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DualSPHysics modelling to analyse the response of Tetrapods against solitary wave. <i>Coast. Eng. 183</i>: 104315. <a href=\"https://dx.doi.org/10.1016/j.coastaleng.2023.104315\" target=\"_blank\">https://dx.doi.org/10.1016/j.coastaleng.2023.104315</a>","AutID":197762,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":367016,"RR":"<b>Suzuki, T.; Altomare, C.; Willems, M.; Dan, S.</b> (2023). Non-hydrostatic modelling of coastal flooding in port environments. <i>J. Mar. Sci. Eng. 11(3)</i>: 575. <a href=\"https://dx.doi.org/10.3390/jmse11030575\" target=\"_blank\">https://dx.doi.org/10.3390/jmse11030575</a>","AutID":158416,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":391252,"RR":"<b>Tagliafierro, B.; Karimirad, M.; Altomare, C.; Goeteman, M.; Martinez-Estevez, I.; Capasso, S.; Dominguez, J.M.; Viccione, G.; Gomez-Gesteira, M.; Crespo, A.J.C.</b> (2023). Numerical validations and investigation of a semi-submersible floating offshore wind turbine platform interacting with ocean waves using an SPH framework. <i>Appl. Ocean Res. 141</i>: 103757. <a href=\"https://dx.doi.org/10.1016/j.apor.2023.103757\" target=\"_blank\">https://dx.doi.org/10.1016/j.apor.2023.103757</a>","AutID":560175,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":361791,"RR":"<b>Altomare, C.; Dominguez, J.M.; Fourtakas, G.</b> (2022). Latest developments and application of SPH using dualSPHysics. <i>Computational Particle Mechanics 9(5)</i>: 863-866. <a href=\"https://dx.doi.org/10.1007/s40571-022-00499-1\" target=\"_blank\">https://dx.doi.org/10.1007/s40571-022-00499-1</a>","AutID":158416,"MonDate":null,"AnaDate":2022,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":355191,"RR":"<b>Briganti, R.; Musumeci, R.E.; Van der Meer, J.; Romano, A.; Stancanelli, Laura Maria; Kudella, M.; Akbar, R.; Mukhdiar, R.; Altomare, C.; Suzuki, T.; De Girolamo, P.; Besio, G.; Dodd, N.; Zhu, F.; Schimmels, S.</b> (2022). Wave overtopping at near-vertical seawalls: Influence of foreshore evolution during storms. <i>Ocean Eng. 261</i>: 112024. <a href=\"https://dx.doi.org/10.1016/j.oceaneng.2022.112024\" target=\"_blank\">https://dx.doi.org/10.1016/j.oceaneng.2022.112024</a>","AutID":397813,"MonDate":null,"AnaDate":2022,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":337258,"RR":"<b>Dominguez, J.M.; Fourtakas, G.; Altomare, C.; Canelas, R.B.; Tafuni, A.; Garcia-Feal, O.; Martinez-Estevez, I.; Mokos, A.; Vacondio, R.; Crespo, A.J.C.; Rogers, B.D.; Stansby, P.K.; Gómez-Gesteira, M.</b> (2022). DualSPHysics: from fluid dynamics to multiphysics problems. <i>Computational Particle Mechanics 9</i>: 867-895. <a href=\"https://hdl.handle.net/10.1007/s40571-021-00404-2\" target=\"_blank\">https://hdl.handle.net/10.1007/s40571-021-00404-2</a>","AutID":158416,"MonDate":null,"AnaDate":2022,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":362173,"RR":"<b>Lowe, R.J.; Altomare, C.; Buckley, M.L.; da Silva, R.F.; Hansen, J.E.; Rijnsdorp, D.P.; Dominguez, J.M.; Crespo, A.J.C.</b> (2022). Smoothed Particle Hydrodynamics simulations of reef surf zone processes driven by plunging irregular waves. <i>Ocean Modelling 171</i>: 101945. <a href=\"https://dx.doi.org/10.1016/j.ocemod.2022.101945\" target=\"_blank\">https://dx.doi.org/10.1016/j.ocemod.2022.101945</a>","AutID":158416,"MonDate":null,"AnaDate":2022,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":352566,"RR":"<b>Suzuki, T.; García-Feal, O.; Dominguez, J.M.; Altomare, C.