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Numerical and experimental investigation of modified V-shaped turbine blades for hydrokinetic energy generation

机译:改性V形汽轮机叶片用于用于水力能量产生的数值和实验研究

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The Savonius rotor is one of the simple and cost-effective vertical axis drag type devices for hydropower generation. The main drawback of the Savonius hydrokinetic turbine is its low performance due to negative torque developed by returning blade profile. In this paper, the performance of modified V-shaped rotor blades with different V-angles ranging from 90 degrees to 40 degrees, by maintaining fixed edge length, arc radius and aspect ratio of 0.7 is investigated. The numerical analysis is carried out to estimate the optimum V-angle by maintaining 70 mm depth of water with an inlet velocity of 0.3090 m/s. The numerical study revealed that, for 80 degrees V-angle rotor blade profile, the maximum coefficient of power was found to be 0.2279 at a tip speed ratio of 0.9. This optimum V-angle model was used for experimental analysis to study the effect of aspect ratio ranging from 0.7 to 1.75 using top, middle and bottom plates by maintaining 140 mm depth of water and inlet velocity of 0.513 m/s. The rotor blade with two endplates and one middle plate with an aspect ratio of 1.75 has shown a significant increase of performance by 86.13% at a tip speed ratio of 0.86 as compared to turbine blade with two endplates. (C) 2021 Elsevier Ltd. All rights reserved.
机译:Savonius转子是用于水电生成的简单且经济高效的垂直轴拖动型器件之一。 Savonius水动力学的主要缺点是由于返回刀片轮廓而产生的负扭矩引起的低性能。本文采用固定边缘长度,电弧半径和宽高比为0.7的不同V形转子叶片的改性V形转子叶片的性能,从90度到40度。通过将70mm的水深保持70mm的水分,进行数值分析来估计最佳的V角,其入口速度为0.3090m / s。数值研究表明,对于80度V角转子叶片轮廓,发现最大功率系数为0.2279,尖端速比为0.9。该最佳V角模型用于实验分析,以使用顶部,中间和底板来研究宽高比范围为0.7至1.75的效果,通过保持140mm的水和入口速度为0.513 m / s。与具有1.75的纵横比为1.75的纵横比的转子叶片显示出与具有两个端板的涡轮叶片相比,以0.86的尖端速度比显着增加86.13%。 (c)2021 elestvier有限公司保留所有权利。

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