湖南电力 ›› 2024, Vol. 44 ›› Issue (4): 112-117.doi: 10.3969/j.issn.1008-0198.2024.04.016

• 经验与探讨 • 上一篇    下一篇

对称岔管结构与水力特性优化设计研究

申艳, 唐昌昌, 郭苗, 吴昊   

  1. 华北电力大学水利与水电工程学院,北京 102206
  • 收稿日期:2024-04-26 修回日期:2024-05-08 出版日期:2024-08-25 发布日期:2024-09-09
  • 基金资助:
    中央高校基本科研项目(2024MS065)

Optimized Design Study of Symmetrical Fork Pipe Structure and Hydraulic Characteristics

SHEN Yan, TANG Changchang, GUO Miao, WU Hao   

  1. College of Water Resources and Hydropower Engineering,North China Electric Power University, Beijing 102206, China
  • Received:2024-04-26 Revised:2024-05-08 Online:2024-08-25 Published:2024-09-09

摘要: 岔管结构广泛应用于各类水利工程中,其结构安全和水力性能都是优化设计的关键,两者之间相互影响,又会对水利工程的综合性能和运行安全产生重要的影响。对某抽水蓄能电站对称岔管结构与水力特性进行优化设计,采用三维有限元法对岔管结构初设方案和优化方案进行了应力分析,计算结果表明优化后岔管腰线一侧应力分布情况相较初设方案得到有效改善。在岔管体型结构优化的基础上,分别对不同分岔角与肋宽比岔管的水力模型进行发电和抽水工况下的三维流场计算分析,通过正交优化策略确定了所有工况下内部流动分布较优、水头损失较小的分岔角与岔管肋宽比。研究发现,结构受力与水力特性之间并不是单纯的正相关关系,最终基于正交优化思想确定了满足结构安全与水力性能的最佳分岔角为75°、肋宽比为0.30。

关键词: 结构计算, 水力性能, 正交优化, 岔管

Abstract: Fork pipe structure is widely used in all kinds of water conservancy projects, its structural safety and hydraulic performance are the key to optimize the design, and both of them interact with each other, which will have an important impact on the comprehensive performance and operational safety of water conservancy projects. In this paper, the symmetrical fork pipe structure and hydraulic characteristics of a pumping and storage power station are optimized and designed, and the three-dimensional finite element method is used to carry out stress analysis on the initial design and optimization scheme of the fork pipe structure, and the calculation results show that the stress distribution on the waistline side of the fork pipe after optimization has been effectively improved compared with the initial design scheme. Based on the optimization of the turnpipe structure, the hydraulic model of the turnpipe with different bifurcation angles and rib width ratios is used to calculate and analyze the three-dimensional flow field under power generation and pumping conditions, and the bifurcation angles and rib width ratios of the turnpipe with better internal flow distributions and smaller head losses under all conditions are determined by orthogonal optimization strategy. It is found that the relationship between structural forces and hydraulic properties is not purely positive, and the optimal bifurcation angle of 75° and the rib width ratio of 0.30 are finally determined based on the orthogonal optimization idea to satisfy the structural safety and hydraulic performance.

Key words: structural calculation, hydraulic performance, orthogonal optimization, forked pipe

中图分类号: