水动力学研究与进展B辑
水動力學研究與進展B輯
수동역학연구여진전B집
JOURNAL OF HYDRODYNAMICS
2014年
5期
762-769
,共8页
王军%施发义%陈胖胖%WU Peng%SUI Jueyi
王軍%施髮義%陳胖胖%WU Peng%SUI Jueyi
왕군%시발의%진반반%WU Peng%SUI Jueyi
ice jam thickness%secondary vortex%cohesive force%transverse distribution
River ice often forms in the cold regions of northern hemisphere which can lead to ice jams (or ice dams). Water level can be significantly raised due to ice jams. As a consequence, disastrous ice flooding may be resulted, such as the ice jam flooding in the Nechako River in Prince George in winter 2007-2008. In the present study, the equations describing the ice jam thickness in the transverse direction are derived. The impact of the secondary vortex is considered while the cohesive force within ice cubes is neglected in the model. The relationship between the parameterb and the total water depth is established based on the assumption that all other variables except the velocities are kept constant on the same cross section. By using the parameterb and the developed equations, the ice jam thickness in the transverse direction can be predicted. The developed model is used to simulate the ice jam thickness in the transverse direction at the Hequ Reach of the Yellow River in China. The simulated ice jam thicknesses agree well with the field measurements on different cross sections.