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A list of all the posts and pages found on the site. For you robots out there, there is an XML version available for digesting as well.
Pages
Posts
Future Blog Post
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Blog Post number 4
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Blog Post number 3
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Blog Post number 2
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Blog Post number 1
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portfolio
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publications
Paper
Published in , 2014
Recommended citation: Marsooli, R., and W. Wu (2014). 3D Finite–Volume Model of Dam–Break Flow over Uneven Beds Based on VOF Method. Advances in Water Resources.
Paper
Published in , 2015
Recommended citation: Marsooli, R., and W. Wu (2015). 3D Numerical Modeling of Dam–Break Flows with Sediment Transport over Movable Beds. Journal of Hydraulic Engineering. 141(1).
Paper
Published in , 2016
Recommended citation: Marsooli, R., P.M. Orton, N. Georgas, and A.F. Blumberg (2016). Three¬–Dimensional Hydrodynamic Modeling of Coastal Flood Mitigation by Wetlands. Coastal Engineering. 111. doi.org/10.1016/j.coastaleng.2016.01.012.
Three–Dimensional Numerical Modeling of Dam–Break Flows with Sediment Transport over Movable Beds
Published in , 2016
Recommended citation: Marsooli, R., and W. Wu (2016). Closure to “Three–Dimensional Numerical Modeling of Dam–Break Flows with Sediment Transport over Movable Beds”. Journal of Hydraulic Engineering. doi.org/10.1061/(ASCE)HY.1943-7900.0001094.
Paper
Published in , 2017
Recommended citation: Marsooli, R., P.M. Orton, G.L. Mellor, N. Georgas, and A.F. Blumberg (2017). A Coupled Circulation–Wave Model for Numerical Simulation of Storm Tides and Waves. Journal of Atmospheric and Oceanic Technology. 34(7). doi.org/10.1175/JTECH-D-17-0005.1.
Paper
Published in , 2018
Recommended citation: Bakhtyar, R., P.M. Orton, R. Marsooli, and J.K. Miller (2018). Rapid wave modeling of severe historical extratropical cyclones off the Northeastern United States. Ocean Engineering. 159. doi.org/10.1016/j.oceaneng.2018.04.037.
Paper
Published in , 2019
Recommended citation: Lin, N., R. Marsooli, and B.A. Colle. (2019). Storm surge return levels induced by mid-to-late-twenty-first-century extratropical cyclones in the Northeastern United States. Climatic Change. 154 (1-2), 143-158. doi.org/10.1007/s10584-019-02431-8.
Paper
Published in , 2020
Recommended citation: Hu, P., J. Xie, W. Li, Z. He, R. Marsooli, W. Wu. (2020). A RANS numerical study of experimental swash flows and its bed shear stress estimation. Applied Ocean Research.100, 102145. doi.org/10.1016/j.apor.2020.102145.
Climate Change Impacts on Wind Waves Generated by Major Tropical Cyclones off the Coast of New Jersey, USA
Published in , 2021
Recommended citation: Marsooli, R., M. Jamous, and J.K. Miller. (2021). “Climate Change Impacts on Wind Waves Generated by Major Tropical Cyclones off the Coast of New Jersey, USA”. Frontiers in Built Environment: Climate Impact on Coastal Zones. 7, 774084. doi.org/10.3389/fbuil.2021.774084.
Dynamic Modeling of Sea-Level Rise Impact on Coastal Flood Hazard and Vulnerability in New York City’s Built Environment
Published in , 2021
Recommended citation: Wang, Y., and R. Marsooli. (2021). “Dynamic Modeling of Sea-Level Rise Impact on Coastal Flood Hazard and Vulnerability in New York City’s Built Environment”. Coastal Engineering. 169, 103980. doi.org/10.1016/j.coastaleng.2021.103980.
Paper
Published in , 2021
Recommended citation: Ayyad, M., M.R. Hajj, and R. Marsooli. (2021). Spatial Variation in Sensitivity of Hurricane Surge Characteristics to Hurricane Parameters. Journal of Engineering Mechanics. 147 (10), 04021070. doi.org/10.1061/(ASCE)EM.1943-7889.0001984.
Artificial Intelligence for Hurricane Storm Surge Hazard Assessment
Published in , 2022
Recommended citation: Ayyad, M., M. Hajj, and R. Marsooli. (2022). “Artificial Intelligence for Hurricane Storm Surge Hazard Assessment”. Ocean Engineering. 245. doi.org/10.1016/j.oceaneng.2021.110435
Benefits of Vegetation for Mitigating Wave Impacts on Vertical Seawalls
Published in , 2022
Recommended citation: Rosenberger, D., and R. Marsooli. (2022). “Benefits of Vegetation for Mitigating Wave Impacts on Vertical Seawalls”. Ocean Engineering. 250. doi.org/10.1016/j.oceaneng.2022.110974
Machine learning-based assessment of storm surge in the New York metropolitan area.
