Invited lecture: Integrated Model for River Embankment Failure due to Overtopping

来源 :35th IAHR World Congress(第三十五届国际水利学大会) | 被引量 : 0次 | 上传用户:msn78160
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
A numerical model which can compute the erosion of river embankment by flow overtopping considering the effects of shear strength due to suction on an unsaturated sediment bed had already been developed in our previous research.
其他文献
Monodispersed cube-like α-Fe2O3 with hollow interior structure was synthesized successfully by a facile hydrothermal method independent of surfactants or templates.The resultant hematite nanostructure
A simple and high yield room-temperature solid-state method was employed for the synthesis of Bi2S3 nanosheets and nanorods.The chemical composition, morphology and microstructure features of the obta
The ZnS nanoparticles were successfully obtained by a simple room-temperature solid-state method, which has the virtues of simplicity, low cost, high yield and low environmental impact.X-ray diffracti
Heavy precipitation during typhoon season in Taiwan often causes the fiver flow discharge changed rapidly.Traditional flow measurement methods by humans are time-consuming and highly dangerous, so a n
The central bar is the shoal which located in the central of the fiver.It generally features with enlarged river width and unstable bed geometry under the fluctuating water level and changing water/se
Tocoma Project on the Caroní River located at South-eastern Venezuela, currently under construction, will add 2160 MW to the Venezuelan electrical system in 2014.
This study proposes an innovative optimization procedure to achieve optimal control of flows and sediment transport in an alluvial river or a watershed to control both flood water stages and morpholog
The Mississippi River and its delta have a history of experiencing periodic catastrophic flooding conditions.During the most recent event in 2011, levees were breached at many locations to prevent the
The water levels were measured during flooding at four cross sections of the main channel of the Edogawa River and its floodplains to clarify whether they are uniform as is generally assumed.
The variation of runoff and sediment load of the Yellow River has suffered dramatic change under the impacts of the climate change and human activities.