{"id":29,"date":"2015-10-23T23:00:24","date_gmt":"2015-10-23T23:00:24","guid":{"rendered":"http:\/\/blogs.cardiff.ac.uk\/shunqipan\/?page_id=29"},"modified":"2026-05-10T18:45:28","modified_gmt":"2026-05-10T18:45:28","slug":"journal-articles","status":"publish","type":"page","link":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/publications\/journal-articles\/","title":{"rendered":"Journal Articles"},"content":{"rendered":"\r\n<ul class=\"wp-block-list\">\r\n<li>Zhao, M., Bai, X. &amp; <strong>Pan, S.<\/strong> (2026). &#8220;Shifting streamflow regimes in the arctic: a multi-basin analysis using the VIC model&#8221;. Journal of Hydrology 675 [DOI: 10.1016\/j.jhydrol.2026.135611]<\/li>\r\n<li>Chen, Y., Qin, Z., Xu, Z., Xu, X., <strong>Pan, S.<\/strong> &amp; Wang, J. (2026). &#8220;Typhoon wave height prediction based on BO-LSTM and Pangu-Weather models&#8221;. Engineering Applications of Computational Fluid Mechanics 20(1) [DOI: 10.1080\/19942060.2026.2658296]<\/li>\r\n<li>Gao, F., Yin, P., Chen, X., Lim, P., Cao, K. &amp; <strong>Pan, S.<\/strong> (2026). &#8220;Tidal dynamics in Kompong Som Bay, Cambodia: an FVCOM modeling study&#8221;. Frontiers in Marine Science Volume 13 &#8211; 2026 [DOI: 10.3389\/fmars.2026.1786926]<\/li>\r\n<li>Guo, B., Ning, D., Meng, J., Xie, Z. &amp; <strong>Pan, S.<\/strong> (2025). &#8220;Non-axisymmetric oscillating water column wave energy converter: A semi-analytical study&#8221;. Phys Fluids 37(10) [DOI: 10.1063\/5.0293326]<\/li>\r\n<li>Guo, B., Meng, J., Xie, Z., Ning, D. &amp; <strong>Pan, S.<\/strong> (2025). &#8220;A Lattice Boltzmann Method for Free Surface Flows over Partially Submerged Structures&#8221;. Computer Physics Communications, 109852 [DOI: 10.1016\/j.cpc.2025.109852]<\/li>\r\n<li>Xu, H., Hou, X., Zhang, B., Bray, M., <strong>Pan, S.<\/strong> &amp; Huang, H. (2025). &#8220;Exploring the intersection between coastal flood hazards and socioeconomic exposure: Evidence from China&#8217;s coastal zone&#8221;. Journal of Environmental Management 393, 127072 [DOI: 10.1016\/j.jenvman.2025.127072]<\/li>\r\n<li>Guo, B., Meng, J., Ning, D., Xie, Z. &amp; <strong>Pan, S.<\/strong> (2025). &#8220;An interpolated bounce-back based lattice Boltzmann method for floating structures interacting with free surface flows&#8221;. Journal of Computational Physics 540 [DOI: 10.1016\/j.jcp.2025.114293]<\/li>\r\n<li>Gu, Y., Chen, Y., Yang, D., Zhao, X. &amp; <strong>Pan, S. <\/strong>(2025). &#8220;The impact of impervious surface expansion morphology on ecosystem services and thresholds in the Haihe River basin&#8221;. Ecological Indicators 175 [DOI: 10.1016\/j.ecolind.2025.113493]<\/li>\r\n<li>Makrygianni, N., <strong>Pan, S.<\/strong>, Bray, M. &amp; Bidlot, J.R. (2025). &#8220;Modelling of hurricane Dorian via the implementation of Wave Boundary Layer Model (WBLM) within the OpenIFS&#8221;. Ocean Modelling 194 [DOI: 10.1016\/j.ocemod.2024.102469]<\/li>\r\n<li>Yu, D., Ren, L., Chen, C., Kong, X., Zhou, M., Yang, L., Han, Z. &amp; <strong>Pan, S.<\/strong> (2025). &#8220;An AttSDNet model for multi-scale feature perception enhanced remote sensing classification of coastal salt-marsh wetlands&#8221;. Marine Environmental Research 204, 106899 [DOI: 10.1016\/j.marenvres.2024.106899]<\/li>\r\n<li>Xu, Z., Zhang, W., Chen, Y. &amp; <strong>Pan, S.<\/strong> (2025). &#8220;Numerical study on mean and turbulent characteristics of an oscillating jet under the effect of currents&#8221;. Ocean Engineering 317, 120035 [DOI: 10.1016\/j.oceaneng.2024.120035]<\/li>\r\n<li>Makrygianni, N., <strong>Pan, S.<\/strong>, Bray, M. &amp; Bidlot, J.R. (2025). &#8220;Modelling of hurricane Dorian via the implementation of Wave Boundary Layer Model (WBLM) within the OpenIFS&#8221;. Ocean Modelling 194 [DOI: 10.1016\/j.ocemod.2024.102469]<\/li>\r\n<li>Xu, J., Li, J., <strong>Pan, S<\/strong>., Yao, Y., Chen, L. &amp; Wu, Z. (2024). &#8220;Assessment of wind and wave energy in China seas under climate change based on CMIP6 climate model&#8221;. Energy 310 [DOI: 10.1016\/j.energy.2024.133207]<\/li>\r\n<li>Tao, Z., Chen, Y., <strong>Pan, S.