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Serviceability limit state design of large concrete structures: Impact on reinforcement amounts and consequences of design code ambiguity

机译:大型混凝土结构的使用寿命极限状态设计:对加固量的影响和设计规范含糊不清的后果

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Reinforced concrete is typically designed taking into account the critical load combination in the ultimate limit state (ULS), while further checked in the serviceability limit state (SLS). Experience shows that the SLS control can result in unexpected additional reinforcement amounts. This paper investigates this topic through (i) a case study and (ii) a parametric study. In the case study, different methods are used to check a cross section subject to membrane and plate forces. We found significant variation in the results using different methods, due to the amount of choices pertinent to the methods. The variation in results was found to increase with increasing load complexity. The parametric study shows the amount of additional reinforcement necessary due to crack width requirements compared to ULS design. The crack width requirements in Eurocode 2 is shown to require a relative increase of several hundred percent in reinforcement compared to ULS design, and an absolute increase, as a percentage of the effective concrete area, of 9%. We conclude that there are large discrepancies in subjective understanding of the crack width limitation requirements as well as in interpretation of the code provisions and calculation methods.
机译:钢筋混凝土的设计通常考虑到极限极限状态(ULS)中的临界荷载组合,同时在使用年限极限状态(SLS)中进行进一步检查。经验表明,SLS控制可能会导致意外的额外加固量。本文通过(i)案例研究和(ii)参数研究来研究此主题。在案例研究中,使用不同的方法检查受膜和板力作用的横截面。由于与方法有关的选择数量众多,我们发现使用不同方法的结果存在显着差异。发现结果的变化随着负载复杂度的增加而增加。参数研究显示,与ULS设计相比,由于裂缝宽度要求而需要的额外加固量。与ULS设计相比,Eurocode 2中的裂缝宽度要求显示出相对增加了数百%的增强,并且相对于有效混凝土面积的百分比,绝对增加了9%。我们得出的结论是,在主观理解裂缝宽度限制要求以及解释规范和计算方法方面存在很大差异。

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