个人资料
教育经历1995.9-2000.6 华东师范大学地理系博士研究生 1991.9-1995.6 华东师范大学地理系本科 工作经历2009.1至今 教授 华东师范大学河口海岸全国重点实验室 2002.8-2008.12 副教授 华东师范大学资源与环境学院 2000.7-2002.7 讲师 华东师范大学地理系 个人简介1995.9-2000.6 华东师范大学地理系博士研究生 1991.9-1995.6 华东师范大学地理系本科 社会兼职《古地理学报》编委,上海市人类学会理事 研究方向海岸带环境考古
招生与培养开授课程
海洋地质学前沿
科研项目主持的项目 1. 2025.1-2028.12,两宋潮灾在我国东南沿海港口遗址的地层记录多尺度研究,国家自然科学基金,项目批准号42476156 2. 2024.6-2026.5,盐城阜宁钱庄遗址环境考古研究,江苏省文物考古研究院委托项目 3. 2024.8-2025.8,岱山姚家湾遗址环境考古测试技术服务,浙江省文物考古研究所委托项目 4. 2024.8-2025.12,连云港李庄遗址海盐生产环境和工艺研究,连云港市文物保护和考古研究所委托项目 5. 2024.1-2015.12,宁波汶溪遗址环境考古研究,宁波市文化遗产管理研究院委托项目 6. 2022.9-2024.8,青龙镇遗址样本检测,上海博物馆委托项目 7. 2022.1-2022.12,Mid-Holocene coastal environmental change and linkage to the evolution of Neolithic culture in East China,国际第四纪研究联盟,项目批准号2201 8. 2021.1-2021.12,Mid- to late Holocene extreme storm events and relative sea-level changes in East Asia,国际第四纪研究联盟,项目批准号2102 9. 2017.1-2019.12,宁波大榭岛古代遗址人地关系研究,宁波市文物考古研究所委托项目 学术成果近10年主要论文(*通讯作者): 1. Lin, F., Mei, S., Xu, H.*, Yang, M., Meadows, M.E., Wang, Z.*, 2025. Sedimentary records of mid-Holocene extreme storm events and Neolithic cultural response in the Yaojiang-Ningbo Plain, East China. Marine Geology, in press. 2. Wei, X., Liang, Y., Liu, T., Ma, Z., Ma, X.*, Ji, S., Lin, F., Xu, H., Wang, Z.*, 2025. Hydrodynamic processes and extreme events recognized from the sedimentary records at ancient Port Shuomen in the Oujiang River mouth, Southeast China. Marine Geology 486, 107562. 3. Wu, Z., Wang, J., Nian, X.*, Qiu, F., Wang, Z.*, 2025. The rapid infilling of a tide-dominated channel on the southern Yangtze Delta plain during the Medieval Climate Anomaly. Frontiers in Marine Science 11, 1503297. 4. Pan, D.*, Wang, Z.*, Wang, A., Yu, F., Zhu, X., Yang, X., Li, H., Chen, X., Li, S., 2024. Spatial variability in alkaline earth metals of surface sediments from the Jiulong River mouth, Southeast China: implications for hydro-sedimentary dynamic processes and sedimentary facies. Acta Oceanologica Sinica, 43(11), 57–67. 5. Li, X., You, X., Lin, S., Zhang, W., Cheng, Z., Wang, Z.*, 2024. Late Holocene climate warming events and their linkage to hydraulic engineering on the coast of Hangzhou Bay, East China. Journal of Marine Science and Engineering 12, 79. 6. 李训鹏, 林森, 王张华*, 2024. 浙江余杭跳头遗址晚商-西周早期铸铜活动的沉积地层记录. 第四纪研究, 44(1), 128–143. 7. 雷少,毛欣琳,崔剑锋,王张华,2024. 浙江宁波大榭遗址史前盐卤制作工艺的实验考古研究. 南方文物,(01), 235–253. 8. 季诗雨,韦鑫,郑亚玲,梁岩华,王张华,徐皓,2024. 温州朔门古港宋代文化层沉积间断及其成因探讨. 上海国土资源,45(2), 139–145. 9. 林芳由,王张华,苾欣芸,苗炳迪,雷少,李冬玲,沙龙滨,徐皓,2023. 中-晚全新世姚江河谷平原古文化遗址分布变化及动因的GIS分析. 上海国土资源,44(4), 43–53. 10. Chen, Y., Lei, S., Lazar, M., Shalev, E.A., Wang, Z.*, 2023. Mid-Holocene salinity intrusion and rice yield loss on East China coast and the impacts on formation of a complex state society. Marine Geology 466, 107183. 11. Chen, Y., Deng, B.*, Saito, Y., Wang, Z., Yang, X., Wu, J., 2023. Pearl River sediment dispersal over its associated delta-estuary-shelf system during the Holocene. Sedimentology 70, 2331-2354. doi: 10.1111/sed.13123 12. Zheng, T., Lei, S., Wang, Z.*, Li, W., Mei, S., Wang, J., Meadows, M.E., 2023. Prehistoric sea-salt manufacture as an adaptation strategy to coastal flooding in East China. Quaternary Science Reviews 302, 107966. 13. 潘昱,孙国平,雷少,吴莹莹,王张华*,2023. 宁绍平原东部新石器时期遗址地层碱土金属元素地球化学特征以及对海水入侵事件的指示.海洋地质与第四纪地质, 43(6), 170–181. 