<\/strong>, Chu, A., Xu, C., Yao, P. &amp; Rowely, S. (2024). &#8220;The Influence of Wind and Waves on Saltwater Intrusion in the Yangtze Estuary: A Numerical Modeling Study&#8221;. Journal of Geophysical Research: Oceans 129(9), e2024JC021076 [DOI: 10.1029\/2024jc021076]<\/li>\r\n<li>Zhou, Y., Yu, D., Yang, L., Gai, Y., Yi, Z., Yuan, Q., Han, Z. &amp; <strong>Pan, S.<\/strong> (2024). &#8220;Water clarity variations in Jiaozhou Bay over 39 years based on satellite observations&#8221;. Estuarine, Coastal and Shelf Science 306, 108895 [DOI: 10.1016\/j.ecss.2024.108895]<\/li>\r\n<li>Gan, M., Lai, X., Guo, Y., Lu, Z., Chen, Y., <strong>Pan, S.<\/strong>, Pan, H. &amp; Chu, A. (2024). &#8220;Unravelling the spatiotemporal variation in the water levels of Poyang Lake with the variational mode decomposition model&#8221;. Hydrological Processes 38(7), e15239 [DOI: 10.1002\/hyp.15239]<\/li>\r\n<li>Gan, M., Lai, X., Guo, Y., Chen, Y., <strong>Pan, S<\/strong>. &amp; Zhang, Y. (2024). &#8220;Floodplain Lake Water Level Prediction with Strong River-Lake Interaction Using the Ensemble Learning LightGBM&#8221;. Water Resources Management [DOI: 10.1007\/s11269-024-03915-8]<\/li>\r\n<li>Gan, M., Chen, Y., <strong>Pan, S.<\/strong>, Lai, X., Pan, H., Wen, Y. &amp; Xia, M. (2024). &#8220;An improved machine learning-based model to predict estuarine water levels&#8221;. Ocean Modelling, 102376 [DOI: 10.1016\/j.ocemod.2024.102376]<\/li>\r\n<li>Yu, D., Jiang, G., Gao, H., Ren, L., Chen, C., Yang, L., Zhou, M. &amp;<strong> Pan, S.<\/strong> (2024). &#8220;Optimization of convolutional neural network with dual attention mechanism: Estimation of chlorophyll-a concentration in the Taiwan Strait using MODIS data&#8221;. Estuarine, Coastal and Shelf Science 300, 108729 [DOI: 10.1016\/j.ecss.2024.108729]<\/li>\r\n<li>Ji, H., Chen, S., Li, P., <strong>Pan, S.<\/strong>, Gong, X. &amp; Jiang, C. (2024). &#8220;Spatiotemporal variability of suspended sediment concentration in the coastal waters of Yellow River Delta: Driving mechanism and geomorphic implications&#8221;. Marine Geology 470, 107266 [DOI: 10.1016\/j.margeo.2024.107266]<\/li>\r\n<li>Xu, H., Hou, X., <strong>Pan, S.<\/strong>, Bray, M. &amp; Wang, C. (2024). &#8220;Socioeconomic impacts from coastal flooding in the 21st century China&#8217;s coastal zone: A coupling analysis between coastal flood risk and socioeconomic development&#8221;. Science of the Total Environment 917, 170187 [DOI: 10.1016\/j.scitotenv.2024.170187]<\/li>\r\n<li>Martelo Lopez, S., Christou, A., <strong>Pan, S.<\/strong>, Stoesser, T. &amp; Xie, Z. (2024). &#8220;A new ghost-cell\/level-set method for three-dimensional flows&#8221;. Journal of Computational Physics, 112710 [DOI: 10.1016\/j.jcp.2023.112710]<\/li>\r\n<li>Gan, M., Chen, Y., Pan, H., <strong>Pan, S.<\/strong>, Lai, X., Wen, Y., Xia, M. &amp; Zhang, Y. (2024). &#8220;Study on the spatiotemporal variation of the Yangtze estuarine tidal species&#8221;. Estuarine, Coastal and Shelf Science 298, 108637 [DOI: 10.1016\/j.ecss.2024.108637]<\/li>\r\n<li>Ran, B.C., Chen, S.L., <strong>Pan, S.Q.<\/strong>, Li, P., Ji, H.Y. &amp; Liu, Q.L. (2023). &#8220;Impacts of sea-access roads on wetland landscape dynamics in the Yellow River Delta front&#8221;. Ocean &amp; Coastal Management 244 [DOI: 10.1016\/j.ocecoaman.2023.106834]<\/li>\r\n<li>Yu, D., Qi, T., Yang, L., Zhou, Y., Zhao, C. &amp; <strong>Pan, S.<\/strong> (2023). &#8220;Monitoring water clarity using Landsat 8 imagery in Jiaozhou Bay, China from 2013 to 2022&#8221;. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 1-11 [DOI: 10.1109\/jstars.2023.3340438]<\/li>\r\n<li>Yu, D., Bian, X., Yang, L., Zhou, Y., An, D., Zhou, M., Chen, S. &amp; <strong>Pan, S.<\/strong> (2023). &#8220;Monitoring suspended sediment concentration in the Yellow River Estuary from 1984 to 2021 using landsat imagery and Google Earth Engine&#8221;. International Journal of Remote Sensing 44(10), 3122-3145 [DOI: 10.1080\/01431161.2023.2216849]<\/li>\r\n<li>Wang, Z., Fan, B., Yu, D., Fan, Y., An, D. &amp; <strong>Pan, S.<\/strong> (2023). &#8220;Monitoring the Spatio-Temporal Distribution of Ulva prolifera in the Yellow Sea (2020\u20132022) Based on Satellite Remote Sensing&#8221;. Remote Sensing 15(1), 157 [DOI: 10.3390\/rs15010157]<\/li>\r\n<li>L\u00fc, H., Zhu, J., Chen, Q., Li, M.,<strong> Pan, S.