Physical modeling of breaking wave induced pore pressure in a fine-sand seabed
文献类型:会议论文
作者 | Li CF(李畅飞); Yang LJ(杨鲤镜); Gao FP(高福平)![]() |
出版日期 | 2020-10 |
会议日期 | 2020-10-11 |
会议地点 | Shanghai, China |
页码 | 2669-2675. |
英文摘要 | Progressive waves may break while propagating towards shallow waters. Previous investigations on wave-induced seabed response mainly limit to regular waves, e.g., Airy linear waves and Stokes nonlinear waves. In this study, the breaking wave induced pore pressure in a fine-sand seabed was physically modelled in a wave flume. The breaking waves were generated by means of superimposing a series of large-wavelength waves onto the foregoing small-wavelength waves at a specified location. The vertical distribution of breaking wave induced pore pressure within the fine-sand seabed was measured with miniature pore pressure transducers for the three typical locations, i.e. at the rear, just under and in front of the wave breaking location. It was observed that before the event of wave breaking, the small-wavelength wave induced pore pressure was generally quite weak as expected. While the large-wavelength waves catching up with the small-wavelength ones, the superposed wave broke suddenly. The measured period of the pore pressure under the breaking waves is much larger than the wave period of the imposing large-wavelength waves. Nevertheless, the amplitude of the pore pressure under breaking waves gets smaller than that before the wave breaks; meanwhile, the values of wave height are greatly reduced after wave breaking. |
资助机构 | National Natural Science Foundation of China (Grant No. 11825205), the Strategic Priority Research Program (Type-B) of Chinese Academy of Sciences (Grant No. XDB22030000). |
会议录 | Proceedings of the 30th International Ocean and Polar Engineering Conference
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语种 | 英语 |
源URL | [http://dspace.imech.ac.cn/handle/311007/85670] ![]() |
专题 | 力学研究所_流固耦合系统力学重点实验室(2012-) |
推荐引用方式 GB/T 7714 | Li CF,Yang LJ,Gao FP. Physical modeling of breaking wave induced pore pressure in a fine-sand seabed[C]. 见:. Shanghai, China. 2020-10-11. |
入库方式: OAI收割
来源:力学研究所
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