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首页> 外文期刊>Ocean Engineering >Effect of passive flow control on the aerodynamic performance, entropy generation and aeroacoustic noise of axial turbines for wave energy extractor
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Effect of passive flow control on the aerodynamic performance, entropy generation and aeroacoustic noise of axial turbines for wave energy extractor

机译:被动流量控制对波浪能提取器轴流式涡轮机气动性能,熵产生和空气声噪声的影响

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摘要

Wells turbine is the simplest type of an axial flow self-rectifying air turbine that can be used in conjunction with Oscillating Water Column (OWC) system in the extraction of ocean wave energy. It has been noticed that this turbine is subjected to early stall. As a consequence, several attempts for improving the energy extraction performance of Wells turbine within the stall regime have been investigated. One of these attempts was using an inclined slot as a passive flow control to obtain a delayed stall. In the following study, the impact of varying the angle for the slot on the performance of Wells turbine in the stall regime was investigated. Furthermore, the first law of thermodynamics and the entropy analysis has been used to examine the effect of the slot angle on the entropy generation features around the turbine blade. Moreover, Investigation of slot angle effect on the aerodynamics noise emission from Wells turbine airfoil during the normal operation and the stall regime is covered in this study. The blade of turbine with optimum angle of slot was investigated using the OWC based on actual data from the Egyptian Northern Coast. It was found that the optimum slot angle is 10 degrees clockwise which results in 3% improvement in the torque coefficient before the stall and 15% after the stall as compared to the 0 degrees slot. Otherwise, it gives a lower global entropy generation rate than the 0 degrees slot by 4% before the stall and 3% after the stall. Furthermore, using airfoil of blade turbine with a slot resulted in a reduction of aeroacoustic noise by -21.2% at the stall regime under oscillating flow conditions.
机译:Wells涡轮机是最简单的轴流自整流式空气涡轮机,可以与振荡水柱(OWC)系统结合使用来提取海浪能量。已经注意到,该涡轮机已经过早失速。结果,已经研究了在失速状态下改善韦尔斯涡轮机能量提取性能的几种尝试。这些尝试之一是使用倾斜槽作为被动流量控制来获得延迟的失速。在以下研究中,研究了在失速状态下改变槽缝角度对韦尔斯涡轮机性能的影响。此外,热力学第一定律和熵分析已用于检验槽角对涡轮叶片周围熵产生特征的影响。此外,本研究还涵盖了槽角对韦尔斯涡轮机翼型在正常运行和失速状态下空气动力噪声排放的影响的研究。根据埃及北部海岸的实际数据,使用OWC研究了具有最佳开槽角度的涡轮机叶片。发现最佳的槽角是顺时针方向的10度,与0度槽相比,失速前的转矩系数提高了3%,失速后的转矩系数提高了15%。否则,它使全局熵生成速率比0度时隙低,且失速之前为4%,失速之后为3%。此外,在带有振荡的流动条件下,在失速状态下使用带有槽的叶片式涡轮机的翼型可将空气声噪声降低-21.2%。

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