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水力发电学报 ›› 2025, Vol. 44 ›› Issue (4): 118-129.doi: 10.11660/slfdxb.20250412

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小水电机组的最优导叶开度变速运行控制策略研究

  

  • 出版日期:2025-04-25 发布日期:2025-04-25

Variable-speed operation control strategy for small hydropower generators based on optimal guide vane openings

  • Online:2025-04-25 Published:2025-04-25

摘要: 传统恒速运行的小水电机组在偏离设计工况运行时水能利用效率较低。通过分析水轮机综合特性曲线,发现了最优导叶开度下存在水能利用效率最高的最优单位转速的规律,提出了一种适应于水头变化区间较大的高效率运行的变速控制策略。建立了水轮机、调速器、发电机与变流器的变速小水电机组数学模型,设计了一种基于最优导叶开度的小水电机组变速运行闭环控制器,数值仿真结果表明:与恒速运行方案相比,变速方案在水头为28 m时,机组出力提高了2.39%;最后在藏潭桥水电站进行了测试验证,测试结果表明,该小水电机组存在最优导叶开度和最优转速,变速控制策略在高中低水头下均可提高发电效率。该变速控制策略实现简单,易于小水电行业推广,具有较大的实际工程意义。

关键词: 小水电, 变速运行, 最优导叶开度, 最优单位转速, 最优转速

Abstract: The efficiency of water energy utilization of a conventional fixed-speed small hydropower unit is often very low when its operation deviates from the design conditions. However, by examining the comprehensive characteristic curves of the turbine, a law that for a unit under the optimal guide vane opening and a certain optimal unit speed achieves the highest efficiency of water energy utilization has been found. And, a variable-speed control strategy was proposed to achieve such an efficiency, particularly for the condition of significant water head variations. This paper presents a mathematical model for simulations of a variable-speed small hydropower unit, incorporating the operation of the turbine, governor, generator and converter. A closed-loop variable-speed control system based on this new strategy was designed. Numerical simulation results indicate that compared to the fixed-speed operation scheme, the new scheme achieves a 2.39% increase in power output at the water head of 28 m. Field tests at the Zangtanqiao hydropower station verify that the small hydropower unit is successful in operating under its optimal guide vane opening and optimal rotational speed, and that the new control strategy improves power generation efficiency across high, medium, and low head conditions. The new strategy is easy to apply in the industry of small hydropower and of great significance to the real hydropower projects.

Key words: small hydropower, variable speed operation, optimal guide vane opening, optimal unit speed, optimal rotational speed

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