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Selection of Axial Hydraulic Turbines for Low-Head Microhydropower Plants

机译:低水头微型水力发电厂轴流水轮机的选择

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The creation of highly efficient hydroturbines for low-head microhydropower plants is considered. The use of uncontrolled (propeller) hydroturbines is a promising means of minimizing costs and the time for their recoupment. As an example, experimental results from Brno University of Technology are presented. The model axial hydraulic turbine produced by Czech specialists performs well. The rotor diameter of this turbine is 194 mm. In the design of the working rotor, ANSYS Fluent software is employed. Means of improving the efficiency of microhydropower plants by optimal selection of the turbine parameters in the early stages of design are outlined. The energy efficiency of the hydroturbine designed for use in a microhydropower plant may be assessed on the basis of the coefficient of energy utilization, which is a function of the total losses in all the pipeline elements and losses in the channel including the hydroturbine rotor. The limit on the coefficient of energy utilization in the pressure pipeline is the hydraulic analog of the Betz-Joukowsky limit, which is widely used in the design of wind generators. The proposed approach is experimentally verified at Moscow Power Engineering Institute. A model axial hydraulic turbine with four different rotors is designed for the research. The diameter of all four rotors is the same: 80 mm. The pipeline takes the form of a siphon. Working rotor R2, designed with parameter optimization, is characterized by the highest coefficient of energy utilization of the pressure pipeline and maximum efficiency. That confirms that the proposed approach is a promising means of maximizing the overall energy efficiency of the microhydropower plant.
机译:人们考虑为低水头微型水力发电站创建高效的水轮机。使用不受控制的(螺旋桨)水轮机是一种有希望的方法,可以最大程度地降低成本和缩短其回收时间。作为示例,给出了布尔诺工业大学的实验结果。捷克专家生产的模型轴向水力涡轮机运行良好。该涡轮机的转子直径为194毫米。在工作转子的设计中,使用了ANSYS Fluent软件。概述了在设计的早期阶段通过最佳选择涡轮机参数来提高微型水力发电厂效率的方法。可以基于能量利用系数来评估设计用于微型水力发电厂的水轮机的能效,该系数是所有管道元件的总损耗和包括水轮机转子在内的通道损耗的函数。压力管道中能量利用系数的极限是Betz-Joukowsky极限的水力模拟,它被广泛用于风力发电机的设计中。该提议的方法已在莫斯科电力工程学院进行了实验验证。设计了具有四个不同转子的模型轴向水力涡轮机进行研究。所有四个转子的直径都相同:80 mm。管道采用虹吸管的形式。通过参数优化设计的工作转子R2的特点是压力管道的能量利用率最高,效率最高。这证实了所提出的方法是使微型水力发电厂的整体能源效率最大化的有希望的手段。

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