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首页> 外文期刊>Journal of Energy Engineering >Effective Basin-Blade Configurations of a Gravitational Water Vortex Turbine for Microhydropower Generation
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Effective Basin-Blade Configurations of a Gravitational Water Vortex Turbine for Microhydropower Generation

机译:微型水力发电引力水涡涡轮机的有效叶片叶片构造

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Among various microhydropower plants, gravitational water vortex power plants are emerging because of their simple installation, reduced setup time, and minimal maintenance cost. The methodology and the selection of a suitable basin and turbine blade combinations are yet to be explained by researchers. This study attempts to investigate the parameters that affect the formation and strength of a vortex for efficient power generation using an artificially induced air-core vortex. Computational fluid dynamics based on a two-phase flow analysis of the vortex formation at different basin parameters resulted in the selection of a suitable configuration of the basin. The basin was then used in the blade analysis with different blade shapes at various load conditions. An experimental setup was also fabricated for the validation of the numerical results, in which a close agreement was observed. The proposed methodology could be used to determine the plant specifications and the blade size and shape for various flow rates and heads. The role of vortex height in determining the performance of the gravitational water vortex turbine was explored. Among the four types of blades used in the study, cross-flow blades have shown the best efficiency for the same discharge and head conditions.
机译:在各种微型水力发电厂中,重力水涡流发电厂以其简单的安装,减少的设置时间和最小的维护成本而兴起。研究人员尚未解释合适的盆和涡轮叶片组合的方法和选择。这项研究试图调查影响涡流形成和强度的参数,以利用人工诱导的空心涡流有效发电。基于在不同盆地参数下的涡旋形成的两相流分析,计算流体动力学导致选择了合适的盆地构造。然后将该盆用于各种载荷条件下具有不同叶片形状的叶片分析中。还制作了用于验证数值结果的实验​​装置,其中观察到了密切的一致性。所提出的方法可用于确定工厂规格以及各种流量和扬程的叶片尺寸和形状。探索了涡旋高度在确定重力水涡旋涡轮机性能中的作用。在研究中使用的四种叶片中,横流叶片在相同的排放和扬程条件下显示出最佳效率。

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