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- 33 KB (4,913 words) - 12:42, 11 December 2014
- 4 KB (613 words) - 16:17, 4 August 2014
- 3 KB (430 words) - 10:15, 11 December 2014
- 4 KB (726 words) - 16:33, 20 November 2014
- 50 KB (7,106 words) - 12:42, 14 September 2020
- * [[Wave run-up]]20 KB (2,427 words) - 17:21, 20 May 2024
- ...nimized and where horns are likely to develop) and antinodes (where [[wave run-up]] is maximized and bays are likely to be scoured). Edge wave predictions of11 KB (1,666 words) - 16:48, 7 October 2022
- 17 KB (2,405 words) - 11:54, 20 February 2024
- 63 KB (9,960 words) - 23:03, 28 April 2024
- 36 KB (5,524 words) - 21:38, 28 June 2019
- ...ournal of Geophysical Research: Oceans 121, 3121–3140</ref>. This larger run-up can lead to more [[overwash]]ing and flooding, and can therefore contribute ...tup, swash and runup. Coastal Engineering 53, 573-588</ref>. More accurate run-up predictions require taking the directional spread and frequency spread of t31 KB (4,773 words) - 15:34, 5 June 2024
- ...rt and harbour structures. Return levels of wave height, wave period, wave run-up and storm surge corresponding to defined return periods (complying with the25 KB (3,812 words) - 20:36, 18 September 2023
- 22 KB (3,117 words) - 23:14, 20 January 2024
- 29 KB (4,592 words) - 15:49, 5 June 2024
- 59 KB (9,016 words) - 11:16, 19 April 2024
- * Van der Meer, J.W. 2002.Technical Report Wave Run-up and Wave Overtopping at Dikes Publication. Technical Advisory Committee on15 KB (2,136 words) - 17:04, 23 May 2024
- 18 KB (2,830 words) - 16:57, 26 August 2022
- ...of beach nourishment, (iii) the bathymetry of the surf zone, and the wave run-up on coastal structures, and (iv) the assimilation of model computations and15 KB (2,177 words) - 13:39, 7 December 2023
- 25 KB (3,541 words) - 22:36, 5 November 2021
- 28 KB (4,152 words) - 12:34, 6 March 2022