<\/strong> &amp; Chen, S. (2023). &#8220;Impact of estuarine reclamation projects on saltwater intrusion and freshwater resource&#8221;. Journal of Oceanology and Limnology 41(1), 38-56 [DOI: 10.1007\/s00343-021-1246-z]<\/li>\r\n<li>Huang, L., Chen, S., <strong>Pan, S.<\/strong>, Li, P. &amp; Ji, H. (2022). &#8220;Impact of Storm Surge on the Yellow River Delta: Simulation and Analysis&#8221;. Water 14(21) [DOI: 10.3390\/w14213439]<\/li>\r\n<li>Zhou, M., Gao, H., Yu, D., Guo, J., Zhu, L., Yang, L. &amp; <strong>Pan, S<\/strong>. (2022). &#8220;Analysis of the Anomalous Environmental Response to the 2022 Tonga Volcanic Eruption Based on GNSS&#8221;. Remote Sensing 14(19), 4847 [DOI: 10.3390\/rs14194847]<\/li>\r\n<li>An, D., Xing, Q., Yu, D. &amp; <strong>Pan, S.<\/strong> (2022). &#8220;A simple method for estimating macroalgae area under clouds on MODIS imagery&#8221;. Frontiers in Marine Science 9 [DOI: 10.3389\/fmars.2022.995731]<\/li>\r\n<li>Li, J., <strong>Pan, S.,<\/strong> Chen, Y., Yao, Y. &amp; Xu, C. (2022). &#8220;Assessment of combined wind and wave energy in the tropical cyclone affected region: An application in China seas&#8221;. Energy, 125020 [DOI: 10.1016\/j.energy.2022.125020]<\/li>\r\n<li>Tao, Z., Chen, Y., Chu, A., <strong>Pan, S<\/strong>., Gan, M., Chen, Y., Che, Z. &amp; Zhu, Y. (2022). \u201cThe Modified Method of Reanalysis Wind Data in Estuarine Areas\u201d. Water 14(11), 1826 [DOI: 10.3390\/w14111826]<\/li>\r\n<li>Zhou, Y., Yu, D., Cheng, W., Gai, Y., Yao, H., Yang, L. &amp; <strong>Pan, S<\/strong>. (2022). \u201cMonitoring multi-temporal and spatial variations of water transparency in the Jiaozhou Bay using GOCI data\u201d. Marine Pollution Bulletin 180, 113815 [DOI: 10.1016\/j.marpolbul.2022.113815]<\/li>\r\n<li>Saghi, H., Ning, D., <strong>Pan, S<\/strong>. &amp; Saghi, R. (2022). \u201cOptimization of a Dual-Baffled Rectangular Tank Against the Sloshing Phenomenon\u201d. Journal of Marine Science and Application 21(1), 116-127 [DOI: 10.1007\/s11804-022-00257-y]<\/li>\r\n<li>Ji, H., Chen, S., <strong>Pan, S.<\/strong>, Xu, C., Tian, Y., Li, P., Liu, Q. &amp; Chen, L. (2022). &#8220;Fluvial sediment source to sink transfer at the Yellow River Delta: Quantifications, causes, and environmental impacts&#8221;. Journal of Hydrology 608 [DOI: 10.1016\/j.jhydrol.2022.127622]<\/li>\r\n<li>Li, J., <strong>Pan, S.<\/strong>, Chen, Y. &amp; Gan, M. (2021). &#8220;The performance of the copulas in estimating the joint probability of extreme waves and surges along east coasts of the mainland China&#8221;. Ocean Engineering 237, 109581 [DOI: 10.1016\/j.oceaneng.2021.109581]<\/li>\r\n<li>Wagener, T., Savic, D., Butler, D., Ahmadian, R., Arnot, T., Dawes, J., Djordjevic, S., Falconer, R., Farmani, R., Ford, D., Hofman, J., Kapelan, Z., <strong>Pan, S.<\/strong> &amp; Woods, R. (2021). &#8220;Hydroinformatics education \u2013 the Water Informatics in Science and Engineering (WISE) Centre for Doctoral Training&#8221;. Hydrology and Earth System Sciences 25(5), 2721-2738 [DOI: 10.5194\/hess-25-2721-2021]<\/li>\r\n<li>Gan, M., <strong>Pan, S.<\/strong>, Chen, Y., Cheng, C., Pan, H. &amp; Zhu, X. (2021). &#8220;Application of the Machine Learning LightGBM Model to the Prediction of the Water Levels of the Lower Columbia River&#8221;. Journal of Marine Science and Engineering 9(5) [DOI: 10.3390\/jmse9050496]<\/li>\r\n<li>Zhou, Y., Yu, D., Yang, Q., <strong>Pan, S.<\/strong>, Gai, Y., Cheng, W., Liu, X. &amp; Tang, S. (2021). &#8220;Variations of Water Transparency and Impact Factors in the Bohai and Yellow Seas from Satellite Observations&#8221;. Remote Sensing 13(3), 514 [DOI: 10.3390\/rs13030514]<\/li>\r\n<li>Yang, L., Gao, H., Yu, D., <strong>Pan, S.,<\/strong> Zhou, Y. &amp; Gai, Y. (2021). \u201cDesign of a Novel Fully Automatic Ocean Spectra Acquisition and Control System Based on the Real-Time Solar Angle Analyzing and Tracking\u201d. IEEE Access 9, 4752-4768 [DOI: 10.1109\/access.2020.3048117]<\/li>\r\n<li>Gan, M., Pan, H., Chen, Y. &amp; Pan, S. (2021). &#8220;Application of the Variational Mode Decomposition (VMD) method to river tides&#8221;. Estuarine, Coastal and Shelf Science 261 [DOI: 10.1016\/j.ecss.2021.107570]<\/li>\r\n<li>Kuang, C., Ma, Y., Han, X., <strong>Pan, S.