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Reliability assessment of reinforced concrete structures based on random damage model

机译:基于随机损伤模型的钢筋混凝土结构的可靠性评估

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摘要

A stochastic model is developed to describe the fracture behaviour of concrete fibres at micro-level, and a probabilistic relation between the fibre strain and the concrete damage variable is established. In this context, the concrete damage evolution can be quantified by two representative random variables. In this regard, the number of random variables employed in potential reliability assessment studies can be greatly reduced. The accuracy of the proposed method is verified by comparing the first- and second-order moments of the stochastic damage evolution with the corresponding closed form solutions. Further, the proposed method is applied to the non-linear analysis and reliability assessment of a five-story reinforced concrete frame, and the results show that it is quite efficient for stochastic response determination and reliability evaluation of complex structures.
机译:开发了一种随机模型来描述微级混凝土纤维的断裂行为,建立了纤维应变与混凝土损伤变量之间的概率关系。 在这种情况下,可以通过两个代表性随机变量量化混凝土损伤演化。 在这方面,可以大大减少在潜在可靠性评估研究中采用的随机变量的数量。 通过将随机损伤的第一和二阶损伤演化与相应的闭合溶液进行比较,验证所提出的方法的准确性。 此外,该方法适用于五层钢筋混凝土框架的非线性分析和可靠性评估,结果表明,对复杂结构的随机响应确定和可靠性评估是非常有效的。

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