四叶双桨-1型水轮机运行过程中静止气流流场的实验研究

A. Yershina
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引用次数: 0

摘要

风力涡轮机的结构多种多样,但根据其工作原理,可分为三种主要类型——帆(Savonius风力发电机组)、螺旋桨和翼型(Darrieus风力涡轮机)。目前,螺旋桨式风力涡轮机的应用最为广泛。它们在许多国家都是在商业层面上生产的。在其他条件相同的情况下,风力发电机组(WPU)产生的功率与风轮扫掠的面积成比例。因此,兆瓦级螺旋桨式风力涡轮机具有40米及以上的叶片。只有拥有高素质人员和相应设备的飞机才能生产出特定形状的长叶片。最近,人们对翼型风力涡轮机(Darrieus WPU)非常感兴趣。它们的结构更简单,具有相当高的风电利用系数(ξ=0.45)。尽管这是一个很好的WPU效率指标,但al-Farabi哈萨克国立大学的工作人员开发了一种新型风力涡轮机,可以将该系数的值提高1.3-1.6倍。这种仪器被命名为Bidarieusunit。本文介绍了Bidarieus机组、运行原理以及提高风电利用率的可能性。此外,在空气动力学隧道中测试作用实验室模型的结果
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RESULTS OF THE EXPERIMENTAL STUDY OF THE FLOW FIELD OF A STATIONARY AIR FLOW DURING THE OPERATION OF A FOUR-BLADE BIDARRIEUS-1 TURBINE
There are a great variety of wind turbine constructions but by their principle of operation they are divided into three main types -sail (Savoniuswind power unit), propeller and airfoils (Darrieus wind turbine). At present, propeller-type wind-turbines are the most widely spread. They are produced on a commercial level in many countries. Other conditions being equal, the power produced by wind power unit (WPU) is proportional to the area being swept around by a wind wheel. Therefore, Megawatt propeller-type wind turbines have blades with the length of 40 and more meters. Only aircraft works with a highly-qualified personnel and corresponding equipment can produce such long blades of a specific shape. Of high interest have become airfoil wind turbines (Darrieus WPU) lately. They are of a simpler construction and have a quite high wind power utilization factor (ξ=0.45). In spite of the fact that this is a good index of WPU efficiency, the workers of al-Farabi Kazakh National University have developed a new version of a wind turbine which allows increasing 1.3-1.6 times the value of this coefficient. This apparatus is named a Bidarrieusunit. This paper presents the description of a Bidarrieusunit, the principle of its operation and the possibility of increasing the wind power utilization factor. Also, the results of testing an acting laboratory model in an aerodynamic tunnel
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