<\/strong> &amp; Zhu, L. (2020). \u201cExperimental Observation on Beach Evolution Process with Presence of Artificial Submerged Sand Bar and Reef\u201d. Journal of Marine Science and Engineering 8(12), 1019 [DOI: 10.3390\/jmse8121019]<\/li>\r\n<li>Chen, Y., Gan, M., <strong>Pan, S.,<\/strong> Pan, H., Zhu, X. and Tao, Z., (2020), &#8220;Application of auto-regressive (AR) analysis to improve short-term prediction of water levels in the Yangtze estuary.&#8221; Journal of Hydrology 590: 125386 [DOI: 10.1016\/j.jhydrol.2020.125386]<\/li>\r\n<li>Guo, J., Shi, L., <strong>Pan, S.<\/strong>, Ye, Q., Cheng, W., Chang, Y. and Chen, S., (2020), &#8220;Monitoring and evaluation of sand nourishments on an embayed beach exposed to frequent storms in eastern China.&#8221; Ocean &amp; Coastal Management 195: 105284 [DOI: 10.1016\/j.ocecoaman.2020.105284]<\/li>\r\n<li>Fan, Y., Chen, S., <strong>Pan, S.<\/strong> and Dou, S., (2020), &#8220;Storm-induced hydrodynamic changes and seabed erosion in the littoral area of Yellow River Delta: A model-guided mechanism study.&#8221; Continental Shelf Research: 104171 [DOI: 10.1016\/j.csr.2020.104171]<\/li>\r\n<li>Li, J., Pan, Y., Chen, Y. and <strong>Pan, S.<\/strong>, (2020), &#8220;Estimating Typhoon Waves based on the Modified ECMWF ERA-5 Wind Data.&#8221; Journal of Coastal Research 95(SP1): 1177-1182. DOI: [10.2112\/SI95-228.1]<\/li>\r\n<li>Qu, G., <strong>Pan, S.<\/strong>, Hu, C., Yao, S., Ding, B. and Liu, F., (2020), &#8220;Experimental study on the mechanisms of flow and sediment transport in a vegetated channel.&#8221; Proceedings of the Institution of Civil Engineers &#8211; Water Management 0(0): 1-43 [DOI: 10.1680\/jwama.19.00074]<\/li>\r\n<li>Ji, H., <strong>Pan, S.<\/strong> &amp; Chen, S. (2020). \u201cImpact of river discharge on hydrodynamics and sedimentary processes at Yellow River Delta\u201d. Marine Geology, 106210 [DOI: 10.1016\/j.margeo.2020.106210]<\/li>\r\n<li>Kiiza, C., <strong>Pan, S<\/strong>.-Q., Bockelmann-Evans, B. &amp; Babatunde, A. (2020). \u201cPredicting pollutant removal in constructed wetlands using artificial neural networks (ANNs)\u201d. Water Science and Engineering 13(1), 14-23 [DOI: 10.1016\/j.wse.2020.03.005]<\/li>\r\n<li>\u00c1lvarez, F., <strong>Pan, S.<\/strong>, Coelho, C. &amp; Baptista, P. (2020). \u201cModeling Shoreline Changes in Northwest Portugal Using a Process-Based Numerical Model: COAST2D\u201d. Journal of Waterway, Port, Coastal, and Ocean Engineering 146(4), 04020006 [DOI: 10.1061\/(ASCE)WW.1943-5460.0000563]<\/li>\r\n<li>Chen, Q., Zhu, J., Lyu, H., <strong>Pan, S.<\/strong> and Chen, S., 2019. Impacts of topography change on saltwater intrusion over the past decade in the Changjiang Estuary. Estuarine, Coastal and Shelf Science, 231: 106469 [DOI: 10.1016\/j.ecss.2019.106469]<\/li>\r\n<li>Kim, S., <strong>Pan, S.<\/strong> &amp; Mase, H. (2019). &#8220;Artificial neural network-based storm surge forecast model: Practical application to Sakai Minato, Japan&#8221;. Applied Ocean Research 91, 101871, [DOI: 10.1016\/j.apor.2019.101871]<\/li>\r\n<li>Reeve, D.E., Horrillo-Caraballo, J., Karunarathna, H. &amp; <strong>Pan, S.<\/strong> (2019). &#8220;A new perspective on meso-scale shoreline dynamics through data-driven analysis&#8221;. Geomorphology 341, 169-191, [DOI: 10.1016\/j.geomorph.2019.04.033]<\/li>\r\n<li>Gan, M., Chen, Y., <strong>Pan, S.<\/strong>, Li, J. &amp; Zhou, Z. (2019). &#8220;A Modified Nonstationary Tidal Harmonic Analysis Model for the Yangtze Estuarine Tides&#8221;. Journal of Atmospheric and Oceanic Technology 36(4), 513-525, [DOI: 10.1175\/jtech-d-18-0199.1]<\/li>\r\n<li>Chen, Y., Li, J., <strong>Pan, S<\/strong>., Gan, M., Pan, Y., Xie, D. &amp; Clee, S. (2019). &#8220;Joint probability analysis of extreme wave heights and surges along China&#8217;s coasts&#8221;. Ocean Engineering 177, 97-107, [DOI: 10.1016\/j.oceaneng.2018.12.010]<\/li>\r\n<li>Ji, H., Chen, S., <strong>Pan, S.