Published in , 2022
Recommended citation: Ayyad, M., M. Hajj, and R. Marsooli. (2022). “Machine learning-based assessment of storm surge in the New York metropolitan area.” Scientific Reports. 12:19215. doi.org/10.1038/s41598-022-23627-6
Trends in the Climatology of Winter Wind Wave Heights in a Back-Barrier Bay in Western North Atlantic Ocean
Published in , 2022
Recommended citation: El Safty, H., and R. Marsooli. (2022). “Trends in the Climatology of Winter Wind Wave Heights in a Back-Barrier Bay in Western North Atlantic Ocean”. Journal of Waterway, Port, Coastal, and Ocean Engineering. 148(3). doi.org/10.1061/(ASCE)WW.1943-5460.0000705
US community perspectives on coastal flooding.
Published in , 2022
Recommended citation: Elko, N., T.R. Briggs, R. Marsooli, P. Barrineau, C. Hapke, K. McKenna, J. Simm, M. Beyeler, M. Smith, C. Troy. (2022). “US community perspectives on coastal flooding.” Shore & Beach. 90. 3. doi.org/10.34237/1009032
A Multidecadal Assessment of Mean and Extreme Wave Climate Observed at Buoys off the U.S. East, Gulf, and West Coasts.
Published in , 2023
Recommended citation: Jamous, M., and R. Marsooli. (2023). “A Multidecadal Assessment of Mean and Extreme Wave Climate Observed at Buoys off the U.S. East, Gulf, and West Coasts.” J. Mar. Sci. Eng.: Physical Oceanography. 11(5), 916. doi.org/10.3390/jmse11050916
Climate change impact on hurricane storm surge hazards in New York/New Jersey Coastlines using machine-learning
Published in , 2023
Recommended citation: Ayyad, M., M.R. Hajj, R. Marsooli. 2023. “Climate change impact on hurricane storm surge hazards in New York/New Jersey Coastlines using machine-learning”. Nature Partner Journal Climate and Atmospheric Science. 6:88. https://doi.org/10.1038/s41612-023-00420-4
Contribution of coastal structures to wave force attenuation: A numerical investigation of fluid-structure interaction for partially perforated caissons.
Published in , 2023
Recommended citation: Aliyari, M., E. Amini, R. Attarnejad, R. Marsooli. (2023). “Contribution of coastal structures to wave force attenuation: A numerical investigation of fluid-structure interaction for partially perforated caissons.” Ocean Engineering. 280. doi.org/10.1016/j.oceaneng.2023.114745
Global sensitivity and uncertainty analysis of a coastal morphodynamic model using Polynomial Chaos Expansions.
Published in , 2023
Recommended citation: Jamous, M., R. Marsooli, and M. Ayyad. (2023). “Global sensitivity and uncertainty analysis of a coastal morphodynamic model using Polynomial Chaos Expansions.” Environmental Modelling & Software. 160, 105611. doi.org/10.1016/j.envsoft.2022.105611
Paper
Published in , 2023
Recommended citation: Amini, E., and R. Marsooli. (2023). ” Multi-scale Calibration of a Non-hydrostatic Numerical Model for Wave Runup Simulation.” Ocean Modeling. 285 (2). https://doi.org/10.1016/j.oceaneng.2023.115392
Physics-based Modeling of Climate Change Impact on Hurricane-Induced Coastal Erosion Hazards
Published in , 2023
Recommended citation: Jamous, M., R. Marsooli, and Jon Miller. (2023). “Physics-based Modeling of Climate Change Impact on Hurricane-Induced Coastal Erosion Hazards”. Nature Partner Journal Climate and Atmospheric Science. 6:86. https://doi.org/10.1038/s41612-023-00416-0
Recent advances and new frontiers in riverine and coastal flood modeling.
Published in , 2023
Recommended citation: Jafarzadegan, K., H. Moradkhani, F. Pappenberger, H. Moftakhari, P. Bates, P. Abbaszadeh, R. Marsooli, C. Ferreira, H.L. Cloke, F. Ogden, Q. Duan. (2023). “Recent advances and new frontiers in riverine and coastal flood modeling.” Reviews of Geophysics. 61(2). doi.org/10.1029/2022RG000788
A high-resolution coupled circulation-wave model for regional dynamic downscaling of water levels and wind waves in the western North Atlantic ocean.
Published in , 2024
Recommended citation: Al Azad, A.S.M.A., R. Marsooli. 2024. “A high-resolution coupled circulation-wave model for regional dynamic downscaling of water levels and wind waves in the western North Atlantic ocean.” Ocean Engineering. 311. https://doi.org/10.1016/j.oceaneng.2024.118869
A multi-faceted methodology for calibration of coastal vegetation drag coefficient
Published in , 2024
Recommended citation: Amini, E., R. Marsooli, M. Neshat. 2024. “A multi-faceted methodology for calibration of coastal vegetation drag coefficient”. Ocean Modelling. 190. https://doi.org/10.1016/j.ocemod.2024.102391
Assessing Beach–Seawall Hybrid Systems: A Novel Metric-Based Approach for Robustness and Serviceability.
