与第四纪地质,2013,33(5):1-11.
Wang Kunshan, Jiang Xiaoli, Ye Qing, et al. Distribution and source of heavy minerals in the surface sediment of the tidal sand ridges area in south Yellow Sea[J]. Marine Geology & Quaternary Geology, 2013, 33(5): 1-11. |
[13] |
Wu H, Shen J, Zhu J R, et al. Characteristics of the Changjiang plume and its extension along the Jiangsu coast[J]. Continental Shelf Research, 2014, 76: 108-123. |
[14] |
Rao W B, Mao C P, Wang Y G, et al. Geochemical constraints on the provenance of surface sediments of radial sand ridges off the Jiangsu coastal zone, East China[J]. Marine Geology, 2015, 359: 35-49. |
[15] |
Su J B, Rao W B, Wang Y G, et al. Detrital zircon geochronology of the radial sand ridge system of Jiangsu coast, East China: Implication for sediment provenance[J]. Journal of Earth Science, 2018, 29(1): 144-154. |
[16] |
王嵘,张永战,夏非,等. 南黄海辐射沙脊群海域底质粒度特征及其输运趋势[J]. 海洋地质与第四纪地质,2012,32(6):1-8.
Wang Rong, Zhang Yongzhan, Xia Fei, et al. Grain size distribution and transportation trends of bottom sediments in the sand ridge field of the south Yellow Sea, China[J]. Marine Geology & Quaternary Geology, 2012, 32(6): 1-8. |
[17] |
王颖,邹欣庆,殷勇,等. 河海交互作用与黄东海域古扬子大三角洲体系研究[J]. 第四纪研究,2012,32(6):1055-1064.
Wang Ying, Zou Xinqing, Yin Yong, et al. Study on river-sea interaction and formation of Paleo-Yangtze grand delta system in the area of south Yellow Sea and East China Sea[J]. Quaternary Sciences, 2012, 32(6): 1055-1064. |
[18] |
Zhou L Y, Liu J, Saito Y, et al. Coastal erosion as a major sediment supplier to continental shelves: Example from the abandoned Old Huanghe (Yellow River) delta[J]. Continental Shelf Research, 2014, 82: 43-59. |
[19] |
金秉福,林振宏,杨群慧,等. 沉积矿物学在陆缘海环境分析中的应用[J]. 海洋地质与第四纪地质,2002,22(3):113-118.
Jin Bingfu, Lin Zhenhong, Yang Qunhui, et al. Application of sedimentary mineralogy to the environmental analysis in marginal seas[J]. Marine Geology & Quaternary Geology, 2002, 22(3): 113-118. |
[20] |
许苗苗,魏晓椿,杨蓉,等. 重矿物分析物源示踪方法研究进展[J]. 地球科学进展,2021,36(2):154-171.
Xu Miaomiao, Wei Xiaochun, Yang Rong, et al. Research progress of provenance tracing method for heavy mineral analysis[J]. Advances in Earth Science, 2021, 36(2): 154-171. |
[21] |
Garzanti E, Andò S. Heavy mineral concentration in modern sands: Implications for provenance interpretation[J]. Developments in Sedimentology, 2007, 58: 517-545. |
[22] |
Garzanti E, Andò S. Plate tectonics and heavy mineral suites of modern sands[J]. Developments in Sedimentology, 2007, 58: 741-763. |
[23] |
Li C X, Chen G, Yao M, et al. The influences of suspended load on the sedimentation in the coastal zones and continental shelves of China[J]. Marine Geology, 1991, 96(3/4): 341-352. |
[24] |
Zhang J, Wan S M, Clift P D, et al. History of Yellow River and Yangtze River delivering sediment to the Yellow Sea since 3.5 Ma: Tectonic or climate forcing?[J]. Quaternary Science Reviews, 2019, 216: 74-88. |
[25] |
Yang S Y, Jung H S, Lim D I, et al. A review on the provenance discrimination of sediments in the Yellow Sea[J]. Earth-Science Reviews, 2003, 63(1/2): 93-120. |
[26] |
Huang J, Wan S M, Zhang J, et al. Mineralogical and isotopic evidence for the sediment provenance of the western south Yellow Sea since MIS 3 and implications for paleoenvironmental evolution[J]. Marine Geology, 2019, 414: 103-117. |
[27] |
Yang S Y, Wang Z B, Guo Y, et al. Heavy mineral compositions of the Changjiang (Yangtze River) sediments and their provenance-tracing implication[J]. Journal of Asian Earth Sciences, 2009, 35(1): 56-65. |
[28] |
卢惠泉,吴承强,许艳. 闽江口外潮流沙脊群特征与成因[J]. 海洋地质与第四纪地质,2014,34(2): 27-35.