<\/strong>, Xu, C., Jiang, C. &amp; Fan, Y., (2018). \u201cMorphological variability of the active Yellow River mouth under the new regime of riverine delivery\u201d. Journal of Hydrology 564: 329-341, [DOI: 10.1016\/j.jhydrol.2018.07.014]<\/li>\r\n<li>Hu, T., Mao, J., <strong>Pan, S<\/strong>., Dai, L., Zhang, P., Xu, D. &amp; Dai, H., (2018). &#8220;Water level management of lakes connected to regulated rivers: An integrated modeling and analytical methodology&#8221;. Journal of Hydrology 562: 796-808, [DOI: 10.1016\/j.jhydrol.2018.05.038]<\/li>\r\n<li>Li, J., <strong>Pan, S.<\/strong>, Chen, Y., Fan, Y.-M. &amp; Pan, Y. (2018). &#8220;Numerical estimation of extreme waves and surges over the northwest Pacific Ocean&#8221;. Ocean Engineering 153, 225-241, [DOI: 10.1016\/j.oceaneng.2018.01.076]<\/li>\r\n<li>Kareem, H.H. &amp; <strong>Pan, S.<\/strong> (2018). &#8220;Impact of Interface Soil Layer on Groundwater Aquifer Behaviour&#8221;. International Journal of Environmental, Chemical, Ecological, Geological and Geophysical Engineering 134, 87 \u2013 95<\/li>\r\n<li>Jiang, C., Chen, S., <strong>Pan, S.<\/strong>, Fan, Y. &amp; Ji, H. (2018). &#8220;Geomorphic evolution of the Yellow River Delta: Quantification of basin-scale natural and anthropogenic impacts&#8221;. CATENA 163, 361-377, [DOI: 10.1016\/j.catena.2017.12.041]<\/li>\r\n<li>He, W., Lian, J., Liu, F., Ma, C. &amp; <strong>Pan, S.<\/strong> (2018). &#8220;Experimental and numerical study on the thrust of a water-retaining curtain&#8221;. Journal of Hydroinformatics 20(2), 316-331, [DOI: 10.2166\/hydro.2017.095]<\/li>\r\n<li>Fan, Y., Chen, S., Zhao, B., <strong>Pan, S.<\/strong>, Jiang, C. &amp; Ji, H. (2018). &#8220;Shoreline dynamics of the active Yellow River delta since the implementation of Water-Sediment Regulation Scheme: A remote-sensing and statistics-based approach&#8221;. Estuarine, Coastal and Shelf Science 200, 406-419, [DOI: 10.1016\/j.ecss.2017.11.035]<\/li>\r\n<li>Mhashhash, A., Bockelmann-Evans, B. &amp; <strong>Pan, S.<\/strong> (2018). &#8220;Effect of hydrodynamics factors on sediment flocculation processes in estuaries&#8221;. Journal of Soils and Sediments 18, 3094-3103, [DOI: 10.1007\/s11368-017-1837-7]<\/li>\r\n<li>Lian, J., Qi, C., Liu, F., Gou, W., <strong>Pan, S.<\/strong> &amp; Ouyang, Q. (2017). &#8220;Air Entrainment and Air Demand in the Spillway Tunnel at the Jinping-I Dam&#8221;. Applied Sciences 7(9), 930, [DOI: 10.3390\/app7090930]<\/li>\r\n<li>Jiang, C., <strong>Pan, S.<\/strong> &amp; Chen, S. (2017). &#8220;Recent morphological changes of the Yellow River (Huanghe) submerged delta: Causes and environmental implications&#8221;. Geomorphology 293, 93-107, [DOI: 10.1016\/j.geomorph.2017.04.036]<\/li>\r\n<li>Reeve, D.E., Karunarathna, H., <strong>Pan, S.<\/strong>, Horrillo-Caraballo, J.M., R\u00f3\u017cy\u0144ski, G. &amp; Ranasinghe, R. (2016). &#8220;Data-driven and hybrid coastal morphological prediction methods for mesoscale forecasting&#8221;. Geomorphology 256, 49-67, [DOI: 10.1016\/j.geomorph.2015.10.016]<\/li>\r\n<li>Karunarathna, H., Horrillo-Caraballo, J., Burningham, H., <strong>Pan, S.<\/strong> &amp; Reeve, D.E. (2016). &#8220;Two-dimensional reduced-physics model to describe historic morphodynamic behaviour of an estuary inlet&#8221;. Marine Geology 382, 200-209, [DOI: 10.1016\/j.margeo.2016.10.014]<\/li>\r\n<li>Kim, S., Matsumi, Y., <strong>Pan, S.<\/strong> &amp; Mase, H. (2016). \u201cA real-time forecast model using artificial neural network for after-runner storm surges on the Tottori coast, Japan\u201d, Ocean Engineering 122, 44-53, [DOI: 10.1016\/j.oceaneng.2016.06.017]<\/li>\r\n<li><strong>Pan, S.<\/strong> &amp; Fairbairn, G. (2016). \u201cImpacts of submerged breakwaters on nearshore sediment transport\u201d, Journal of Coastal Research SI 75, 1212-1216, [DOI: 10.2112\/SI75-243.1]<\/li>\r\n<li>Li, J., Chen, Y., <strong>Pan, S.<\/strong>, Pan, Y., Fang, J. &amp; Sowa, D.M.A. (2016). \u201cEstimation of mean and extreme waves in the East China Seas\u201d, Applied Ocean Research 56, 35-47, [DOI: 10.1016\/j.apor.2016.01.005]<\/li>\r\n<li>Li, J., Chen, Y. &amp; <strong>Pan, S.<\/strong> (2016). \u201cModelling of extreme wave climate in China seas\u201d, Journal of Coastal Research SI 75, 522-526, [DOI: 10.2112\/SI75-105.1]<\/li>\r\n<li>Chen, Y., Li, J. &amp; <strong>Pan, S.<\/strong> (2016). \u201cDynamic analysis of riverbed evolution: Chengtong Reach of Yangtze Estuary\u201d, Journal of Coastal Research SI 75, 203-207, [DOI: 10.2112\/SI75-041.1]<\/li>\r\n<li><strong>Pan, S.-Q.<\/strong>, Fan, Y.-M., Chen, J.-M. &amp; Kao, C.-C. (2016). \u201cOptimization of multi-model ensemble forecasting of typhoon waves\u201d, Water Science and Engineering 9(1), 52-57, [DOI: 10.1016\/j.wse.2016.02.001]<\/li>\r\n<li>Alvarez, F. &amp; <strong>Pan, S.-Q.<\/strong> (2016). \u201cPredicting coastal morphological changes with EOF method\u201d, Water Science and Engineering 9(1), 14-20, [DOI: 10.1016\/j.wse.2015.10.003]<\/li>\r\n<li>Horrillo-Caraballo, J.M., Karunarathna, H., <strong>Pan, S.-Q.<\/strong> &amp; Reeve, D.E. (2016). \u201cPerformance of a data-driven technique to changes in wave height and its effect on beach response\u201d, Water Science and Engineering 9(1), 42-51, [DOI: 10.1016\/j.wse.2016.02.006]<\/li>\r\n<li>Kareem, H.H. &amp; <strong>Pan, S.<\/strong> (2016) \u201cModelling of Groundwater Resources for Al-Najaf City, Iraq\u201d. International Journal of Environmental, Chemical, Ecological, Geological and Geophysical Engineering 10(2), 166-177<\/li>\r\n<li>Reeve, D.E., Karunarathna, H., <strong>Pan, S.<\/strong>, Horrillo-Caraballo, J.M., R\u00f3\u017cy\u0144ski, G. &amp; Ranasinghe, R. (2016). \u201cData-driven and hybrid coastal morphological prediction methods for mesoscale forecasting\u201d, Geomorphology 256, 49-67, [DOI: 10.1016\/j.geomorph.2015.10.016]<\/li>\r\n<li>Jia, L., Wen, Y., <strong>Pan, S.<\/strong>, Liu, J.T. &amp; He, J. (2015). \u201cWave\u2013current interaction in a river and wave dominant estuary: A seasonal contrast\u201d, Applied Ocean Research 52, 151-166, [DOI: 10.1016\/j.apor.2015.06.004]<\/li>\r\n<li>Gonzalez-Santamaria, R., Zou, Q.-P. &amp; <strong>Pan, S.<\/strong> (2015), \u201cImpacts of a Wave Farm on Waves, Currents and Coastal Morphology in South West England\u201d, Estuaries and Coasts, Estuaries and Coasts 38, 159-172, [DOI: 10.1007\/s12237-013-9634-z]<\/li>\r\n<li>Zhou, J., <strong>Pan, S. <\/strong>&amp; Falconer, R.A. (2014), &#8220;Optimization modelling of the impacts of a Severn Barrage for a two-way generation scheme using a Continental Shelf model&#8221;, Renewable Energy 72, 415-427, [DOI: 10.1016\/j.renene.2014.07.036]\u00a0<\/li>\r\n<li>Zhou, J, <strong>Pan, S.<\/strong> &amp; Falconer, R. (2014), \u201cEffects of open boundary location on the far-field hydrodynamic impact of a Severn Barrage\u201d, Ocean Modelling 73, 19\u201329, [DOI: 10.1016\/j.ocemod.2013.10.006]<\/li>\r\n<li>Zhang, L., Chen, S., <strong>Pan, S.<\/strong>, Yi, L. &amp; Jiang, C. (2014), &#8220;Sediment variability and transport in the littoral area of the abandoned Yellow River Delta, northern Jiangsu&#8221;, J. Geogr. Sci. 24(4), 717-730, [DOI: 10.1007\/s11442-014-1115-1]<\/li>\r\n<li>Ren, Y., Lin, B., Sun, J. &amp; <strong>Pan, S. <\/strong>(2014), &#8220;Predicting water age distribution in the Pearl River Estuary using a three-dimensional model&#8221;, Journal of Marine Systems 139, 276-287, [DOI: 10.1016\/j.jmarsys.2014.07.005]<\/li>\r\n<li>Villatoro, M., Silva, R., M\u00e9ndez, F.J., Zanuttigh, B., <strong>Pan, S.<\/strong>, Trifonova, E., Losada, I.J., Izaguirre, C., Simmonds, D., Reeve, D.E., Mendoza, E., Martinelli, L., Formentin, S.M., Galiatsatou, P. &amp; Eftimova, P. (2014), &#8220;An approach to assess flooding and erosion risk for open beaches in a changing climate&#8221;, Coastal Engineering 87, 50-76, [DOI: 10.1016\/j.coastaleng.2013.11.009]<\/li>\r\n<li>Zou, Q.-P., Chen, Y., Cluckie, I., Hewston, R., <strong>Pan, S.<\/strong>, Peng, Z. &amp; Reeve, D. (2013), &#8220;Ensemble prediction of coastal flood risk arising from overtopping by linking meteorological, ocean, coastal and surf zone models&#8221;, Quarterly Journal of the Royal Meteorological Society 139(671 Part B), 298-313, [DOI: 10.1002\/qj.2078]<\/li>\r\n<li>Jia, L.-W., <strong>Pan, S.-Q<\/strong>. &amp; Wu, C.