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Fluidic harvester under Train of Frozen Boxcars (TFB) loading: A parametric study

机译:在冷冻箱车训练(TFB)装载下的流体收割机:参数学研究

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The Train of Frozen Boxcars (TFB) model has been developed for a continuous piezoelectric cantilever fluidic harvester to simplify the effective one-way interaction between the fluid and the structure for certain flows. The TFB model treats the force due to vortex or turbulent flow as a series of boxcars of different amplitudes, widths and separations advected with a constant velocity over a piezoelectric beam. In this paper, the effect of five parameters, namely the number, amplitude, width, spatial separation and advection speed of the boxcars in the TFB forcing model, is studied for four different forcing scenarios. It has been observed that an increase in the amplitude or advection velocity of the boxcars leads to an increase in the power output, whereas a saturation limit in the power output is observed with an increase in the width or number of boxcars. More importantly, however, it is concluded that the separation between boxcars is the determining factor in maximizing or minimizing the power output from the harvester.
机译:已经为连续压电悬臂流体收割机开发了冷冻箱体(TFB)模型的火车,以简化流体与某些流动结构之间的有效单向相互作用。 TFB模型由于涡流或湍流而对不同幅度,宽度和分离的一系列横向电流进行涡流,并且在压电束上的恒定速度方面的速度和分离。在本文中,研究了TFB强制模型中Boxcars的五个参数,即数量,幅度,宽度,空间分离和平面分离和平面速度的效果,用于四种不同的迫使场景。已经观察到,箱子的幅度或平坦速度的增加导致功率输出的增加,而电源输出中的饱和极限随着箱子的宽度或数量的增加而被观察到。然而,更重要的是,得出结论,Boxcars之间的分离是最大化或最小化来自收割机的功率输出的决定因素。

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