Lu Huiquan, Wu Chengqiang, Xu Yan. Characteristics and origin of the tidal sand ridges off the Minjiang River Estuary, southeastern China[J]. Marine Geology & Quaternary Geology, 2014, 34(2): 27-35. |
[29] |
王义刚,张薇娜,黄惠明,等. 辐射沙脊群泥沙来源及输运研究综述[J]. 水利水电科技进展,2015,35(5):59-67,88.
Wang Yigang, Zhang Weina, Huang Huiming, et al. Review of studies on sources and transport of sediment in radial sand ridges[J]. Advances in Science and Technology of Water Resources, 2015, 35(5): 59-67, 88. |
[30] |
陈可锋,郑金海,陆培东,等. 南黄海辐射沙脊群形成演变的动力地貌过程数值模拟[J]. 水科学进展,2019,30(2):230-242.
Chen Kefeng, Zheng Jinhai, Lu Peidonget al. Dynamic geomorphological modeling on the formation and evolution of the radial sand ridges in the south Yellow Sea off Jiangsu coast, China[J]. Advances in Water Science, 2019, 30(2): 230-242. |
[31] |
Xing F, Wang Y P, Wang H V. Tidal hydrodynamics and fine-grained sediment transport on the radial sand ridge system in the southern Yellow Sea[J]. Marine Geology, 2012, 291-294: 192-210. |
[32] |
Xu F, Tao J F, Zhou Z, et al. Mechanisms underlying the regional morphological differences between the northern and southern radial sand ridges along the Jiangsu coast, China[J]. Marine Geology, 2016, 371: 1-17. |
[33] |
Uehara K, Saito Y, Hori K. Paleotidal regime in the Changjiang (Yangtze) Estuary, the East China Sea, and the Yellow Sea at 6 ka and 10 ka estimated from a numerical model[J]. Marine Geology, 2002, 183(1/2/3/4): 179-192. |
[34] |
Uehara K, Saito Y. Late Quaternary evolution of the Yellow/East China Sea tidal regime and its impacts on sediments dispersal and seafloor morphology[J]. Sedimentary Geology, 2003, 162(1/2): 25-38. |
[35] |
Zhu Y R, Chen Q Q. On the origin of the radial sand ridges in the southern Yellow Sea: Results from the modeling of the paleoradial tidal current fields off the Paleo-Yangtze River estuary and northern Jiangsu coast[J]. Journal of Coastal Research, 2005, 21(6): 1245-1256. |
[36] |
王子桓. 现代河流沉积物的碎屑锆石记录:基于锆石粒径及U-Pb年代学研究[D]. 南京:南京师范大学,2018:31-33.
Wang Zihuan. Detrital zircon records from modern fluvial sediments: Based on zircon grain size and U-Pb chronology[D]. Nanjing: Nanjing Normal University, 2018: 31-33. |
[37] |
何梦颖,梅西,张训华,等. 南黄海陆架区CSDP-1孔沉积物碎屑锆石U-Pb年龄物源判别[J]. 吉林大学学报(地球科学版),2019,49(1):85-95.
He Mengying, Mei Xi, Zhang Xunhua, et al. Provenance discrimination of detrital zircon U-Pb dating in the core CSDP-1 in the continental shelf of south Yellow Sea[J]. Journal of Jilin University (Earth Science Edition), 2019, 49(1): 85-95. |
[38] |
Ludwig K R. Isoplot 3.00: A Geochronological toolkit for Microsoft Excel[M]. Berkeley: Berkeley Geochronology Center, 2003: 1-70. |
[39] |
Compston W, Williams I S, Kirschvink J L, et al. Zircon U-Pb ages for the Early Cambrian time-scale[J]. Journal of the Geological Society, 1992, 149(2): 171-184. |
[40] |
Yang S Y, Li C X. Elemental composition in the sediments of the Yangtze and the Yellow Rivers and their tracing implication[J]. Progress in Natural Science, 2000, 10(8): 612-618. |
[41] |
He M Y, Zheng H B, Bookhagen B, et al. Controls on erosion intensity in the Yangtze River Basin tracked by U-Pb detrital zircon dating[J]. Earth-Science Reviews, 2014, 136: 121-140. |
[42] |
王中波,杨守业,李萍,等. 长江水系沉积物碎屑矿物组成及其示踪意义[J]. 沉积学报,2006,24(4):570-578.
