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Increasing the energy conversion efficiency for shrouded hydrokinetic turbines using experimental analysis on a scale model

机译:使用比例模型的实验分析提高带罩水动力涡轮机的能量转换效率

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摘要

The objective of the paper is to study the influence of certain shroud types suitable for horizontal axis hydrokinetic turbines using experimental testing in order to increase the energy conversion efficiency. The scale model of the shrouded hydrokinetic turbine is tested on a dedicated experimental bench for axial hydraulic turbine models. Two types of shrouds were tested in order to be compared: convergent shroud and divergent shroud. The rotor and shroud were made using 3D printer technology and were tested at a water velocity of 0.9 m/s on the closed-circuit testing bench. The testing facility allows the determination of the power extracted for each shroud at five distinct positions. Thus, the rotor can be moved within the shroud from inlet to outlet in order to establish the proper operating position. The mechanical power is measured using a torque transducer and an electromagnetic particle brake. The testing results will be analysed based on the variation of power curves obtained for different shroud types and operating positions. The optimum design and the best operating position will be recommended by comparing the testing result with the data collected from the bare turbine using the same rotor placed directly in free flow.
机译:本文的目的是通过实验测试来研究某些适用于水平轴水动涡轮机的护罩类型的影响,以提高能量转换效率。在轴向水力水轮机模型的专用实验台上测试了带罩的水动力水轮机的比例模型。为了比较,测试了两种类型的罩:收敛罩和发散罩。转子和护罩是使用3D打印机技术制成的,并在闭路测试台上以0.9 m / s的水速进行了测试。测试设备可以确定在五个不同位置为每个护罩提取的功率。因此,转子可以在护罩内从入口移动到出口,以建立适当的操作位置。使用扭矩传感器和电磁粒子制动器测量机械功率。将基于针对不同护罩类型和操作位置获得的功率曲线的变化来分析测试结果。通过将测试结果与使用直接置于自由流动中的同一转子的裸机收集的数据进行比较,将建议最佳设计和最佳操作位置。

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