</b> (2022). Simulation of 3D overtopping flow-object-structure interaction with a calibration-based wave generation method with DualSPHysics and SWASH. <i>Computational Particle Mechanics 9</i>: 1003-1015. <a href=\"https://dx.doi.org/10.1007/s40571-022-00468-8\" target=\"_blank\">https://dx.doi.org/10.1007/s40571-022-00468-8</a>","AutID":158416,"MonDate":null,"AnaDate":2022,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":392681,"RR":"<b>Suzuki, T.; Altomare, C.</b> (2022). Wave interactions with coastal structures. <i>Journal of Marine Science and Engineering</i>, 9(12). MDPI: Basel.  e-ISBN 978-3-0365-3041-3. 268 pp. <a href=\"https://dx.doi.org/10.3390/books978-3-0365-3041-3\" target=\"_blank\">https://dx.doi.org/10.3390/books978-3-0365-3041-3</a>","AutID":560175,"MonDate":2022,"AnaDate":null,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":362295,"RR":"<b>Altomare, C.; Gironella, X.; Crespo, A.J.C.</b> (2021). Simulation of random wave overtopping by a WCSPH model. <i>Appl. 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Eng. 8(10)</i>: 826. <a href=\"https://hdl.handle.net/10.3390/jmse8100826\" target=\"_blank\">https://hdl.handle.net/10.3390/jmse8100826</a>","AutID":158416,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":330048,"RR":"<b>Altomare, C.; Gironella, X.; Suzuki, T.; Viccione, G.; Saponieri, A.</b> (2020). Overtopping metrics and coastal safety: a case of study from the Catalan coast. <i>J. Mar. Sci. Eng. 8(8)</i>: 556. <a href=\"https://dx.doi.org/10.3390/jmse8080556\" target=\"_blank\">https://dx.doi.org/10.3390/jmse8080556</a>","AutID":158416,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":337735,"RR":"<b>Altomare, C.; Laucelli, D.B.; Mase, H.; Gironella, X.</b> (2020). Determination of semi-empirical models for mean wave overtopping using an evolutionary polynomial paradigm. <i>J. Mar. Sci. 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Eng. 8(8)</i>: 598. <a href=\"https://dx.doi.org/10.3390/jmse8080598\" target=\"_blank\">https://dx.doi.org/10.3390/jmse8080598</a>","AutID":197762,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":330053,"RR":"<b>Gruwez, V.; Altomare, C.; Suzuki, T.; Streicher, M.; Cappietti, L.; Kortenhaus, A.; Troch, P.</b> (2020). Validation of RANS modelling for wave interactions with sea dikes on shallow foreshores using a large-scale experimental dataset. <i>J. Mar. Sci. Eng. 8(9)</i>: 650. <a href=\"https://dx.doi.org/10.3390/jmse8090650\" target=\"_blank\">https://dx.doi.org/10.3390/jmse8090650</a>","AutID":343687,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":334164,"RR":"<b>Gruwez, V.; Altomare, C.; Suzuki, T.; Streicher, M.; Cappietti, L.; Kortenhaus, A.; Troch, P.</b> (2020). An inter-model comparison for wave interactions with sea dikes on shallow foreshores. <i>J. Mar. Sci. Eng. 8(12)</i>: 985. <a href=\"https://dx.doi.org/10.3390/jmse8120985\" target=\"_blank\">https://dx.doi.org/10.3390/jmse8120985</a>","AutID":397813,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":337912,"RR":"<b>Kisacik, D.; Stratigaki, V.; Wu, M.; Cappietti, L.; Simonetti, I.; Troch, P.; Crespo, A.; Altomare, C.; Dominguez, J.; Hall, M.; Gomez-Gesteira, M.; Canelas, R.B.; Stansby, P.