Wang Zhongbo, Yang Shouye, Li Ping, et al. Detrital mineral compositions of the Changjiang River sediments and their tracing implications[J]. Acta Sedimentologica Sinica, 2006, 24(4): 570-578. |
[43] |
Vezzoli G, Garzanti E, Limonta M, et al. Erosion patterns in the Changjiang (Yangtze River) catchment revealed by bulk-sample versus single-mineral provenance budgets[J]. Geomorphology, 2016, 261: 177-192. |
[44] |
王孟瑶,金秉福,岳伟. 长江口表层沉积物重矿物在不同粒级中的分布与研究意义[J]. 海洋学报,2019,41(11):89-100.
Wang Mengyao, Jin Bingfu, Yue Wei. Patterns of heavy mineral combination in different grain-size categories and their sedimentary significance: A case study for surfical sediments in the Changjiang River Estuary[J]. Haiyang Xuebao, 2019, 41(11): 89-100. |
[45] |
Jin B F, Wang M Y, Yue W, et al. Heavy mineral variability in the Yellow River sediments as determined by the multiple-window strategy[J]. Minerals, 2019, 9(2): 85. |
[46] |
王昆山,石学法,蔡善武,等. 黄河口及莱州湾表层沉积物中重矿物分布与来源[J]. 海洋地质与第四纪地质,2010,30(6):1-8.
Wang Kunshan, Shi Xuefa, Cai Shanwu, et al. Distribution and provenance of the surface sediments of the Yellow River mouth and Laizhou Bay deduced from heavy minerals[J]. Marine Geology & Quaternary Geology, 2010, 30(6): 1-8. |
[47] |
Jin B F, Wang M Y, Yue W. Comparative analysis of heavy mineral characteristics of sediments from the Huanghe River and the Changjiang River based on the multiple-window grain size strategy[J]. Continental Shelf Research, 2021, 216: 104326. |
[48] |
Iizuka T, Komiya T, Rino S, et al. Detrital zircon evidence for Hf isotopic evolution of granitoid crust and continental growth[J]. Geochimica et Cosmochimica Acta, 2010, 74(8): 2450-2472. |
[49] |
Safonova I Y, Rino S, Maruyama S. U-Pb ages of detrital zircons from modern sediments of the Yangtze River and stages of orogeny in Southeast Asia[J]. Doklady Earth Sciences, 2010, 431(1): 280-284. |
[50] |
He M Y, Zheng H B, Clift P D. Zircon U-Pb geochronology and Hf isotope data from the Yangtze River sands: Implications for major magmatic events and crustal evolution in central China[J]. Chemical Geology, 2013, 360-361: 186-203. |
[51] |
Jia J T, Zheng H B, Huang X T, et al. Detrital zircon U–Pb ages of Late Cenozoic sediments from the Yangtze delta: Implication for the evolution of the Yangtze River[J]. Chinese Science Bulletin, 2010, 55(4/5): 1520-1528. |
[52] |
Yang J, Gao S, Chen C, et al. Episodic crustal growth of North China as revealed by U-Pb age and Hf isotopes of detrital zircons from modern rivers[J]. Geochimica et Cosmochimica Acta, 2009, 73(9): 2660-2673. |
[53] |
Nie J S, Stevens T, Rittner M, et al. Loess Plateau storage of northeastern Tibetan Plateau-derived Yellow River sediment[J]. Nature Communications, 2015, 6(1): 8511. |
[54] |
郑萍,李大鹏,陈岳龙,等. 黄河口河流沙碎屑沉积物锆石U-Pb年龄及地质意义[J]. 现代地质,2013,27(1):79-90.
Zheng Ping, Li Dapeng, Chen Yuelong, et al. Zircon U-Pb ages of clastic sediment from the outfall of the Yellow River and their geological significance[J]. Geoscience, 2013, 27(1): 79-90. |
[55] |
张凌,王平,陈玺赟,等. 碎屑锆石U-Pb年代学数据获取、分析与比较[J]. 地球科学进展,2020,35(4):414-430.
