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Ultimate strength of large scale reinforced concrete thin shell structures

机译:大型钢筋混凝土薄壳结构的极限强度

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This paper presents ultimate behavior of large scale reinforced concrete shell structures: hyperbolic cooling tower shell and hyperbolic paraboloid (HP) saddle shell. Both geometrical and material nonlinearities were considered in the analysis. To investigate the influence of concrete tension cracks on the structural behavior, the smeared crack model having the capability of representing double crack and crack rotation was used in the analysis. The biaxial stress state in shells is represented by the improved work-hardening plasticity concrete model, where the ductility increase phenomenon can be depicted. The load-displacement relationship, stress fields, occurrence and propagation of cracks in concrete and steel yield patterns are presented. Due to the factors such as modification in plasticity model, stiffness contribution in the doubly cracked elements, the model predicts a more ductile behavior than the results reported in the current literature. The failure of cooling tower shell seems to occur due to local yielding of meridional reinforcement in the windward meridian. In the case of HP saddle shell, structural instability occurs due to severe tension cracks in the shell part before yielding of reinforcement could occur.
机译:本文介绍了大型钢筋混凝土壳体结构的最终性能:双曲线冷却塔壳体和双曲线抛物面(HP)鞍形壳体。分析中考虑了几何和材料非线性。为了研究混凝土拉伸裂缝对结构性能的影响,在分析中采用了具有双裂纹和裂纹旋转能力的涂片裂缝模型。改进的加工硬化塑性混凝土模型代表了壳体中的双轴应力状态,其中可以描述延性增加现象。给出了混凝土和钢屈服模式中的荷载-位移关系,应力场,裂纹的发生和扩展。由于诸如可塑性模型修改,双裂纹单元的刚度贡献等因素,该模型比当前文献报道的结果预测出更具延性。冷却塔壳的失效似乎是由于上风子午线局部增强子午线而产生的。对于HP鞍形外壳,由于在可能会发生屈服的情况下,外壳部分中出现严重的拉力裂纹,因此会导致结构不稳定。

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