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Aerodynamic properties of Wind Turbine Towers based on Wind Tunnel Experiments

机译:基于风洞实验的风力涡轮机塔空气动力学特性

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The presented investigations aim to suggest more realistic models to predict the dynamic behavior of wind turbine structures. Two key issues are addressed: the aerodynamic damping and the cross-wind vibrations. Based on experimental studies in the boundary layer wind tunnel, aerodynamic information for both effects has been obtained. A scaled model of a wind energy tower (1:150) in combination with complementary models have been tested in a test bench designed to carry out HFFB, dynamic wind pressure and forced-oscillation experiments. Reynolds number based scale effects on the tower model have been studied previously. In the predictions of cross-wind vibrations, the length related correlation of vortices shedding from cylindrical structures plays an important role. Therefore, wind dynamic pressures were measured along static tower and cylinder models using pressure taps to determine realistic values of the vortex shedding correlation length. Motion-induced wind vibrations can be significantly influenced by the aerodynamic damping. Using the forced-oscillations method, experiments have been performed under controlled system oscillation with varying wind speed in prism models and tower model. The measured base model forces were correlated with the model motion using spectral methods to obtain the corresponding aerodynamic stiffness and damping coefficients. Both aerodynamic studies will allow more detailed models for the design of new wind tower structures. The acquired information will be applicable in MB-simulations to obtain more realistic and accurate wind turbine performances
机译:本提出的调查旨在建议更现实的模型来预测风力涡轮机结构的动态行为。解决了两个关键问题:空气动力学阻尼和横向振动。基于边界层风洞的实验研究,已经获得了两种效果的空气动力学信息。在设计用于执行HFFB,动态风压和强制振动实验的测试台上已经测试了与互补模型的缩放模型。以前研究了基于雷诺数的基于塔式模型的效果。在对横向振动的预测中,圆柱结构的涡流的长度相关的相关性起着重要作用。因此,沿着静态塔和圆柱模型测量风力动力压力,使用压力抽头来确定涡旋脱落相关长度的逼真值。运动引起的风振动可以受到空气动力学阻尼的显着影响。使用强制振荡方法,在受控系统振荡下进行了实验,其棱镜模型和塔模型中的变化风速。测量的基础模型力与模型运动相关使用光谱方法,以获得相应的空气动力刚度和阻尼系数。两个空气动力学研究都将允许更详细的模型来设计新的风塔结构。收购的信息将适用于MB-Simulations,以获得更现实和准确的风力涡轮机表演

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