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Li Z., Jia J., Wu Y., Wang Y.P., Zhang G., 2022. Net suspended sediment transport modulated by multiple flood-ebb asymmetries in the progressive tidal wave dominated and partially stratified Changjiang Estuary. Marine Geology, 443(C10):106702.
Zhang L., Yang Z, Zhang F., Li Z., Wang Y.P., Gao S., 2021. Longitudinal residual circulation in the South Passage of Yangtze Estuary: Combined influences from runoff, tide and bathymetry. Science China Earth Sciences, 64, 2129–2143.
Teng L., Cheng H., Swart D.H., Dong P., Li Z., Li J., Wang Y., 2021. On the mechanism behind the shift of the turbidity maximum zone in response to reclamations in the Yangtze (Changjiang) Estuary, China. Marine Geology 440(4):106569.
Li Z., Jia J., Wu Y., Zong H., Zhang G., Wang Y.P., Yang Y., Zhou L., Gao S., 2019. Vertical Distributions of Suspended Sediment Concentrations in the Turbidity Maximum Zone of the Periodically and Partially Stratified Changjiang Estuary. Estuaries and Coasts, 42, 1475–1490.
Li Z., Wang Y., Cheng P., Zhang G., Li J., 2016. Flood-ebb asymmetry in current velocity and suspended sediment transport in the Changjiang Estuary. Acta Oceanol. Sin. 35, 37–47.
Zhou L., Shi Y., Zhao Y., Yang Y., Jia J., Gao J., Wang Y.P., Li Z., Zhang Y., Guo Y., Shi B., Gao S., 2021. Extreme floods of the Changjiang River over the past two millennia: contributions of climate change and human activity. Marine Geology, 106418.
Lu T., Wu H., Zhang F., Li J., Zhou L., Jia J., Li Z., Wang Y.P., 2020. Constraints of salinity- and sediment-induced stratification on the turbidity maximum in a tidal estuary. Geo-Marine Letters, 40(5), 765-779.
Yang Y., Jia J., Zhou L., Gao J., Gao W., Shi B., Li Z., Wang Y.P., Gao S., 2020. Quantitative reconstruction of Holocene sediment sources contributing to the central Jiangsu coast, china: new insights into source-to-sink processes. Earth Surface Processes and Landforms, 45: 2463-2477.
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, 416:105987-105987.
Yang Y., Jia J., Zhou L., Gao W., Shi B., Li Z., Wang Y.P., Gao S., 2019. Human-induced changes in sediment properties and amplified endmember differences: possible geological time markers in the future. Science of The Total Environment, 661, 63-74.
Li, Z., Li, M.Z., Dai, Z. et al. Intratidal and neap-spring variations of suspended sediment concentrations and sediment transport processes in the North Branch of the Changjiang Estuary. Acta Oceanol. Sin. 34, 137–147 (2015).
张丽芬, 杨作升, 张凡, 李占海, 汪亚平, 高抒, 2021. 长江河口南槽纵向余环流: 径流、潮汐和地形耦合机制. 中国科学:地球科学,51:1-14.
徐圣, 李占海*, 汪亚平, 贾建军, 2021. 台风期间长江口南槽近底部沉积动力过程,泥沙研究,46(04): 48-53.
陈雅望, 盛辉, 徐庆华, 曲玉冰, 邢飞, 李占海, 汪亚平, 2021. 近40年来长江口沉积物粒度变化及其对底床冲淤的影响. 水利水运工程学报, 5: 8-18.
张赛赛, 杨世伦, 李鹏, 陈沈良, 李占海, 石学法, 2020. 长江口潮差中长期变化对河口生态环境的影响. 海洋科学进展, 38(2), 317-325.
李一鸣, 张国安, 游博文, 李占海, 2019. 长江河口河槽近期沉积特征及影响因子分析. 地理学报, 74(1), 180-192.
赵季伟, 李占海*, 徐圣, 张二凤, 程和琴, 2019. 长江口北港上段河道枯季悬沙浓度垂向分布特征研究. 长江流域资源与环境, 28(9), 191-202.
兰庭飞, 吴昊, 唐杰平, 李占海, 汪亚平, 2019. 基于新型高频声学多普勒流速剖面仪的河口近底部边界层观测初探. 海洋通报, (6), 640-649.
汪亚平, 贾建军, 杨阳, 周亮, 冯威, 高建华, 魏稳, 李占海, 史本伟, 高抒, 2019. 长江三角洲蓝图重绘的基础科学问题:进展与未来研究. 海洋科学. 43(10): 2-12.
游博文, 张国安, 李一鸣, 李占海, 2018. 近30年来长江口北支及口外沉积特征及输移趋势. 长江流域资源与环境, 27(10), 2328-2338.
李远, 李占海*, 张钊, 王智罡, 姚弘毅, 2017. 长江口北槽下游河道悬沙浓度垂向分布特征研究. 华东师范大学学报(自然科学版), 6(196), 119-130.
张钊, 李占海*, 张国安, 王智罡, 姚俊, 2016. 长江口南槽中段枯季水沙输运特征研究. 长江流域资源与环境, 25(12), 1832-1841.
王智罡, 李占海, 张国安, 赵方方, 2016. 长江口北槽中段枯季输盐输沙特征研究, 3: 45-52.
高敏, 李九发, 李占海, 姚弘毅, 王飞, 2015. 近期长江河口南支典型河段河道含沙量时间变化及床沙再悬浮研究, 长江流域资源与环境, 24(1):30-38.
赵方方, 李占海, 李九发, 陈炜, 2013. 长江口北支小潮至大潮水沙输运机制研究. 泥沙研究, 4: 55-62.