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Numerical study of the effect of geometry variation on the performance of innovative design wind speed enhancer

机译:几何变化对创新设计风速增强器性能影响的数值研究

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Low wind speeds is one of the challenges of wind energy in several countries. The innovative design of wind speed enhancer is one of many solution of those challenges. The wind speed enhancer using the principle of constriction where the speed will be increased at a narrower area. The innovative design wind speed enhancer is unique because of the wind turbines are installed close to the ground surface. The uniqueness can reduce the cost of installation, maintenance, and can reduce the possibility of damage caused by lightning. The proposed of wind speed enhancer design was shown to be successful in increasing the wind speed at venturi that reach 2.26 faster than wind speed at environment for variation of the funnel gap and 2.35 faster than wind speed at environment for variation of the throat diameter. This result is better than existing design. The results of this study is 21.5% better than existing design for variation of funnel gap and 24.2% better than existing design for variation of the throat diameter.
机译:在许多国家,低风速是风能的挑战之一。风速增强器的创新设计是这些挑战的众多解决方案之一。使用收缩原理的风速增强器,在较窄的区域将提高速度。创新设计的风速增强器是独特的,因为风力涡轮机安装在靠近地面的位置。独特性可以减少安装,维护的成本,并可以减少因雷击而造成损坏的可能性。所提出的风速增强器设计成功地提高了文丘里管的风速,对于漏斗间隙的变化,风速比环境风速快2.26,对于喉管直径的变化,风速比风速快2.35。此结果优于现有设计。这项研究的结果比漏斗间隙变化的现有设计好21.5%,比喉管直径变化的现有设计好24.2%。

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