首页> 外文期刊>Journal of Applied Mechanical Engineering >Theoretical Results for Utilizing Nozzle Between the Wind-Way andWind Turbine in Roof of the Buildings - Wind Speed Increase for WindTurbine to Produce Electricity
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Theoretical Results for Utilizing Nozzle Between the Wind-Way andWind Turbine in Roof of the Buildings - Wind Speed Increase for WindTurbine to Produce Electricity

机译:利用建筑物屋顶的风向与风轮机之间的喷嘴的理论结果-提高风轮机发电的风速

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In order to increase the electrical power of the wind turbines, the velocity of the wind blowing on the wind turbine,is the most important factor that has to increase. In this paper it has been recommended that Contraction Nozzlescould be applied between Wind Turbines and wind-way to provide the wind through themselves with more velocity.For all cases analysed in this paper, a three dimensional contraction nozzle with the same length (3 meters) butdifferent input (in which wind blows through it) and output segment areas is considered. In the presented calculations,the inlet mean velocity is considered a constant value of 3 msin a windward area. Numerical solutions and CFDresults have been the same for increased wind velocity in each Nozzle outlet or wind turbine’s inlet. Furthermore, theelectrical power of related wind turbines has been numerically calculated in the presence and absence of the nozzlesbetween wind turbines and wind ?ow and it shows a dramatic increase in wind turbines power.
机译:为了增加风力涡轮机的电力,风力涡轮机上的风速是必须增加的最重要因素。在本文中,建议在风轮机和风道之间使用收缩喷嘴,以通过其自身提供更大的风速。对于本文中分析的所有情况,均使用相同长度(3米)的三维收缩喷嘴但是要考虑不同的输入(风在其中吹过)和输出段的面积。在提出的计算中,进气平均速度在迎风区域被认为是3 ms的恒定值。对于每个喷嘴出口或风力涡轮机入口中增加的风速,数值解和CFD结果相同。此外,已经在风力涡轮机和风流之间存在和不存在喷嘴的情况下,通过数值计算了相关风力涡轮机的电功率,并且其显示了风力涡轮机功率的急剧增加。

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