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Effect of stiffening rings on buckling stability of R.C. hyperbolic cooling towers

机译:加劲环对钢筋混凝土屈曲稳定性的影响双曲线冷却塔

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摘要

Demand for efficient and economical reinforced concrete (R.C.) hyperbolic cooling towers has driven engineers toward designing tall and thin-shell towers with a considerable high slenderness aspect ratio. This construction type is susceptible to buckling instability. To increase the R.C. hyperbolic cooling towers' structural stability while keeping the costs down, engineers could add stiffening rings. To achieve maximum buckling stability, important design parameters such as the number, dimension, and location of stiffening rings must be considered. Currently, however, there is a lack of information on these parameters. Using a series of numerical analyses, this paper defines the above parameters for maximizing the buckling stability of cooling towers and proposes a method for obtaining these parameters for any given cooling tower. Using these parameters, this paper also investigates the effect of stiffening rings on the buckling stability of R.C. cooling towers.
机译:对高效,经济的钢筋混凝土双曲线冷却塔的需求驱使工程师朝着设计具有高细长比的高薄壳塔的方向发展。这种构造类型容易发生屈曲不稳定性。增加R.C.双曲线冷却塔的结构稳定,同时降低了成本,工程师可以添加加强环。为了获得最大的屈曲稳定性,必须考虑重要的设计参数,例如加强环的数量,尺寸和位置。但是,目前缺少有关这些参数的信息。通过一系列数值分析,本文定义了上述参数以使冷却塔的屈曲稳定性最大化,并提出了一种获取给定冷却塔参数的方法。使用这些参数,本文还研究了加劲环对钢筋混凝土屈曲稳定性的影响。冷却塔。

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