</b> (2020). Efficiency and survivability of a floating oscillating water column wave energy converter moored to the seabed: an overview of the EsflOWC MaRINET2 database. <i>Water 12(4)</i>: 992. <a href=\"https://hdl.handle.net/10.3390/w12040992\" target=\"_blank\">https://hdl.handle.net/10.3390/w12040992</a>","AutID":343687,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":324995,"RR":"<b>Lashley, C.; Zanuttigh, B.; Bricker, J.; van der Meer, J.; Altomare, C.; Suzuki, T.; Roeber, V.; Oosterlo, P.</b> (2020). Benchmarking of numerical models for wave overtopping at dikes with shallow mildly sloping foreshores: Accuracy versus speed. <i>Environ. Model. Softw. 130</i>: 104740. <a href=\"https://dx.doi.org/10.1016/j.envsoft.2020.104740\" target=\"_blank\">https://dx.doi.org/10.1016/j.envsoft.2020.104740</a>","AutID":158416,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":325402,"RR":"<b>Lashley, C.; Bricker, J.D.; van der Meer, J.W.; Altomare, C.; Suzuki, T.</b> (2020). Relative magnitude of infragravity waves at coastal dikes with shallow foreshores: a prediction tool. <i>J. Waterway Port Coast. Ocean Eng. 146(5)</i>: 04020034. <a href=\"https://dx.doi.org/10.1061/(asce)ww.1943-5460.0000576\" target=\"_blank\">https://dx.doi.org/10.1061/(asce)ww.1943-5460.0000576</a>","AutID":158416,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":330063,"RR":"<b>Suzuki, T.; Altomare, C.; Yasuda, T.; Verwaest, T.</b> (2020). Characterization of overtopping waves on sea dikes with gentle and shallow foreshores. <i>J. Mar. Sci. Eng. 8(10)</i>: 752. <a href=\"https://dx.doi.org/10.3390/jmse8100752\" target=\"_blank\">https://dx.doi.org/10.3390/jmse8100752</a>","AutID":197762,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":337639,"RR":"<b>Tagliafierro, B.; Crespo, A.J.C.; González-Cao, J.; Altomare, C.; Sande, J.; Peña, E.; Gomez-Gesteira, M.</b> (2020). Numerical modelling of a multi-chambered low-reflective caisson. <i>Appl. Ocean Res. 103</i>: 102325. <a href=\"https://hdl.handle.net/10.1016/j.apor.2020.102325\" target=\"_blank\">https://hdl.handle.net/10.1016/j.apor.2020.102325</a>","AutID":158416,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":322881,"RR":"<b>Dominguez, J.M.; Crespo, A.J.C.; Hall, M.; Altomare, C.; Wu, M.; Stratigaki, V.; Troch, P.; Cappietti, L.; Gomez-Gesteira, M.</b> (2019). SPH simulation of floating structures with moorings. <i>Coast. Eng. 153</i>: 103560. <a href=\"https://dx.doi.org/10.1016/j.coastaleng.2019.103560\" target=\"_blank\">https://dx.doi.org/10.1016/j.coastaleng.2019.103560</a>","AutID":197842,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":311433,"RR":"<b>Dominguez, J.M.; Altomare, C.; González-Cao, J.; Lomonaco, P.</b> (2019). Towards a more complete tool for coastal engineering: solitary wave generation, propagation and breaking in an SPH-based model. <i>Coast. Eng. J. 61(1)</i>: 15-40. <a href=\"https://dx.doi.org/10.1080/21664250.2018.1560682\" target=\"_blank\">https://dx.doi.org/10.1080/21664250.2018.1560682</a>","AutID":381263,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":323246,"RR":"<b>González-Cao, J.; Altomare, C.; Crespo, A.J.C.; Dominguez, J.M.; Gómez-Gesteira, M.; Kisacik, D.</b> (2019). On the accuracy of DualSPHysics to assess violent collisions with coastal structures. <i>Comput. fluids 179</i>: 604-612. <a href=\"https://dx.doi.org/10.1016/j.compfluid.2018.11.021\" target=\"_blank\">https://dx.doi.org/10.1016/j.compfluid.2018.11.021</a>","AutID":381263,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":317466,"RR":"<b>Lowe, R.J.; Buckley, M.L; Altomare, C.; Rijnsdorp, D.P.; Yao, Y.; Suzuki, T.; Bricker, J.D.