• ▶ 2008-2024年被中国情报信息研究所评价中心评为“中国科技核心期刊”
  • ▶ 2019-2024年连续三届被中国科学院文献情报中心中国科学引文数据库CSCD(核心库)收录
  • ▶ 2021、2023年入编北京大学图书馆《中文核心期刊要目总览》
  • ▶ 2020-2024连续四年入选《科技期刊世界影响力指数(WJCI)报告》
马 斌, 张子良, 缑文娟, 张 楠, 王天源.弗劳德数及雷诺数对泄洪洞高速水流掺气的影响水资源与水工程学报[J].,2024,35(6):110-120
弗劳德数及雷诺数对泄洪洞高速水流掺气的影响
Effect of Froude number and Reynolds number on aeration of high-speed flow in spillway tunnel
  
DOI:10.11705/j.issn.1672-643X.2024.06.11
中文关键词:  泄洪洞  高速水流  掺气浓度  弗劳德数  雷诺数  脉动压强
英文关键词:spillway tunnel  high-speed flow  aeration concentration  Froude number  Reynolds number  pulsating pressure
基金项目:国家自然科学基金项目(52379077); 云南省重点研发计划项目(202203AA080009); 天津市应用基础研究项目(22JCYBJC01180); 河北省自然科学基金项目(E2023402015)
作者单位
马 斌, 张子良, 缑文娟, 张 楠, 王天源 (天津大学 水利工程智能建设与运维全国重点实验室 天津 300072) 
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中文摘要:
      基于两河口电站深孔泄洪洞建立试验模型,研究弗劳德数及雷诺数对高速水流掺气的影响。研究结果表明:随着弗劳德数及雷诺数的增大,水流掺气效果增强,且同断面掺气浓度分别呈“C”形分布、“S”形分布及“一”字分布;将测量断面相对位置与断面掺气浓度分布规律对比得出,挟气区、耗散区、均匀掺气区的相对位置分别为0~1,1~1.5及1.5以后;水流底部掺气浓度沿程逐渐减小,平均掺气浓度沿程先增大后减小,且水流底部掺气浓度随着弗劳德数及雷诺数的增大而逐渐增大,平均掺气浓度随着弗劳德数的增大及雷诺数的减小而逐渐增大;还研究总结了空腔负压、通风井底部、空腔末端附近及水流脉动压强的优势频率范围,分析了空腔长度、保护长度、气水比及空腔负压指数与弗劳德数的变化关系。
英文摘要:
      Based on the model construction of the deep hole spillway of Lianghekou Hydropower Station, the influence of Froude number and Reynolds number on high-speed flow aeration is studied. The results show that with the increase of Froude number and Reynolds number, the aeration effect of water flow is enhanced, and with the variation of Froude number, the aeration concentration in the same section presents C-shaped, S-shaped and horizontal distribution, respectively. According to the comparison of the relative position of the measured section and the distribution law of the aeration concentration, the relative positions of the aeration carrying area, the dissipation area and the uniform aeration mixing area are 0-1,1-1.5 and after 1.5, respectively. The bottom aeration concentration gradually decreases along the course, while the average aeration concentration increases first and then decreases; the bottom aeration concentration gradually increases with the increase of Froude number and Reynolds number, and the average aeration concentration gradually increases with the increase of Froude number and the decrease of Reynolds number. This study summarized the dominant frequency range of the negative pressure of the cavity, the bottom of the ventilation shaft, the end of the cavity length and the pulsating pressure of the flow; and discussed the relationship between cavity length, protection length, air-water ratio, negative pressure index and Froude number.
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