陆家豪, 毛秀丽, 王玉川, 刘鹏, 张照. 潮汐能亲鱼型水轮机研发与数模验证[J]. 中国电机工程学报, 2023, 43(16): 6340-6347. DOI: 10.13334/j.0258-8013.pcsee.221024
引用本文: 陆家豪, 毛秀丽, 王玉川, 刘鹏, 张照. 潮汐能亲鱼型水轮机研发与数模验证[J]. 中国电机工程学报, 2023, 43(16): 6340-6347. DOI: 10.13334/j.0258-8013.pcsee.221024
LU Jiahao, MAO Xiuli, WANG Yuchuan, LIU Peng, ZHANG Zhao. Development and Numerical Test of Fish-friendly Turbine for Tidal Energy[J]. Proceedings of the CSEE, 2023, 43(16): 6340-6347. DOI: 10.13334/j.0258-8013.pcsee.221024
Citation: LU Jiahao, MAO Xiuli, WANG Yuchuan, LIU Peng, ZHANG Zhao. Development and Numerical Test of Fish-friendly Turbine for Tidal Energy[J]. Proceedings of the CSEE, 2023, 43(16): 6340-6347. DOI: 10.13334/j.0258-8013.pcsee.221024

潮汐能亲鱼型水轮机研发与数模验证

Development and Numerical Test of Fish-friendly Turbine for Tidal Energy

  • 摘要: 超低水头水力发电机组是国内外学者研发难点所在,潮汐能电站水轮机对生态的影响备受关注。针对鱼类经过水轮机时容易遭受以机械撞击、压力变化为诱因的损伤,提出一种结构简单、过流能力强、运行性能高的变螺距螺旋叶片式亲鱼型水轮机。以不同叶片数、螺距等结构参数为优化目标,以不同运行工况为研究主线,基于计算流体动力学(computational fluid dynamics, CFD)三维数模探究鱼类经流水轮机内环境特性。研究表明,双叶型变螺距转轮相对传统多叶片转轮鱼类过机率高(螺距变比1.2:0.9),适当加长转轮流道有益于降低流场压力梯度(3.9倍叶片区长),从而进一步减小鱼类过机机械损伤与压力损伤。综合理论设计与数模分析得到亲鱼型水轮机设计工况的效率为83.43%,流道内流最大压力梯度为−31kPa/s(< 遭受压力梯度损伤阈值−50kPa/s),负压区鱼类低压损伤概率为0.02%。

     

    Abstract: Development of hydraulic machines with ultra-low head is a research challenge to scholars around the world, especially for the turbines used in tidal energy power station, which have strong influence on the ecology. According to the damage suffered by fish in turbines, the mechanical impact and pressure change etc., are the main factors. A kind of fish-friendly turbine with spiral blades based on variable pitch is proposed in this work, which has the advantages of simple structure, large conveyance capacity, powerful operation performance etc. Based on three-dimensional simulations with Computational Fluid Dynamics (CFD), this work aims at studying different parameters like blade number and pitch, as well as different operating conditions, to investigate the fluid characteristics with fishes.. The results show that fish-friendly turbine with two spiral blades (Kl=1.2:0.9) has a higher fish survival rate than traditional tabular turbine with several blades, and properly lengthening the runner channel is beneficial to reduce the pressure gradient (the length of blade area increased 3.9 times). In addition, the mechanical damage of the new runner with two spiral blades to fish is minimum. Numerical simulations are used to verify design model. When the turbine is running under the design condition, its efficiency is 83.43%, the maximum value of pressure gradient is −31kPa/s (lower than the threshold of suffering from pressure gradient damage, and its magnitude is −50kPa/s). Moreover, pressure damage probability to fish is only 0.02%, and this range is below the pressure damage threshold level for fish.

     

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