-Y. (2013), &#8220;Effects of the anthropogenic activities on the morphological evolution of the Modaomen Estuary, Pearl River Delta, China&#8221;, China Ocean Engineering 27(6), 795-808, [DOI: 10.1007\/s13344-013-0065-1]<\/li>\r\n<li>Ji, H., <strong>Pan, S.<\/strong> &amp; Han, X. (2013), &#8220;Effect of wastewater discharge on Jiangsu coastal environment, China&#8221;, Journal of Coastal Research SI 65, 54-59, [DOI: 10.2112\/SI65-010.1]<\/li>\r\n<li>Horrillo-Caraballo, J.M., Reeve, D.E., Simmonds, D., <strong>Pan, S.<\/strong>, Fox, A., Thompson, R., Hoggarth, S., Kwan, S.S.H. &amp; Greaves, D. (2013), &#8220;Application of a source-pathway-receptor-consequence (S-P-R-C) methodology to the Teign Estuary, UK.&#8221;, Journal of Coastal Research SI 65, 1939-1944, [DOI: 10.2112\/SI65-328.1]<\/li>\r\n<li><strong>Pan, S. <\/strong>(2011), &#8220;Modelling beach nourishment under macro-tide conditions&#8221;, Journal of Coastal Research, SI 64, 2063 &#8211; 2067<\/li>\r\n<li>Williams, B. G. &amp; <strong>Pan, S. <\/strong>(2011), &#8220;Storm-driven morphological evolution and sediment bypassing at a dynamic tidal inlet: A simulation-based analysis&#8221;, Journal of Coastal Research, SI 64, 1209-1213<\/li>\r\n<li>Gonzalez-Santamaria, R., Zou, Q-P. &amp; <strong>Pan, S. <\/strong>(2011), &#8220;Two-way coupled wave and tide modelling of a wave farm&#8221;, Journal of Coastal Research, SI 64, 1038-1042<\/li>\r\n<li>Zacharioudaki, A., <strong>Pan, S.<\/strong>, Simmonds, D., Magar, V. &amp; Reeve, D. E. (2011), &#8220;Future wave climate over the Western European Shelf.&#8221; Ocean Dynamics, 61(6), 807-827, [DOI: 10.1007\/s10236-011-0395-6]<\/li>\r\n<li>Reeve, D. E., Chen, Y., <strong>Pan, S.<\/strong>, Magar, V., Simmonds, D. &amp; Zacharioudaki, A. (2011), &#8220;An investigation of the impacts of climate change on wave energy generation: The Wave Hub, Cornwall, UK&#8221;, Renewable Energy, 36(9), 2404-2413, [DOI: 0.1016\/j.renene.2011.02.020]<\/li>\r\n<li><strong>Pan, S.<\/strong>, Reeve, D., Davidson, M., O&#8217;Connor, B., Vincent, C., Dolphin, T., Wolf, J., Thorne, P., Bell, P., Souza, A., Chesher, T., Johnson, H. &amp; Leadbetter, A. (2010), &#8220;Larger-scale morphodynamic impacts of segmented shore-parallel breakwaters on coasts and beaches: An overview of the LEACOAST2 project&#8221;, Shore &amp; Beach, 78(4) \/79 (1), 35-43<\/li>\r\n<li>Du, Y., <strong>Pan, S.<\/strong> &amp; Chen, Y. (2010), &#8220;Modelling the effect of wave overtopping on nearshore hydrodynamics and morphodynamics around shore-parallel breakwaters&#8221;, Coastal Engineering, 57(9), 812-826<\/li>\r\n<li>Greaves, D., Smith, G., Attrill, M., Belmont, M., Chadwick, A., Conley, D., Eccleston, A., Godley, B., Harrington, N., Hor, C. L., Hosegood, P., Johanning, L., Millar, D., <strong>Pan, S.<\/strong>, Reeve, D., Williams, J., Wolfram, J., Xu, J., Zobaa, A. &amp; Zou, Q. (2009), &#8220;Development of marine renewable energy \u2013 research, design, installation&#8221;, Maritime Engineering Journal, Proceedings of the Institution of Civil Engineers, 162(MA4), 187-196<\/li>\r\n<li>Malarkey, J., <strong>Pan, S.<\/strong>, Li, M., O&#8217;Donoghue, T., Davies, A. G. &amp; O&#8217;Connor, B. A. (2009), &#8220;Modelling and observation of oscillatory sheet-flow sediment transport&#8221;, Ocean Engineering, 36(11), 873-890<\/li>\r\n<li><strong>Pan, S.<\/strong>, Chen, Y., Wolf, J. &amp; Du, Y. (2009), &#8220;Modelling of waves in the Irish Sea: effects of oceanic wave and wind forcing&#8221;, Ocean Dynamics, 59(6), 827-836, [DOI: 10.1007\/s10236-009-0213-6]<\/li>\r\n<li>Williams, J., Masselink, G., Turner, I., Ferreira, O., Metje, N., Buscombe, D., Matias, A., Bradbury, A., Coates, L., Chapman, C., Thompson, C., Albers, T. &amp; <strong>Pan, S. <\/strong>(2009), &#8220;BARDEX (Barrier Dynamics Experiment): taking the beach into the laboratory&#8221;, Journal of Coastal Research, SI 56, 158-162<\/li>\r\n<li>Li, M., <strong>Pan, S.<\/strong> &amp; O&#8217;Connor, B. A. (2008), &#8220;A two-phase numerical model for sediment transport prediction under oscillatory sheet flows&#8221;, Coastal Engineering, 55(12), 1159-1173, [DOI: 10.1016\/j.coastaleng.2008.05.003]<\/li>\r\n<li>Bacon, J. C., Vincent, C. E., Dolphin, T. J., Taylor, J. A., <strong>Pan, S.