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Optimal Methods for Retrofitting Corrosion-damaged Reinforced Concrete Columns

机译:锈蚀钢筋混凝土柱的最佳改造方法

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By neglecting optimization criteria, engineers can articulate different views with respect to retrofitting a column for a particular bending moment and axial load for columns deteriorated by corrosion, especially those in a salt factory where they are exposed to chloride ions. In this study, ETABS and MATLAB softwares were applied to develop an optimal plan that involves minimal repair costs and maximum safety. To determine the specifics of this optimal plan, it needs to consider all variable parameters, including externally bonded steel plates, different types of concrete jacketing, and various concrete compressive strengths. By stabilizing implemented loadings and building's dimensions, 30 retrofitting designs are identified for consideration with respect to the two retrofitting methods to identify their effects on structural component design, sustainability, and economics. A comparison of two retrofitting methods reveals that the use of each retrofitting method would be effective under certain circumstances. However, in this study, externally bonded steel plates appear to be more effective for the type of construction problems identified. In addition, the results indicate that the consideration of safety factors in the corroded structure to obtain optimal retrofitting can exert dramatic effects on the parameters involved in the process. Therefore, all variables are carefully analyzed in this study.
机译:通过忽略优化标准,工程师可以针对因腐蚀而恶化的色谱柱,特别是在暴露于氯离子的盐工厂中的特定弯矩和轴向载荷进行改造时,提出不同的观点。在这项研究中,使用了ETABS和MATLAB软件来开发一种最佳计划,该计划涉及的维修成本最小且安全性最高。为了确定此最佳计划的细节,它需要考虑所有可变参数,包括外部粘结钢板,不同类型的混凝土护套以及各种混凝土抗压强度。通过稳定实现的载荷和建筑物的尺寸,针对两种改造方法确定了30种改造设计,以考虑它们对结构构件设计,可持续性和经济性的影响。两种改造方法的比较表明,在某些情况下,每种改造方法的使用都是有效的。但是,在这项研究中,外粘结钢板对于确定的施工问题似乎更有效。另外,结果表明,考虑腐蚀结构中的安全因素以获得最佳改型可以对过程中涉及的参数产生巨大影响。因此,在本研究中仔细分析了所有变量。

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