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Roadside Vertical Axis Wind Turbine (VAWT): An Effective Evolutionary Design for Australian Highway Commuters with Minimum Dynamic Stall

机译:路边垂直轴风力涡轮机(VAWT):具有最小动态摊位的澳大利亚公路通勤者有效的进化设计

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There are multiple approaches of design for Vertical Axis Wind Turbines (VAWT) that have been studied by engineers and leaps have been made in high performing innovations. By harnessing the energy from these wind turbines, the problem of roadside lights shortage can be solved. This can help to prevent the accidents while providing clean energy. The importance of coastal areas like Australian beaches regarding wind turbines cannot be neglected as a higher number of people like to live near coastal vicinity. Also, most of the freeways in Australia expand across the sea. In this paper, one such design has been analyzed to implement across the highways. But still with many advancements in technology, an immense gap is present in the research of implementation of VAWTs. The design discussed in the current study is a VAWT which can be installed on the side of the highway roads to provide clean and cheap energy for illuminating the roads. Computational Fluid Dynamics (CFD) was conducted on the blades of the turbine to analyze its performance under operating conditions. Furthermore, the paper elaborates the generation of drag and lift on the blades of the turbine. A wind speed of 60 km/h just produced 6.1 N force on the turbine blades as a result of drag. The cost analysis showed the cheap production of such mechanism that can provide longer service when installed.
机译:通过工程师研究的垂直轴风力涡轮机(VAWT)有多种设计方法,并且已经在高性能创新中进行了突飞猛进。通过利用这些风力涡轮机的能量,可以解决路边灯短缺问题。这有助于防止事故同时提供清洁能量。沿海地区像澳大利亚海滩的重要性,因为澳大利亚风力涡轮机不能被忽视,因为更多的人喜欢住在沿海附近。此外,澳大利亚的大多数高速公路拓展了海面。在本文中,已经分析了一种这样的设计以在高速公路上实施。但仍然在技术方面存在许多进步,巨大的差距存在于盗贼实施的研究中。目前研究中讨论的设计是一种VAWT,可以安装在公路道路的一侧,为照明道路提供清洁和廉价的能量。在涡轮机的叶片上进行计算流体动力学(CFD),以分析其在操作条件下的性能。此外,本文阐述了涡轮机叶片上的拖曳和升降机的产生。由于拖动而在涡轮机叶片上产生60 km / h的风速。成本分析表明,这种机制的廉价生产可以在安装时提供更长的服务。

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