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Wind tunnel testing of the DeepWind demonstrator in design and tilted operating conditions

机译:在设计和倾斜操作条件下对DeepWind演示器进行风洞测试

摘要

The DeepWind Project aims at investigating the feasibility of a new floating vertical-axis wind turbine (VAWT) concept, whose purpose is to exploit wind resources at deep-water offshore sites.The results of an extensive experimental campaign on the DeepWind reduced scale demonstrator are here presented for different wind speeds and rotor angular velocities, including also skewed flow operation due to a tilted rotor arrangement. To accomplish this, after being instrumented to measure aerodynamic power and thrust (both in streamwise and transversal directions), a troposkien three-bladed rotor was installed on a high precision test bench, whose axis was suitable to be inclined up to 15° with respect to the design (i.e. upright) operating condition.The experiments were performed at the large scale, high speed wind tunnel of the Politecnico di Milano (Italy), using a "free jet" (open channel) configuration. The velocity field in the wake of the rotor was also fully characterized by means of an instrumented traversing system, to investigate the flow distribution downstream of the test section.Special care is taken in the description of the experimental set-up and of the measured data, so that the present results can be used as a benchmark for the validation of simulation models.
机译:DeepWind项目旨在研究新型浮动垂直轴风力涡轮机(VAWT)概念的可行性,该概念旨在在深水近海站点开发风能.DeepWind缩小规模演示器的广泛实验活动的结果是这里介绍了针对不同的风速和转子角速度,还包括由于倾斜的转子布置而引起的偏斜流操作。为此,在测量空气动力和推力(沿水流方向和横向方向)后,将对流三叶桨转子安装在高精度试验台上,该试验台的轴线相对于最大倾斜角度为15°实验是在意大利理工大学的大型高速风洞中使用“自由射流”(明渠)配置进行的。转子尾流中的速度场也通过仪表横移系统进行了充分表征,以研究试验段下游的流量分布。在实验设置和测量数据的描述中要格外小心,以便将当前结果用作验证仿真模型的基准。

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