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泄洪洞中墩水翅现象的试验研究
引用本文:纪伟,吴建华,阮仕平.泄洪洞中墩水翅现象的试验研究[J].河海大学学报(自然科学版),2007,35(1):18-21.
作者姓名:纪伟  吴建华  阮仕平
作者单位:河海大学水利水电工程学院,江苏,南京,210098;河海大学水利水电工程学院,江苏,南京,210098;河海大学水利水电工程学院,江苏,南京,210098
摘    要:为了研究泄洪洞中墩的水翅问题,设计了2种中墩方案并进行了1∶40的水工模型试验.试验结果表明:(a)单洞结构尺寸较大的泄洪洞在进口段加设中墩后,由于水头高、流速大,会发生水翅冲击顶部和边墙的现象,并会对泄洪洞的安全运行构成威胁;(b)水翅现象与中墩的几何参数和水面下凹深度和长度有关,水翅长度随中墩长度的减小和水面下凹长度的增加而增加,水翅高度随中墩长度的减小和水面下凹深度的增加而增加;(c)水面下凹深度与中墩几何参数也有密切关系.

关 键 词:泄洪洞  中墩  水翅  水面下凹
文章编号:1000-1980(2007)01-0018-04
修稿时间:2005-11-01

Experimental study on water-wing phenomena for middle-piers of discharge tunnels
JI Wei,WU Jian-hua,RUAN Shi-ping.Experimental study on water-wing phenomena for middle-piers of discharge tunnels[J].Journal of Hohai University (Natural Sciences ),2007,35(1):18-21.
Authors:JI Wei  WU Jian-hua  RUAN Shi-ping
Institution:College of Water Conservancy and Hydropower Engineering, Hohai University, Nanjing 210098, China
Abstract:Two schemes for middle-piers were designed,and hydraulic model tests with the scale of 1:40 were performed to investigate the water-wing phenomena.Some conclusions are drawn as follows: the placement of middle-piers at the inlets of single-passage,large size discharge tunnels may lead to the occurrence of water-wings,which strike the top and side wall of the tunnels due to high water head and high flow velocity and threaten the operation of the discharge tunnels;the water-wing phenomenon is closely related to the geometric parameters of the middle-piers and the extent of concave-surfaces around the end of the middle-piers,and with the decrease of the length of the middle-piers and the increase of length of the concave-surfaces,the length of water-wings increases,while the height of water-wings increases as the length of the middle-piers decreases and the depth of the concave-surfaces increases;the extent of the concave-surfaces around the end of the middle-piers is also closely related to the geometric parameters of the middle-piers,and the longer the middle-piers,the greater the depth of the concave-surfaces.
Keywords:discharge tunnel  middle-pier  water-wing  concave-surface
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