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赵 洋, 李守义, 牛争鸣, 李奇龙, 贾 飞.洞内淹没射流及水平旋流梯级内消能的适用性研究水资源与水工程学报[J].,2017,28(6):168-172
洞内淹没射流及水平旋流梯级内消能的适用性研究
Study on the applicability of submerged jet and horizontal rotating cascade
  
DOI:10.11705/j.issn.1672-643X.2017.06.29
中文关键词:  淹没射流  水平旋流  梯级内消能工  旋流式消能  水力特性  泄洪洞
英文关键词:submerged jets  level rotary flow  cascade inner energy dissipator within the industry  gyrating-flow energy dissipation  hydraulic characteristics  spillway tunnel
基金项目:
作者单位
赵 洋, 李守义, 牛争鸣, 李奇龙, 贾 飞 西安理工大学 水利水电学院 陕西 西安 710048 
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中文摘要:
      为了适应高水头泄洪消能的需要,提出了一种新型的泄洪内消能工,即洞内淹没射流与水平旋流梯级内消能工。以流量1 200 m3/s、最大总作用水头150m为标准进行了该消能工的体型设计,然后对设计的消能工进行了1∶60.25几何比尺下的水工模型试验。结果表明:下游出现与明渠相似的多种水跃流态,淹没射流孔口系数0.5~0.56,起旋器喉口流量系数0.32~0.35之间;旋流空腔直径先增大后迅速减小最后平稳,在旋流阻塞孔口处空腔直径又迅速增大最后稳定;下游水位H小于2.0D时,下游旋流洞段压强相对变化幅度较小,H大于2.0D时,上下游水位对旋流洞压强影响较大;上游水位的变化不影响淹没射流速度相对变化,下游水位的变化,对水平旋流洞段影响较大;上游淹没射流消能、竖井消能、旋流洞消能与下游旋流阻塞扩散消能的消能率分别占总消能率的15%、10%、30%、10%,其中下游水平旋流洞段承担主要消能部分。
英文摘要:
      In order to adapt to the need of high head flood discharge, a new type of water outlet can be put forward, which is the submerged jet and horizontal cyclone. In this paper, the body design of the energy dissipation work was carried out with flow rate of 1200 m3/s and the maximum total effect of water head 150m. Then, a hydraulic model test was carried out on the designed energy dissipater under geometric scale of 1∶60.25. The results show that there are many kinds of water flow patterns similar to the open channels, and the water flow coefficient of the water jet is 0.5-0.56, and the flow coefficient of the rotator throat is between 0.32-0.35. The diameter of the swirl cavity firstly increases and then rapidly decreases finally stabilizes. and the cavity diameter of the cavity is rapidly increasing and finally becomes stable. When the downstream water level H is less than 2.0 D, the pressure of the downstream swirl tunnel is relatively small, and when H is greater than 2.0 D, and the upstream and downstream water level has a greater influence on the pressure of the cyclone hole. The change of upstream water level does not affect the relative change of submerged jet velocity, and the change of the downstream water level influences the horizontal rotation tunnel. Upstream submerged jet flow energy dissipation, vertical shaft energy dissipation and swirl tunnel energy dissipation, and the downstream cyclone blockage dissipation accounted for 15%, 10%, 30%, 10% of the total energy dissipation rate, of which the downstream horizontal swirling flow sections bear the main dissipating part.
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