Zhang Ling, Wang Ping, Chen Xiyun, et al. Review in detrital zircon U-Pb geochronology: Data acquisition, analysis and comparison[J]. Advances in Earth Science, 2020, 35(4): 414-430. |
[56] |
Kruskal J B. Multidimensional scaling by optimizing goodness of fit to a nonmetric hypothesis[J]. Psychometrika, 1964, 29(1): 1-27. |
[57] |
Feng Z B, Liu B H, Zhao Y X, et al. Spatial and temporal variations and controlling factors of sediment accumulation in the Yangtze River Estuary and its adjacent sea area in the Holocene, especially in the Early Holocene[J]. Continental Shelf Research, 2016, 125: 1-17. |
[58] |
Yue W, Jin B F, Zhao B C. Transparent heavy minerals and magnetite geochemical composition of the Yangtze River sediments: Implication for provenance evolution of the Yangtze delta[J]. Sedimentary Geology, 2018, 364: 42-52. |
[59] |
Wang K S, Shi X F, Yao Z Q, et al. Heavy-mineral-based provenance and environment analysis of a Pliocene series marking a prominent transgression in the south Yellow Sea[J]. Sedimentary Geology, 2019, 382: 25-35. |
[60] |
Yang S L, Xu K H, Milliman J D, et al. Decline of Yangtze River water and sediment discharge: Impact from natural and anthropogenic changes[J]. Scientific Reports, 2015, 5(1): 12581. |
[61] |
Lu J, Li A C, Huang P, et al. Mineral distributions in surface sediments of the western south Yellow Sea: Implications for sediment provenance and transportation[J]. Chinese Journal of Oceanology and Limnology, 2015, 33(2): 510-524. |
[62] |
Yuan D L, Li Y, Wang B, et al. Coastal circulation in the southwestern Yellow Sea in the summers of 2008 and 2009[J]. Continental Shelf Research, 2017, 143: 101-117. |
[63] |
Liu J, Saito Y, Kong X H, et al. Sedimentary record of environmental evolution off the Yangtze River estuary, East China Sea, during the last ~13,000 years, with special reference to the influence of the Yellow River on the Yangtze River delta during the last 600 years[J]. Quaternary Science Reviews, 2010, 29(17/18): 2424-2438. |
[64] |
薛春汀,刘健,孔祥淮. 1128—1855年黄河下游河道变迁及其对中国东部海域的影响[J]. 海洋地质与第四纪地质,2011,31(5):25-36.
Xue Chunting, Liu Jian, Kong Xianghuai. Channel shifting of lower Yellow River in 1128-1855 AD and its influence to the sedimentation in Bohai, Yellow and East China Seas[J]. Marine Geology & Quaternary Geology, 2011, 31(5): 25-36. |
[65] |
Xu T Y, Wang G Q, Shi X F, et al. Sequence stratigraphy of the subaqueous Changjiang (Yangtze River) delta since the last glacial maximum[J]. Sedimentary Geology, 2016, 331: 132-147. |
[66] |
张尧,韩宗珠,艾丽娜,等. 黄海全新世泥质体表层沉积物重矿物特征及其指示意义[J]. 中国海洋大学学报,2018,48(11):108-118.
Zhang Yao, Han Zongzhu, AI Li’na, et al. Characteristics and significance of heavy minerals in the surface sediments of the Holocene mud of the Yellow Sea[J]. Periodical of Ocean University of China, 2018, 48(11): 108-118. |
[67] |
王勇智,乔璐璐,杨作升,等. 近岸强海流切变锋作用下悬浮沉积物的输送和沉积:以山东半岛东端外海为例[J]. 沉积学报,2013,31(3):486-496.
Wang Yongzhi, Qiao Lulu, Yang Zuosheng, et al. Suspended sediment transport and deposition due to strong regional shear current front: An example from the shelf waters off eastern Shandong Peninsula[J]. Acta Sedimentologica Sinica, 2013, 31(3): 486-496. |
[68] |
Hu G, Xu K H, Clift P D, et al. Textures, provenances and structures of sediment in the inner shelf south of Shandong Peninsula, western south Yellow Sea[J]. Estuarine, Coastal and Shelf Science, 2018, 212: 153-163. |