首页> 外文会议>ASME international mechanical engineering congress and exposition >MODELLING AND EXPERIMENTAL VALIDATION OF A CONTROLLABLE ENERGY HARVESTER FOR PRESSURE REGULATION
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MODELLING AND EXPERIMENTAL VALIDATION OF A CONTROLLABLE ENERGY HARVESTER FOR PRESSURE REGULATION

机译:用于压力调节的可控能量收集器的建模和实验验证

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A pico-scale Francis turbine (or energy harvester) was designed, fabricated and tested for pressure regulation and power generation application. The prototype energy harvester contains pivotable guide vanes and a controllable load to change the runner speed. This allows the simultaneous variation of the pressure drop and the output power. A computational fluid dynamics (CFD) model of the turbine was developed in ANSYS CFX 18.1 to evaluate the turbine's sensitivity to geometric parameters such as the clearance gap size of the guide vane and its modularity. In conjunction to the CFD model, the electric generator's characteristics were used to predict the turbine performance at varying guide vane angles. The turbine was prototyped and tested using a custom-built experimental set-up. The pico-scale turbine, with a runner diameter of 1.42 inches, was able to output up to 100 W of electrical power at its rated flowrate of 29 GPM. By varying the guide vane angles, the pressure drop and the hydraulic efficiency varied between 3-22 psi and up to 60 % respectively. When validated against the experimental results, the CFD model showed a good agreement despite its low computational cost. The energy harvester's initial characteristics demonstrate its potential as a game changer in the control valve market.
机译:设计,制造和测试了微微级的弗朗西斯涡轮机(或能量收集器),用于压力调节和发电应用。原型能量收集器包含可枢转的导向叶片和可控制的负载,以改变流道速度。这允许压降和输出功率的同时变化。在ANSYS CFX 18.1中开发了涡轮机的计算流体动力学(CFD)模型,以评估涡轮机对几何参数(如导向叶片的间隙尺寸及其模块化)的敏感性。结合CFD模型,使用发电机的特性来预测不同导叶角度下的涡轮机性能。该涡轮机使用定制的实验装置进行了原型设计和测试。皮培级涡轮机的转轮直径为1.42英寸,在其额定流量为29 GPM的情况下,能够输出高达100 W的电能。通过改变导向叶片的角度,压降和液压效率分别在3-22 psi和高达60%之间变化。当根据实验结果进行验证时,尽管计算成本较低,但CFD模型仍显示出良好的一致性。能量采集器的初始特性证明了其在控制阀市场中的游戏规则改变者的潜力。

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