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Optimal Maintenance Plan For Rc Members By Minimizing Life-cycle Cost Including Deterioration Risk Due To Carbonation

机译:通过最大程度地降低生命周期成本(包括碳化导致的恶化风险),为Rc成员提供最佳的维护计划

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摘要

This paper presents various models of deterioration due to carbonation taking into consideration uncertainty factors to estimate the initiation and the rate of corrosion and to analyze the structural capacity and serviceability of RC members,i.e.shear capacity,bending strength and width of severe cracking or spalling of columns and beams with corroded rein-forcing bars,based on simple formulas formed through past experiments.Then,it goes on to propose a method for evaluating the failure and severe spalling/cracking probability during earthquakes and the deterioration risk of members in specified years from construction.Further,through application of an immune algorithm to the minimization of the life-cycle cost including deterioration risk,an optimal maintenance plan and semi-optimal solutions with a high diversity for reinforced concrete members can be found in a single analysis.Finally,a case study is conducted to establish the effectiveness of this system.
机译:本文提出了各种由于碳化引起的劣化模型,其中考虑了不确定性因素,以估计腐蚀的起因和腐蚀速率,并分析了钢筋混凝土构件的结构承载力和可使用性,剪切承载力,弯曲强度和严重裂缝或剥落的宽度。根据过去的实验所形成的简单公式,对带有腐蚀钢筋的圆柱和梁进行了研究。然后,提出了一种方法,用于评估地震期间的破坏和严重散裂/开裂概率以及特定年份的构件退化风险。此外,通过应用免疫算法将生命周期成本(包括劣化风险)最小化,可以在一次分析中找到最佳维护计划和钢筋混凝土构件的高多样性半最优解决方案。进行案例研究以建立该系统的有效性。

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