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Design feasibility of double-skinned composite tubular wind turbine tower

机译:双层蒙皮复合管式风力发电机塔架的设计可行性

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摘要

A double-skinned composite tubular (DSCT) wind power tower was suggested and automatic section design software was developed. The developed software adopted the nonlinear material model and the nonlinear column model. If the outer diameter, material properties and design capacities of a DSCT wind power tower are given, the developed software performs axial force-bending moment interaction analyses for hundreds of sections of the tower and suggests ten optimized cross-sectional designs. In this study, 80 sections of DSCT wind power towers were designed for 3.6 MW and 5.0 MW turbines. Moreover, the performances of the 80 designed sections were analyzed with and without considerations of large displacement effect. In designing and analyzing them, the material nonlinearity and the confining effect of concrete were considered. The comparison of the analysis results showed the moment capacity loss of the wind power tower by the mass of the turbine is significant and the large displacement effect should be considered for the safe design of the wind power tower.
机译:提出了双层蒙皮复合管式风力发电塔,并开发了自动断面设计软件。开发的软件采用了非线性材料模型和非线性圆柱模型。如果给出了DSCT风力发电塔的外径,材料特性和设计能力,则开发的软件将对塔的数百个截面进行轴向力-弯矩相互作用分析,并提出十种优化的截面设计。在这项研究中,为3.6兆瓦和5.0兆瓦涡轮机设计了80台DSCT风力发电塔。此外,在不考虑大位移影响的情况下分析了80个设计截面的性能。在设计和分析它们时,考虑了材料的非线性和混凝土的约束作用。分析结果的比较表明,风力发电机塔架的动量损失是由于涡轮机的质量引起的,为保证安全设计,应考虑大位移效应。

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