Karakteristik Aliran Turbin Hidrokinetik Savonius Susunan Inward dan Outward Overlap dengan Dua Semicircular Blade-Flat Leading Edge

Khoiri Rozi
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Abstract

This current investigation was conducted to study the flow field through Savonius hydrokinetic turbine with flat blade leading edge. The influences of blade thickness, overlap, and freestream velocity were simulated using ANSYS FLUENT with k-w SST model. The results show that the flow structure changes with increasing turbine rotation flow complexity is formed at a larger rotation angle. Both inward and outward overlap lead to a more complex pattern of the flow. The coefficient of torque and power for thin blades is higher than for thicker turbine blades and its values increase with the increase in the freestream velocity.
具有两个半圆形叶片-平前缘的向内和向外重叠布置的萨沃尼乌斯水动能涡轮机的流动特性
本次研究是为了研究流经具有扁平叶片前缘的萨沃尼乌斯水动能涡轮机的流场。使用 ANSYS FLUENT 和 k-w SST 模型模拟了叶片厚度、重叠和自由流速度的影响。结果表明,随着涡轮机旋转角度的增大,流动结构也会发生变化。向内和向外的重叠都会导致更复杂的流动模式。薄叶片的扭矩和功率系数高于厚叶片,其值随自由流速度的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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