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首页> 外文期刊>Journal of Zhejiang University. Science, A >Prediction of the load-carrying capacity of reinforced concrete connections under post-earthquake fire
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Prediction of the load-carrying capacity of reinforced concrete connections under post-earthquake fire

机译:地震发生后钢筋混凝土连接的承载能力预测

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摘要

Finding out the most effective parameters relating to the resistance of reinforced concrete connections (RCCs) is an important topic in structural engineering. In this study, first, a finite element (FE) model is developed for simulating the performance of RCCs under post-earthquake fire (PEF). Then surrogate models, including multiple linear regression (MLR), multiple natural logarithm (Ln) equation regression (MLnER), gene expression programming (GEP), and an ensemble model, are used to predict the remaining load-carrying capacity of an RCC under PEF. The statistical parameters, error terms, and a novel statistical table are used to evaluate and compare the accuracy of each surrogate model. According to the results, the ratio of the longitudinal reinforcement bars of the column (RLC) has a significant effect on the resistance of an RCC under PEF. Increasing the value of this parameter from 1% to 8% can increase the residual load-carrying capacity of an RCC under PEF by 492.2% when the RCC is exposed to fire at a temperature of 1000 °C. Moreover, based on the results, the ensemble model can predict the residual load-carrying capacity with suitable accuracy. A safety factor of 1.55 should be applied to the results obtained from the ensemble model.
机译:找出与钢筋混凝土连接(RCC)的电阻有关的最有效参数是结构工程中的一个重要主题。在本研究中,首先,开发了有限元(FE)模型,用于模拟地震发生后火灾(PEF)的RCCS的性能。然后,包括多个线性回归(MLR),多个自然对数(LN)等式回归(MLNER),基因表达编程(GEP)和集合模型的代理模型用于预测RCC下的剩余负载承载能力PEF。统计参数,错误术语和新颖的统计表用于评估和比较每个代理模型的准确性。根据结果​​,柱(RLC)的纵向加强杆的比率对PEF下RCC的抗性有显着影响。增加该参数的值从1%到8%的值可以通过492.2%在1000℃的温度下暴露在火上时,将RCC下的RCC的残留负荷承载能力增加492.2%。此外,基于结果,集合模型可以以合适的精度预测残余负载承载能力。 1.55的安全系数应适用于从集合模型获得的结果。

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