14. Zhang, X., Deng, B., Chen, Y., Chen, Y., Wang, Z., Wu, J., 2023. Shallow gas in Holocene sediments of the Pearl River Estuary and the implication for anthropogenic effects on its release. Global and Planetary Change 220, 103999. 15. Lyu, Y., Xu, H., Meadows, M.E, Wang, Z.*, 2022. Early to mid-Holocene sedimentary environmental evolution in the palaeo-Ningbo Bay, East China and its implications for Neolithic coastal settlement. Frontiers in Marine Science 9, 1059746. doi: 10.3389/fmars.2022.1059746 16. 王龙,王张华*,李翠玉,2022. 福建沿海全新世相对海平面变化:地质记录与“冰川-水均衡调整”模拟对比. 海洋学报44(9),109-123. 17. Wu, Y., Huang, X., Zheng, X., Meadows, M.E., Wang, Z.*, 2022. Sedimentary records of mid-Holocene extreme storm events on the north bank of Hangzhou Bay, East China. Marine Geology 451, 106891. 18. Zhang, W., Zheng, T., Wang, Z.*, Meadows, M.E., 2022. Reconstruction of coastal flooding processes and human response at the end of the Liangzhu Culture, East China. Quaternary Science Reviews 293, 107705. 19. Niu, W., Nian, X.*, Zhao, L., Zhai, Y., Meadows, M.E., Zhang, W., Wang, Z.*, 2022. Luminescence characteristics of muddy sediments in the turbidity maximum zone of the Yangtze River mouth and implications for the depositional mechanisms. Frontiers in Earth Science 10, 972642. 20. 吉俊熹,时硕,陈莹璐,王孟瑶,王张华*,2022. 珠江三角洲全新世沉积物磁性特征及早期成岩作用分析. 海洋学报44(6), 1-17. 21. 时硕,吉俊熹,王张华*,2022. 珠江三角洲全新世沉积物C/N和δ13C变化及对甘蔗种植业的指示. 第四纪研究42(2),397-411. 22. Wang, S., Ge, J., Meadows, M.E., Wang, Z.*, 2022. Reconstructing a late Neolithic extreme storm event on the southern Yangtze coast, East China, based on sedimentary records and numerical modeling. Marine Geology 443, 106687. 23. Huang, Y.-G., Yang, H.-F., Wang, Y.P., Jia, J.-J., Wang, Z.-H., Zhu, Q., Li, P., Luo, X.-X., Shi, B.W., Zhang, W.-X., Yang, S.-L., 2022. Swell-driven sediment resuspension in the Yangtze Estuary during tropical cyclone events. Estuarine, Coastal and Shelf Science 267, 107765. 24. Guo, L., Zhu, C., Xie, W., Xu, F., Wu, H., Wan, Y., Wang, Z., Zhang, W., Shen, J., Wang, Z.B., He, Q., 2021. Changjiang Delta in the Anthropocene: Multi-scale hydro-morphodynamics and management challenges. Earth-Science Reviews 223, 103850. 25. Lyu, Y., Tong, C., Saito, Y., Meadows, M.E., Wang, Z.*, 2021. Early to mid-Holocene sedimentary evolution on the southeastern coast of Hangzhou Bay, East China, in response to sea-level change. Marine Geology 442, 106655. 26. Yuan, X., Yang, Q., Meadows, M.E., Luo, X.**, Wang, Z.*, 2021. Grain size and organic geochemistry of recent sediments in Lingding Bay, Pearl River Delta, China: implications for sediment dispersal and depositional processes perturbed by human activities. Anthropocene Coasts 4, 147-167. 27. Niu, W., Zhao, L., Switzer, A.D., Zhai, Y., Zhang, W., Wang, Z.*, 2021. Sedimentary evidence for a period of rapid environmental change in the Yangtze Delta, China around 150 years ago. Continental Shelf Research 229, 104552. 28. Gugliotta, M., Saito, Y., Ta, T.K.O, Nguyen, V.L., La Croix, A.D., Wang, Z., Tamura, T., Nakashima, R., Lieu, K.P., 2022. Late Holocene stratigraphic evolution and sedimentary facies of an active to abandoned tide-dominated distributary channel and its mouth bar. Sedimentology 69, 1151-1178. doi: 10.1111/sed.12940 29. Gugliotta, M., Saito, Y., Ta, T.K.O, Nguyen, V.L., Tamura, T., Wang, Z., La Croix, A.D., Nakashima, R., 2021. Abandonment and rapid infilling of a tide-dominated distributary channel at 0.7 ka in the Mekong River Delta. Scientific Reports 11, 11040. 