文章摘要
焦 萱, 邱 勇, 龚爱民, 张华群.斜向进水消力井水力特性模拟研究Journal of Water Resources and Water Engineering[J].,2021,32(4):164-171
斜向进水消力井水力特性模拟研究
Numerical simulation study on hydraulic characteristics of inclined inflow stilling wells
  
DOI:10.11705/j.issn.1672-643X.2021.04.22
中文关键词: 圆形消力井  水力特性  斜向进水  侧向泄水  数值模拟
英文关键词: circular stilling well  hydraulic characteristics  inclined water intake  lateral discharge  numerical simulation
基金项目:云南省教育厅科学研究基金项目(2018Y068)
Author NameAffiliation
JIAO Xuan, QIU Yong, GONG Aimin, ZHANG Huaqun (云南农业大学 水利学院 云南 昆明 650201) 
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中文摘要:
      水利水电工程中的泄水建筑物出口往往正冲河道,圆形消力井可以很好地适应山区峡谷地形条件的变化,使下泄水流平顺归河。针对一定纵坡条件下,尾水出口与泄槽轴线呈非对称正交的圆形消力井内复杂的水力特性问题,采用有限域数值模拟计算的方法对比验证并补充了物理模型试验成果,进一步开展了沿空间射流方向的相关水力要素机理分析。研究表明:消力井内水流流态依次呈平面横向紊动扩散自由射流、主流动力自相似淹没射流和冲击射流、近壁面附着扩散旋滚水跃3个临界雷诺数分区演变过程;沿程最大流速变化符合试验半经验公式拟合规律且近似呈平面扩散分布;水体压强结构特征可分解为水平轴对称及竖直变幅下的叠加分布。
英文摘要:
      In water conservancy projects, the outlet of the discharging structure is often built to face the channel river. In order to make the tail water flow smoothly to the river, a circular stilling well is always built to adapt to the terrain condition changes of mountains and canyons. Aiming at the complex hydraulic characteristics of the stilling wells where the tailwater outlet and the chute axis are asymmetrically orthogonal under certain longitudinal slope conditions, the finite field numerical simulation method was used to compare and verify the mechanical results of the short series experiment supplemented with the resuts of physical model test. Then the mechanism of related hydraulic elements along the direction of the space jet was analyzed. The research shows that the flow pattern of the water flow in the well experienced the evolution process of three critical Reynolds number partitions, namely from plane transverse turbulent diffusion free jet to mainstream dynamic self similar submerged jet to impinging jet and near wall adhesive diffusion whirling water jump. The change of the maximum flow velocity in the process was consistent with the calculation result of the semi empirical formula and showed an approximate plane diffusion distribution. The structural characteristics of the water body pressure can be decomposed into the superimposed distribution under horizontal axis symmetry and vertical amplitude.
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