国家级: [1] 2023.1-2025.12, 国家自然科学基金青年项目,陡变珊瑚岛礁地形上低频长波演化特性及对海堤越浪影响研究,主持 [2] 2022.12-2025.11,国家重点研发计划项目子课题,面向港口应用的波浪数据深度解析与智能化处理技术研究,主持 [3] 2022.12-2025.11,国家重点研发计划项目子课题,XX, 主持 [4] 2018.1-2021.12,国家自然科学基金面上项目,波流作用下超大尺度及复杂基础结构局部冲刷机理及精细数学模型研究,参与(3/10) 省部级: [1] 2022.10-2014.9,天津市自然科学基金青年项目,海洋凸起地形上次重力波非线性演化研究,主持
[2] 2018.10-2021.9, 天津市自然科学基金面上项目,围油栏水动力特性数值模拟方法研究,参与(3/10) 其他: [1] 2024.1-2025.12, 中国水科学水利部泥沙科学与北方河流治理重点实验室开放基金项目,黄海辐射沙洲动态演变过程研究,主持 [2] 2020.4-2021.12, 交通运输部天津水运工程科学研究院创新基金项目, 珊瑚岛礁直立堤越浪规律及影响因素研究,主持 [3] 2017.1-2018.12, 海南省交通科技项目,台风浪对港口航道的影响机理及治理技术研究,参与(8/20)
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[1] Liu, Y., Li,S., Liao,Z.,Liu,Q.,Zou,Q. and Zou, Q., 2023.Explicit wave-runup formula for beaches fronted by coral reefs using tree-based models. Coastal Engineering, 183: 104308. [2] Liu, Y.,Yao, Y., Liao, Z., Li, S., Zhang, C. and Zou, Q., 2023. Fully nonlinear investigation on energy transfer between long waves and short-wave groups over a reef. Coastal Engineering, 179: 104240. [3] Liu, Y., Liao, Z., Fang, K. and Li, S., 2021. Uncertainty of wave runup prediction on coral reef-fringed coasts using SWASH model. Ocean Engineering, 242: 110094 [4] Liu, Y., Li, S., Liao, Z. and Liu, K., 2021. Physical and numerical modeling of random wave transformation and overtopping on reef topography. Ocean Engineering, 220: 108390. [5] Liu, Y., Li, S., Zhao, X., Hu, C., Fan, Z. and Chen, S., 2020. Artificial neural network prediction of overtopping rate for impermeable vertical seawalls on coral reefs. ASCE-Journal of Waterway Port Coastal and Ocean Engineering, 146(4): 04020015. [6] Liu, Y., Li, S., Chen, S., Hu, C., Fan, Z. and Jin, R., 2020. Random wave overtopping of vertical seawalls on coral reefs. Applied Ocean Research, 100: 102166. [7] Liu, Y. and Li, S., 2018. Variation of wave groupiness across a fringing reef. ASCE-Journal of Waterway Port Coastal and Ocean Engineering, 144(6): 04018022. [8] Liu, Y. and Li, S., 2016. Resolution of incident and reflected components of nonlinear regular waves. Coastal Engineering Journal, 58(3): 1650012. [9] 柳叶,穆言,李绍武,2023. 礁冠对珊瑚礁不规则波演变影响的数值模拟研究.长沙理工大学学报,20(4):1-7. [10] Liao, Z., Liu, Y.(通讯作者), Liu, W., et al. Experimental investigation of evolution of infragravity waves over a large-scale shoal. Coastal Engineering, 2025, 197: 104687. [11] Liao,Z., Zou,Q.*, Liu, Y.(通讯作者), Contardo, S., Li, S., 2023. Unified analytical solution for group-induced infragravity waves based on Green’s function. Journal of Fluid Mechanics,967: A37. [12] Liao, Z., Li, S., Liu, Y.(通讯作者) and Zou, Q.*., 2021. An analytical spectral model for infragravity waves over topography in intermediate and shallow water under non-breaking conditions. Journal of Physical Oceanography, 51(9): 2749-2765. [13] Li, S., Liao, Z., Liu, Y.(通讯作者) and Zou, Q., 2020. Evolution of infragravity waves over a shoal under nonbreaking conditions. Journal of Geophysical Research: Oceans, 125(8): e2019JC015864. [14] Li, S. and Liu, Y.(通讯作者), 2018. Analytical and explicit solutions to implicit wave friction-factor equations based on the lambert w function. Journal of Coastal Research, 34(6): 1499-1502. [15] 金瑞佳, 郭泉, 陈松贵, 柳叶(通讯作者), 耿宝磊, 2021. 波流作用下新型立管大水槽试验研究. 天津大学学报, 54(07): 694-703. [16] 李绍武, 胡传越, 柳叶(通讯作者), 2019. 不规则波在岸礁地形增水变化规律试验. 水科学进展, 30(04): 581-588.
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