30. Nian, X., Zhang, W., Wang, Z., Sun, Q., Chen, Z., 2021. Inter-comparison of optically stimulated luminescence (OSL) ages between different fractions of Holocene deposits from the Yangtze delta and its environmental implications. Marine Geology 432, 106401. 31. Huang, J., Li, Y., Ding, F., Zheng, T., Meadows, M.E., Wang, Z.*, 2021. Sedimentary records of mid-Holocene coastal flooding at a Neolithic site on the southeast plain of Hangzhou Bay, east China. Marine Geology 431, 106380. 32. Wang, A., Wang, Z., Liu, J., Xu, N., Li, H., 2021. The Sr/Ba ratio response to salinity in clastic sediments of the Yangtze River delta. Chemical Geology 559, 119923. 33. 黄晶,郑童童,王爱华,栗文静,王张华*,2021. 不同选择性提取碱土金属元素方法对比及意义——以宁波平原表层沉积物为例. 华东师范大学学报2021(2): 1-12. 34. 战庆,王张华,赵宝成,王寒梅,史玉金,何中发,谢建磊,2020. 末次冰消期以来长江口沉积环境演化及沿岸流变化. 地球科学, 45(7): 2697-2708. 35. Huang, J., Lei, S., Wang, A., Tang, L., Wang, Z.*, 2020. Mid-Holocene environmental change and human response at the Neolithic Wuguishan site in the Ningbo coastal lowland of East China. The Holocene 30, 1591-1605. 36. Pan, D., Wang, Z.*, Zhan, Q., Saito, Y., Wu, H., Yang, S., Cheng, H., 2020. Organic geochemical variations for understanding past sediment dynamic processes: example from Holocene sedimentary records in the Changjiang River delta, China. Continental Shelf Research 204, 104189. 37. 潘大东,王张华,2020. 东亚和南亚典型大河三角洲晚第四纪地层结构及成因对比. 海洋地质与第四纪地质40(1), 12-21. 38. Wang, S., Ge, J., Kilbourne, K.H., Wang, Z.*, 2020. Numerical simulation of mid-Holocene tidal regime and storm-tide inundation in the south Yangtze coastal plain, East China. Marine Geology 423, 106134. 39. Jiang, Y., Saito, Y., Ta, T.K.O., Wang, Z.*, Gugliotta, M., Nguyen, V.L., 2020. Spatial and seasonal variability in grain size, magnetic susceptibility, and organic elemental geochemistry of channel-bed sediments from the Mekong Delta, Vietnam: implications for hydro-sedimentary dynamic processes. Marine Geology 420, 106089. 40. Tang, L., Shu, J., Chen, J., Wang, Z.*, 2019. Mid- to late Holocene vegetation change recorded at a Neolithic site in the Yangtze coastal plain, East China. Quaternary International 519, 122-130. 41. Yuan, X., Yang, Q., Luo, X**, Yu, F., Li, J., Wang, Z.*, 2019. Distribution of grain size and organic elemental composition of the surficial sediments in Lingding Bay in the Pearl River Delta, China: A record of recent human activity. Ocean & Coastal Management 178, 104849. 42. Zhou, L., Yang, Y., Wang, Z., Jia, J., Mao, L., Li, Z., Fang, X., Gao, S., 2019. Investigating ENSO and WPWP modulated typhoon variability in the South China Sea during the mid-late Holocene using sedimentological evidence from southeastern Hainan, Island, China. Marine Geology 416, 105987. 43. 唐亮,吕晔,年小美,雷少,王张华*,2019. 姚江-宁波平原中全新世海侵事件及古人类活动的快速响应. 第四纪研究 39(5), 1116-1132. 44. Wang, A., Wang, Z., Liu, J., Xu, N., Li, H., 2019. The selectively extractive Sr/Ba ratio and discrimination between marine and terrestrial sedimentary environments in terrigenous clastic sediments. Acta Geologica Sinica (English edition), 93 (supp. 2), 412-413. 