</b> (2019). Numerical simulations of surf zone wave dynamics using Smoothed Particle Hydrodynamics. <i>Ocean Modelling 144</i>: [1-22]. <a href=\"https://dx.doi.org/10.1016/j.ocemod.2019.101481\" target=\"_blank\">https://dx.doi.org/10.1016/j.ocemod.2019.101481</a>","AutID":197762,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":363034,"RR":"<b>Subramaniam, S.P.; Scheres, B.; Schilling, M.; Liebisch, S.; Kerpen, N.B.; Schlurmann, T.; Altomare, C.; Schüttrumpf, H.</b> (2019). Influence of convex and concave curvatures in a coastal dike line on wave run-up. <i>Water 11(7)</i>: 1333. <a href=\"https://dx.doi.org/10.3390/w11071333\" target=\"_blank\">https://dx.doi.org/10.3390/w11071333</a>","AutID":158416,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":311413,"RR":"<b>Verbrugghe, T.; Stratigaki, V.; Altomare, C.; Dominguez, J.M.; Troch, P.; Kortenhaus, A.</b> (2019). Implementation of open boundaries within a two-way coupled SPH model to simulate nonlinear wave-structure interactions. <i>Energies (Basel) 12(4)</i>: 697. <a href=\"https://dx.doi.org/10.3390/en12040697\" target=\"_blank\">https://dx.doi.org/10.3390/en12040697</a>","AutID":343687,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":323093,"RR":"<b>Verbrugghe, T.; Dominguez, J.M.; Altomare, C.; Tafuni, A.; Vacondio, R.; Troch, P.; Kortenhaus, A.</b> (2019). Non-linear wave generation and absorption using open boundaries within DualSPHysics. <i>Computer Physics Communications 240</i>: 46-59. <a href=\"https://dx.doi.org/10.1016/j.cpc.2019.02.003\" target=\"_blank\">https://dx.doi.org/10.1016/j.cpc.2019.02.003</a>","AutID":343687,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":323181,"RR":"<b>Wu, M.; Stratigaki, V.; Troch, P.; Altomare, C.; Verbrugghe, T.; Crespo, A.; Cappietti, L.; Hall, M.; Gomez-Gesteira, M.</b> (2019). Experimental study of a moored floating oscillating water column wave-energy converter and of a moored cubic box. <i>Energies (Basel) 12(10)</i>: 1834. <a href=\"https://dx.doi.org/10.3390/en12101834\" target=\"_blank\">https://dx.doi.org/10.3390/en12101834</a>","AutID":343687,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":303503,"RR":"<b>Altomare, C.; Tagliafierro, B.; Dominguez, J.M.; Suzuki, T.; Viccione, G.</b> (2018). 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Struct. 130</i>: 34-45. <a href=\"http://dx.doi.org/10.1016/j.compstruc.2013.10.011\" target=\"_blank\">dx.doi.org/10.1016/j.compstruc.2013.10.011</a>","AutID":158416,"MonDate":null,"AnaDate":2014,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":238724,"RR":"<b>Altomare, C.; Gironella, X.</b> (2014). An experimental study on scale effects in wave reflection of low-reflective quay walls with internal rubble mound for regular and random waves. <i>Coast. Eng. 90</i>: 51-63. <a href=\"https://dx.doi.org/10.1016/j.coastaleng.2014.04.002\" target=\"_blank\">https://dx.doi.org/10.1016/j.coastaleng.2014.04.002</a>","AutID":175602,"MonDate":null,"AnaDate":2014,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":229651,"RR":"<b>Altomare, C.; Gentile, G.M.</b> (2013). An innovative methodology for the re-naturalization process of a shingle beach. <i>J. Coast. Res. 65(special issue)</i>: 1456-1460. <a href=\"https://dx.doi.org/10.2112/SI65-246.1\" target=\"_blank\">https://dx.doi.org/10.2112/SI65-246.1</a>","AutID":197762,"MonDate":null,"AnaDate":2013,"PeerRev":1,"outputType":"1_A1","OpenAcc":0}],"PeerRevRef":[{"BRefID":329354,"RR":"<b>Altomare, C.; Findikakis, A.