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Vibration control of offshore wind turbine using RSM and PSO-optimized Stockbridge damper under the earthquakes

机译:地震作用下使用RSM和PSO优化的Stockbridge阻尼器对海上风力发电机进行振动控制

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摘要

In this inquisition, a passive damper namely Stockbridge Damper (SBD) has been introduced to the field of vibration control of Offshore Wind Turbine (OWT) to reduce the earthquake excitations. The dynamic responses of the structure have been analyzed for three recorded earthquakes and the responses have been assessed. To find an optimum SBD, the parameters of damper have been optimized using Response Surface Methodology (RSM) based on Box-Behnken Design (BBD) and Particle Swarm Optimization (PSO). The influence of the design variables of SBD such as the diameter of messenger cable, the length of messenger cable and logarithmic decrement of the damping has been investigated through response variables such as maximum displacement, RMS displacement and frequency amplitude of structure under an artificially generated white noise. After that, the structure with optimized and non-optimized damper has been analyzed with under the same earthquakes. Moreover, the comparative results show that the structure with optimized damper is 11.78%, 18.71%, 11.6% and 7.77%, 7.01%, 10.23% more effective than the structure with non-optimized damper with respect to the displacement and frequency response under the earthquakes. The results show that the SBD can obviously affect the characteristics of the vibration of the OWT and RSM based on BBD and PSO approach can provide an optimum damper.
机译:在本案中,一种无源阻尼器,即Stockbridge Damper(SBD)已被引入到海上风轮机(OWT)的振动控制领域,以减少地震的激发。分析了三个记录地震的结构动力响应,并对响应进行了评估。为了找到最佳的SBD,已使用基于Box-Behnken设计(BBD)和粒子群优化(PSO)的响应曲面方法(RSM)对阻尼器的参数进行了优化。通过人工生成的白色环境下的最大位移,RMS位移和结构频率响应等响应变量,研究了SBD设计变量如斜拉索的直径,斜拉索的长度和阻尼的对数减小的影响。噪声。之后,对同一地震作用下具有优化和非优化阻尼器的结构进行了分析。而且,比较结果表明,在非饱和阻尼器作用下的位移和频率响应方面,具有优化阻尼器的结构比非优化阻尼器的结构分别有效提高了11.78%,18.71%,11.6%和7.77%,7.01%,10.23%。地震。结果表明,基于BBD和PSO的方法,SBD可以明显影响OWT和RSM的振动特性,可以提供最佳的阻尼器。

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