45. Nian, X., Zhang, W., Qiu, F., Qin, J., Wang, Z., Sun, Q., Chen, J., Chen, Z., Liu, N., 2019. Luminescence characteristics of quartz from Holocene delta deposits of the Yangtze River and their provenance implications. Quaternary Geochronology 49, 131–137. DOI: 10.1016/j.quageo.2018.04.010 46. Innes, J.B., Zong, Y., Xiong, H., Wang, Z., Chen, Z., 2019. Pollen and non-pollen palynomorph analyses of Upper Holocene sediments from Dianshan, Yangtze coastal lowlands, China: Hydrology, vegetation history and human activity. Palaeogeography, Palaeoclimatology, Palaeoecology 523, 30-47. 47. 栗文静,雷少,王张华*,李月,岳伟,郑童童, 2018. 浙江大榭史前制盐遗址人工土台的堆土特征及来源分析. 古地理学报, 20(6), 1102-1112. 48. Wang, Z.*, Saito, Y., Zhan, Q., Nian, X., Pan, D., Wang, L., Chen, T., Xie, J., Li, X., Jiang, X., 2018. Three-dimensional evolution of the Yangtze River mouth, China during the Holocene: impacts of sea level, climate and human activity. Earth Science Reviews 185, 938–955. DOI: 10.1016/j.earscirev.2018.08.012 49. Chen, T., Ryves, D.B., Wang, Z.*, Lewis, J.P., Yu, X., 2018. Mid- to late Holocene morphological and hydrological changes in the south Taihu area of the Yangtze delta plain, China. Palaeogeography, Palaeoclimatology, Palaeoecology, 498: 127–142. DOI: 10.1016/j.palaeo.2018.03.012. 50. Wang, Z., Ryves, D.B., Lei, S., Nian, X., Lv, Y., Tang, L., Wang, L., Wang, J., Chen, J., 2018. Middle Holocene marine flooding and human response in the south Yangtze coastal plain, East China. Quaternary Science Reviews, 187: 80–93. 51. Nian X., Zhang W., Wang Z., Sun Q., Chen J., Chen Z., 2018. Optical dating of Holocene sediments from the Yangtze River (Changjiang) Delta, China. Quaternary International, 467: 251–263. 52. Wei T., Wang Z., Chen J., Li M., 2018. Non-flood season neap tides in the Yangtze estuary offshore: flow mixing processes and its potential impacts on adjacent wetlands. Physics and Chemistry of the Earth, 103: 127-139. 53. Zhao B., Yan X., Wang Z., Shi Y., Chen Z., Xie J., Chen J., He Z., Zhan Q., Li X., 2018. Sedimentary evolution of the Yangtze River mouth (East China Sea) over the past 19,000 years, with emphasis on the Holocene variations in coastal currents. Palaeogeography, Palaeoclimatology, Palaeoecology, 490: 431-449. 54. Nian X., Zhang W., Wang Z., Sun Q., Chen J., Chen Z., 2018. The chronology of a sediment core from incised valley of the Yangtze River delta: Comparative OSL and AMS 14C dating. Marine Geology, 395: 320-330. 55. Cui M., Wang Z.*, Nageswara Rao K., Sangode S.J., Saito Y., Chen T., Kulkarni Y.R., Naga Kumar K.Ch. V., Demudu G., 2017. A mid-late Holocene record of vegetation decline and erosion triggered by monsoon weakening and human adaptations in the southeast Indian Peninsula. The Holocene, 27: 1976-1987. 56. Pan D., Chen T., Zhan Q., Wang Z.*, 2017. Mineral magnetic properties of Holocene sediments in the subaqueous Yangtze delta and the implications for human activity and early diagenesis. Quaternary International, 459: 133-143 57. Yue W., Liu J.T., Zhang D., Wang Z., Zhao B., Chen Z., Chen J., 2016. Magnetite with anomalously high Cr2O3 as a fingerprint to trace upper Yangtze sediments to the sea. Geomorphology, 268: 14-20. 58. 白雪莘,张卫国,董艳,潘大东,王张华,孙千里,陈静,陈中原,刘晋嫣,2016.长江三角洲全新世地层中潮滩沉积磁性特征及其古环境意义.沉积学报,34(6): 1165-1175. 59. 喻薛凝,战庆,王张华,2016. 长江口各地貌单元沉积构造和粒度分区特征,海洋地质与第四纪地质,36(4): 1-11. 60. 战庆,王张华,陈勇,赵宝成,长江口水下三角洲沉积物粒度组成及其在减沙背景下的响应,地质通报,2016.10.15,(10):1715~1723 荣誉及奖励 |