<\/strong> &amp; O&#8217;Connor, B. A. (2007), &#8220;Shore parallel breakwaters in meso-tidal conditions: Tidal controls on sediment transport and their longer term regional impacts at Sea Palling, UK&#8221;, Journal of Coastal Research, SI 50, 369-373<\/li>\r\n<li>Li, M., Fernando, P. T., <strong>Pan, S.<\/strong>, O&#8217;Connor, B. A. &amp; Chen, D. (2007), &#8220;Development of a quasi-3D numerical model for sediment transport in the coastal region&#8221;, Journal of Hydro-environment Research, 1(2), 143-156, [DOI: 10.1016\/j.jher.2007.09.001]<\/li>\r\n<li><strong>Pan, S.<\/strong>, MacDonald, N., Williams, J., O&#8217;Connor, B. A., Nicholson, J. &amp; Davies, A. M. (2007), &#8220;Modelling the hydrodynamics of offshore sandbanks&#8221;, Continental Shelf Research, 27(9), 1264-1286 [DOI 10.1016\/j.csr.2007.01.007]<\/li>\r\n<li>Li, M., <strong>Pan, S.<\/strong> &amp; O&#8217;Connor, B. A. (2006), &#8220;Modelling coastal boundary layer flows over typical bed-forms&#8221;, Maritime Engineering Journal, Proceedings of the Institution of Civil Engineers, 159(1), 9-24, [DOI: 10.1680\/maen.2006.159.1.9] <strong>(Awarded the ICE Halcrow Prize, 2007) <\/strong><\/li>\r\n<li>van Rijn, L. C., Walstra, D. J. R., Grasmeijer, B., Sutherland, J., <strong>Pan, S.<\/strong> &amp; Sierra, J. P. (2003), &#8220;The predictability of cross-shore bed evolution of sandy beaches at the time scale of storms and seasons using process-based Profile models&#8221;, Coastal Engineering, 47(3), 295-327<\/li>\r\n<li>Williams, J. J., O&#8217;Connor, B. A., Arens, S. M., Abadie, S., Bell, P., Balouin, Y., Van Boxel, J. H., Do Carmo, A. J., Davidson, M., Ferreira, O., Heron, M., Howa, H., Hughes, Z., Kaczmarek, L. M., Kim, H., Morris, B., Nicholson, J., <strong>Pan, S.<\/strong>, Salles, P., Silva, A., Smith, J., Soares, C. &amp; Vila-Concejo, A. (2003), &#8220;Tidal inlet function: Field evidence and numerical simulation in the INDIA project&#8221;, Journal of Coastal Research, 19(1), 189-211<\/li>\r\n<li>Williams, J. J., MacDonald, N. J., O&#8217;Connor, B. A. &amp; <strong>Pan, S. <\/strong>(2000), &#8220;Offshore sand bank dynamics&#8221;, Journal of Marine Systems 24, 153-173, [DOI: 10.1016\/S0924-7963(99)00085-8]<\/li>\r\n<li>MacDonald, N. J., <strong>Pan, S.<\/strong>, Nicholson, J. &amp; O&#8217;Connor, B. A. (1997), &#8220;Numerical modelling of short to medium term offshore sand bank evolution&#8221;, Zbl. Geol. Palaont Teil I, 1093-1105<\/li>\r\n<li>Wang, D. &amp; <strong>Pan, S. <\/strong>(1991), \u201cExperimental investigation and numerical computation of wall jet under a gate\u201d, Journal of Hydrodynamics, Series A, 6 (SI), 19-28<\/li>\r\n<\/ul>\r\n","protected":false},"excerpt":{"rendered":"Zhao, M., Bai, X. &amp; Pan, S. (2026). \"Shifting streamflow regimes in the arctic: a multi-basin analysis using the VIC model\". Journal of Hydrology 675 Chen, Y., Qin, Z., Xu, [&hellip;]","protected":false},"author":900,"featured_media":0,"parent":23,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"categories":[],"tags":[],"class_list":["post-29","page","type-page","status-publish","hentry"],"jetpack_shortlink":"https:\/\/wp.me\/P7cOqM-t","jetpack_sharing_enabled":true,"meta_box":[],"_links":{"self":[{"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/pages\/29","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/users\/900"}],"replies":[{"embeddable":true,"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/comments?post=29"}],"version-history":[{"count":51,"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/pages\/29\/revisions"}],"predecessor-version":[{"id":2697,"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/pages\/29\/revisions\/2697"}],"up":[{"embeddable":true,"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/pages\/23"}],"wp:attachment":[{"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/media?parent=29"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/categories?post=29"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/blogs.cardiff.ac.uk\/shunqipan\/wp-json\/wp\/v2\/tags?post=29"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}