张军锋, 葛耀君, 赵林, 柯世堂. 双曲冷却塔子午线型对结构受力性能的影响[J]. 工程力学, 2014, 31(3): 187-196. DOI: 10.6052/j.issn.1000-4750.2012.10.0779
引用本文: 张军锋, 葛耀君, 赵林, 柯世堂. 双曲冷却塔子午线型对结构受力性能的影响[J]. 工程力学, 2014, 31(3): 187-196. DOI: 10.6052/j.issn.1000-4750.2012.10.0779
ZHANG Jun-feng, GE Yao-jun, ZHAO Lin, KE Shi-tang. INFLUENCE OF THE MERIDIAN CURVE ON MECHANICAL PERFORMANCE OF HYPERBOLOIDAL COOLING TOWERS[J]. Engineering Mechanics, 2014, 31(3): 187-196. DOI: 10.6052/j.issn.1000-4750.2012.10.0779
Citation: ZHANG Jun-feng, GE Yao-jun, ZHAO Lin, KE Shi-tang. INFLUENCE OF THE MERIDIAN CURVE ON MECHANICAL PERFORMANCE OF HYPERBOLOIDAL COOLING TOWERS[J]. Engineering Mechanics, 2014, 31(3): 187-196. DOI: 10.6052/j.issn.1000-4750.2012.10.0779

双曲冷却塔子午线型对结构受力性能的影响

INFLUENCE OF THE MERIDIAN CURVE ON MECHANICAL PERFORMANCE OF HYPERBOLOIDAL COOLING TOWERS

  • 摘要: 为优化双曲冷却塔的子午线型, 根据线型斜率对多座冷却塔的受力状态进行了对比分析, 探讨了子午线型对自重和风荷载效应的影响机理, 并据此对渡桥电厂实际圆锥线型的不合理性进行了解释。子午线型对冷却塔受力性能的影响主要集中在三个方面:局部线型的缺陷、直线段的存在以及整体线型的差异。局部线型的缺陷包括线型斜率的波动或跳跃, 会使局部内力恶化, 但通过线型略微调整即可消除。直线段的存在将使风荷载作用下子午向轴力在线型转变位置发生跳跃后再沿直线持续向下积聚, 此影响与直线段的长度以及斜率有关, 并非总是不利的, 适当的直线段甚至会产生优于双曲线的受力性能。另外, 风荷载作用下直线段内的环向轴力幅值会有所增加, 故需要对局部稳定BSS检算格外注意。

     

    Abstract: In order to optimize the meridian curve of hyperboloidal cooling towers (HCTs), its influence on the dead weight effects and wind load effects of HCTs was illustrated through comparative analysis according to the slope of meridian curve and internal forces. An explanation for the Ferrybridge accident was also represented on the basis of the influence mechanism. Influence of the meridian curve can be classified into three types, local defects, existing of straight line and global curve. Local defects include fluctuation and leap of the slope of meridian curve which exacerbate internal forces, but it can be eliminated by minor changes of the local meridian curve. At the place where the meridian curve changes into straight line, the meridian axial force under wind loads will leap and then aggregate downward along the height in straight line. The aggregation is related to the length and slope of the straight line, and is not always adverse for mechanical performance; properly designed, the straight line in meridian curve may be more beneficial to mechanical performance than traditional hyperbolic curve. However, the latitude axial force in straight line will be aggravated under wind loads, so the local buckling problem should be examined carefully according to the BSS approach.

     

/

返回文章
返回