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Cm-scale axial flow water turbines for autonomous flowmeters: an experimental study

机译:自主流量计的CM尺度轴流水轮机:实验研究

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This paper reports on the performances and the optimization of a 40 mm diameter water flow energy harvester based on an axial turbine (horizontal axis propeller) coupled to a customized permanent magnet generator. To the best of our knowledge, this work is one of the first comprehensive studies in the low dimensional and flow velocities ranges. The parameters of the propeller have been empirically optimized (lambda(D) = 1, B = 4 blades) by the means of experiments in a test-bench pipe at various flow rates from 1 to 9 m(3) h(-1). The best propeller design has been selected for its performances in terms of electrical power and pressure drop. A customized permanent magnet converter with ferromagnetic elements has been modeled, optimized with finite elements simulations and fabricated. This has enabled to increase the electrical power by 2.7 @ 1.5 m(3) h(-1) (3.2 mW) and up to 14.1 @ 9 m(3) h(-1) (490 mW) compared to a simple magnet-air coil converter. The figure of merit of our water flow harvester, which takes the electrical power and the pressure drops in the pipe into account, is greater than previously reported water flow energy harvesters, and corresponds to an overall mechanical-to-electrical conversion efficiency of 5.15%.
机译:本文报告了基于耦合到定制永磁发电机的轴向涡轮机(水平轴螺旋桨)的40mm直径水流能收割机的性能和优化。据我们所知,这项工作是低维和流速范围内的第一个全面研究之一。通过在从1至9m(3)H(-1)的各种流速下的试验台管中的实验方法,螺旋桨的参数已经经验优化(Lambda(D)= 1,B = 4叶片) 。在电力和压降方面,已选择最佳螺旋桨设计。具有用于铁磁元件的定制永磁转换器,已采用有限元模拟优化,并制造。这使得与简单的磁铁相比,这使得通过2.7 @ 1.5m(3)H(3)(3)小时(3)H(3)(490mW)增加电力。空气线圈转换器。我们的水流收割机的优点是考虑管道中的电力和压力下降,大于先前报告的水流量收割机,并且对应于总机械到电转换效率为5.15% 。

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