Numerical Modelling of Interactions Between Non-Hydrostatic Free-Surface Flows and a Non-Moving Floa

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:lydiajiao
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
In this paper we present a depth-averaged semi-implicit non-hydrostatic model for simulating interactions between free-surface flows and a non-moving floating body.
其他文献
This article reviews a global water resource conservation projects in association with the growths of global population, economy, and energy consumption in the past several decades, and also evaluates
Fenhe plain drains the center of Shanxi province that is the major grain-producing area, and is also the national energy resource and heavy chemical industry base, therefore, drought in Fenhe plain is
In order to search for the best management of farmland water resources and the effective ways of non-point source pollution control, a field experiment was conducted in a typical irrigation district i
In cold and snowy regions, multi-purpose dams cover water use in summer by storing influent water generated in spring with melting of snow accumulated on mountains in winter.
This article presents experiences from two recent European research projects oriented at development and testing of web-based applications for information dissemination and involvement of stakeholders
Accurate river flow forecasting is an important asset for stream and reservoir management, being often translated into substantial social, economic and ecological gains.
This paper described relationships between precipitation and snow depth, elevation.Therefore, we conducted 4 years assimilation method during September 2005 to August 2009 in the upper Iwaki catchment
会议
Based on the multi-source remote sensing(RS) data of Landsat MSS/TM/ETM+ and HJ-1A, in this paper the dynamic variation of the Hulun Lake wetland area from 1975 to 2011 was revealed, and the driving f
Mathematical models for Integrated Water Resources Management (IWRM) have traditionally been based around sectoral-specific hydrologic science to support management through integration rather than as
To evaluate the function of sand dunes as a tsunami barrier and the effects on reinforcing sand dunewith a geogrid and/or covering the slopes and crest of a sand dunewith concrete panels on the streng