</b> (2020). Special issue on climate change adaptation and countermeasures in coastal environments. <i>Hydrolink</i>, 1. IAHR: [s.l.].  ","AutID":397813,"MonDate":2020,"AnaDate":null,"PeerRev":1,"outputType":"2_PeerRevRef","OpenAcc":0},{"BRefID":329365,"RR":"<b>Gironella, X.; Altomare, C.</b> (2020). Durcwave \"amending the design criteria of urbain defences in Leczs through composite-modelling of wave overtopping under climate change scenarios\", <b><i>in</i></b>: Altomare, C. <i>et al.</i> <i>Special issue on climate change adaptation and countermeasures in coastal environments. 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Foreshore evolution and hydraulic performance of a beach protected by a nearly vertical seawall, <b><i>in</i></b>: Henry, P.-Y. <i>et al.</i> <i>Trans-national Access in Hydralab+: Proceedings of the Joint User Meeting Bucharest, Romania, 22-23 May 2019.</i> pp. [1-7]","AutID":560175,"MonDate":null,"AnaDate":2019,"PeerRev":0,"outputType":"4_BookChap","OpenAcc":0},{"BRefID":319166,"RR":"<b>Streicher, M.; Kortenhaus, A.; Gruwez, V.; Suzuki, T.; Altomare, C.; Saponieri, A.; Pasquali, D.; Valentini, N.; Tripepi, G.; Celli, D.; Di Risio, M.; Aristodemo, F.; Damiani, L.; Cappietti, L.; Breteler, M.K.; Kaste, D.</b> (2019). Overtopped wave loads on walls (Walowa) – Numerical and physical modelling of large-scale experiments in the Delta Flume, <b><i>in</i></b>: Henry, P.-Y. <i>et al.</i> <i>Trans-national Access in Hydralab+: Proceedings of the Joint User Meeting Bucharest, Romania, 22-23 May 2019.</i> pp. 57-67","AutID":397813,"MonDate":null,"AnaDate":2019,"PeerRev":0,"outputType":"4_BookChap","OpenAcc":1},{"BRefID":319169,"RR":"<b>Streicher, M.; Kortenhaus, A.; Altomare, C.; Marinov, K.; Hughes, S.; Hofland, B.; Chen, X.; Cullis-Suzuki, S.; Suzuki, T.; Cappietti, L.</b> (2019). Non-repeatability, scale- and model effects in laboratory measurement of impact loads induced by an overtopped bore on a dike mounted wall, <b><i>in</i></b>: <i>ASME 2019 38th International Conference on Ocean, Offshore and Arctic Engineering - Volume 3: Structures, Safety, and Reliability.</i> pp. 10","AutID":197842,"MonDate":null,"AnaDate":2019,"PeerRev":0,"outputType":"4_BookChap","OpenAcc":0},{"BRefID":307852,"RR":"<b>Altomare, C.; Tagliafierro, B.; Suzuki, T.; Dominguez, J.M.; Crespo, A.J.C.; Briganti, R.</b> (2018). Relaxation zone method in SPH-based model applied to wave-structure interaction, <b><i>in</i></b>: <i>The 28th International Ocean and Polar Engineering Conference, 10-15 June, Sapporo, Japan.</i> pp. [1-8]","AutID":197843,"MonDate":null,"AnaDate":2018,"PeerRev":0,"outputType":"4_BookChap","OpenAcc":0},{"BRefID":294453,"RR":"<b>Altomare, C.; Viccione, G.; Tagliafierro, B.; Bovolin, V.; Dominguez, J.M.L.; Crespo, A.J.C.</b> (2018). Free-surface flow simulations with smoothed particle hydrodynamics method using high-performance computing, <b><i>in</i></b>: Ionescu, A. (Ed.) <i>Computational fluid dynamics: basic instruments and applications in science.</i> pp. 73-100. <a href=\"https://dx.doi.org/10.5772/intechopen.71362\" target=\"_blank\">https://dx.doi.org/10.5772/intechopen.71362</a>","AutID":175602,"MonDate":null,"AnaDate":2018,"PeerRev":0,"outputType":"4_BookChap","OpenAcc":0},{"BRefID":298325,"RR":"<b>Altomare, C.; Willems, M.; Verwaest, T.; Suzuki, T.; De Roo, S.; Vanneste, D.</b> (2018). 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