Wave flume experiments on dynamics of the bottom boundary layer in silty seabed

来源 :海洋学报(英文版) | 被引量 : 0次 | 上传用户:fuyaomama
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
The objectives of this study are carried out a series of controlled large wave flume experiments using fine-grained sediment from the Huanghe River Delta, exploring the complete sequence of sediment behavior in the bottom boundary layer (BBL) during wave-induced liquefaction. The results show that: (1) The BBL in silty seabed is exposed to a progressive wave, goes through a number of different stages including compaction before liquefaction, sediment liquefaction, and compaction after liquefaction, which determines the range and thickness of BBL. (2) With the introduction of waves, first, the sediment surface has settled by an amount S (S=1–2 cm) in the course of wave loadings with an insufficient accumulation of pore water pressure. And a thin high concentration layer formed the near-bed bottom. (3) Once the liquefaction sets in, the liquefied sediment with an ‘orbital motion’ and the sub-liquefied sediment form a two-layer-sediment region. The range of BBL extends downwards and stopped at a certain depth, subsequently, develops upwards with the compaction process. Meanwhile, resuspended sediments diffuse to the upper water column. (4) During the dynamics process of the BBL beneath progressive waves, the re-suspended sediment increment ranked as sediment liquefaction > erosion before liquefaction > compaction after liquefaction.
其他文献
文章从以下三个实验,就线粒体融合蛋白2在绒毛组织中的表达及其与胚胎发育相关性的探讨进行了综述。  实验一Mfn2在正常早孕妇女及不明原因胚胎停止发育者绒毛组织中的定位
面对新冠疫情期间“停课不停教、停课不停学”的举措,本文以医学免疫学线上教学为例,探讨了在新冠病毒疫情期间“完全线上”教学的实施情况、疫情防控背景下科学人文精神的培