Published in , 2024
Recommended citation: Amini, E., R. Marsooli, and B.M. Ayyub. (2024). “Assessing Beach–Seawall Hybrid Systems: A Novel Metric-Based Approach for Robustness and Serviceability.” ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering. 10(1). https://doi.org/10.1061/AJRUA6.RUENG-1176
Historical Change and Variability of Spectral Wind Wave Climate in the New
Published in , 2024
Recommended citation: Venolia, M., R. Marsooli, and J. Portilla-Yandún. 2024. “Historical Change and Variability of Spectral Wind Wave Climate in the New”. International Journal of Climatology. 44(5). https://doi.org/10.1002/joc.8408
Storm surges and extreme sea levels: Review, establishment of model intercomparison and coordination of surge climate projection efforts (SurgeMIP).
Published in , 2024
Recommended citation: Bernier, N M. Hemer, N. Mori, C.M. Appendini, O. Breivik, R. de Camargo, M. Casas-Prat, T.M. Duong, I.D. Haigh, T. Howard, V. Hernaman, O. Huizy, J.L. Irish, E. Kirezci, N. Kohno, J.-W. Lee, K.L. McInnes, E. MI Meyer, M. Marcos, R. Marsooli, A.M. Oliva, M. Menendez, S. Moghimi, S. Muis, J.A. Polton, W.J. Pringle, R. Ranasinghe, T. Saillour, G. Smith, M.G. Tadesse, V. Swail, S. Tomoya, E. Voukouvalas, T. Wahl, P. Wang, R. Weisse, J.J. Westerink, I. Young, Y.J. Zhang. 2024. “Storm surges and extreme sea levels: Review, establishment of model intercomparison and coordination of surge climate projection efforts (SurgeMIP).” Weather and Climate Extremes. 45. https://doi.org/10.1016/j.wace.2024.100689
Assessing the effects of climate change on the Gulf of Mexico wave climate using the COWCLIP framework and the PRECIS Regional Climate Model.
Published in , 2025
Recommended citation: Appendini, C.M., P. Ruiz-Salcines, R. Marsooli, R. Cerezo-Mota. 2025. “Assessing the effects of climate change on the Gulf of Mexico wave climate using the COWCLIP framework and the PRECIS Regional Climate Model.” Ocean Modelling. 194. 102486. https://doi.org/10.1016/j.ocemod.2024.102486
Coastal Erosion Hazards in Northwest Florida due to Extreme Wind Waves generated by Tropical Cyclones
Published in , 2025
Recommended citation: Al Azad, AS.M.A., R. Marsooli, M. Jamous, C.M. Appendini, P. Ruiz Salcines, R. Duran. 2025. “Coastal Erosion Hazards in Northwest Florida due to Extreme Wind Waves generated by Tropical Cyclones.” Coastal Engineering. 203. https://doi.org/10.1016/j.coastaleng.2025.104872
Characterizing vegetation effects on wave mitigation performance of resilient hybrid vegetation-seawall systems.
Published in , 2025
Recommended citation: Amini, E., R. Marsooli, B.M. Ayyub. 2025. “Characterizing vegetation effects on wave mitigation performance of resilient hybrid vegetation-seawall systems.” Environmental Research Communication. 7. 035014. https://doi.org/10.1088/2515-7620/adbc4d
Coastal Erosion Hazards in Northwest Florida due to Extreme Wind Waves generated by Tropical Cyclones.
Published in , 2025
Recommended citation: Al Azad, AS.M.A., R. Marsooli, M. Jamous, C.M. Appendini, P. Ruiz Salcines, R. Duran. 2025. “Coastal Erosion Hazards in Northwest Florida due to Extreme Wind Waves generated by Tropical Cyclones.” Coastal Engineering. 203. https://doi.org/10.1016/j.coastaleng.2025.104872
Hybrid vegetation-seawall coastal systems for wave hazard reduction: analytics for cost-effective design from optimized features.
Published in , 2025
Recommended citation: Amini, E., R. Marsooli, S. Moazeni, B.M. Ayyub. 2025. “Hybrid vegetation-seawall coastal systems for wave hazard reduction: analytics for cost-effective design from optimized features.” Natura Partner Journal Natural Hazards. 2, 22. https://doi.org/10.1038/s44304-025-00070-x
Redefining design wave conditions in the Gulf of Mexico under a changing climate.
Published in , 2025
Recommended citation: Appendini, C.M., P. Ruiz-Salcines, R. Duran, R. Marsooli, A.S.M.A Al Azad, K. Emanuel. 2025. “Redefining design wave conditions in the Gulf of Mexico under a changing climate.” Ocean Engineering. 334. https://doi.org/10.1016/j.oceaneng.2025.121685
Wave family climatology of the U.S. East and Gulf Coasts.
Published in , 2025
Recommended citation: Venolia, M., R. Marsooli. 2025. “Wave family climatology of the U.S. East and Gulf Coasts.” Applied Ocean Research. 158. https://doi.org/10.1016/j.apor.2025.104593
talks
Talk 1 on Relevant Topic in Your Field
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Conference Proceeding talk 3 on Relevant Topic in Your Field
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This is a description of your conference proceedings talk, note the different field in type. You can put anything in this field.
teaching
Teaching experience 1
Undergraduate course, University 1, Department, 2014
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Teaching experience 2
Workshop, University 1, Department, 2015
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