首页> 外文期刊>Advances in Structural Engineering >Extreme and spectrum characteristics of wind loads on super-large cooling tower under different four-tower combinations
【24h】

Extreme and spectrum characteristics of wind loads on super-large cooling tower under different four-tower combinations

机译:不同四塔组合下超大型冷却塔风荷载的极端和频谱特性

获取原文
获取原文并翻译 | 示例
       

摘要

The wind loads distribution on the super-large cooling tower under the interference effect of tower group is very complicated. Particularly, energy distribution of fluctuation wind loads and extreme model is difficult to be predicted. However, accurate calculations of these two factors are the most direct ways for analysis of wind resistance dynamics of super-large cooling tower. The wind tunnel tests of the highest super-large cooling tower under five typical tower combinations (serial, rectangular, rhombus, L-shaped, and inclined L-shaped) with 320 working conditions were performed. On this basis, non-Gaussian and non-stationary properties of local wind pressure and overall force coefficient of super-large cooling tower were analyzed. Distribution laws of local wind pressure extremes and overall force coefficient extremes were discussed based on Hermite method and peak factor method. Key attention was paid to the mapping relationships of characteristic angles with local and overall aerodynamic force extremes. The effects of four-tower combination modes on fluctuation wind loads energy of super-large cooling tower were studied based on the power spectral density function, intrinsic mode function, and evolution power spectral density function. Besides, the estimation formulas of local wind pressure spectrum and overall pressure coefficient spectrum of super-large cooling tower under four-tower combination were proposed. It can be found that the extremes of local wind pressure and overall aerodynamic force could be predicted based on the linear relationship between characteristic angles and fluctuation wind loads. In addition, it is suggested to choose serial combination first, followed by inclined L-shaped, L-shaped, rhombus, and rectangular modes successively.
机译:在塔组的干扰作用下,超大型冷却塔的风荷载分布非常复杂。特别地,难以预测波动风载荷和极端模型的能量分布。然而,这两个因素的精确计算是分析超大型冷却塔风阻动态的最直接方法。在320个工作条件下,在五个典型的塔组合(串行,矩形,菱形,L形和倾斜L形)下,对最高超大型冷却塔进行了风洞测试。在此基础上,分析了超大型冷却塔局部风压的非高斯非平稳性和总力系数。基于Hermite法和峰值因子法,讨论了局部风压极值和总力系数极值的分布规律。重点关注了特征角度与局部和整体空气动力极限之间的映射关系。基于功率谱密度函数,本征模函数和演化功率谱密度函数,研究了四塔组合模式对超大型冷却塔风能波动能量的影响。提出了四塔组合下超大型冷却塔局部风压谱和总压系数谱的估算公式。可以发现,基于特征角和风荷载波动之间的线性关系,可以预测局部风压和整体空气动力的极限值。另外,建议先选择系列组合,然后依次选择倾斜的L形,L形,菱形和矩形模式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号