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Temperature effect analysis of a long-span cable-stayed bridge based on extreme strain estimation

机译:基于极限应变估计的大跨度斜拉桥温度效应分析

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The long-term effect of ambient temperature on bridge strain is an important and challenging problem. To investigate this issue, one year data of strain and ambient temperature of a long-span cable-stayed bridge is studied in this paper. The measured strain-time history is decomposed into two parts to obtain the strains due to vehicle load and temperature alone. A linear regression model between the temperature and the strain due to temperature is established. It is shown that for every 1 degrees C increase in temperature, the stress is increased by 0.148 MPa. Furthmore, the extreme value distributions of the strains due to vehicle load, temperature and the combination effect of them during the remaining service period are estimated by the average conditional exceedance rate approach. This approach avoids the problem of declustering of data to ensure independence. The estimated results demonstrate that the 95% quantile of the extreme strain distribution due to temperature is up to 1.488X10(-4) which is 2.38 times larger than that due to vehicle load. The study also indicates that the estimated extreme strain can reflect the long-term effect of temperature on bridge strain state, which has reference significance for the reliability estimation and safety assessment.
机译:环境温度对桥梁应变的长期影响是一个重要且具有挑战性的问题。为了研究这个问题,本文研究了大跨度斜拉桥的一年的应变和环境温度数据。将测得的应变时间历史分解为两部分,以获得仅由于车辆载荷和温度引起的应变。建立了温度与温度引起的应变之间的线性回归模型。结果表明,温度每升高1摄氏度,应力就会增加0.148 MPa。此外,通过平均有条件超标率方法估算在剩余服务期内由于车辆载荷,温度引起的应变的极值分布以及它们的组合效应。这种方法避免了数据分簇以确保独立性的问题。估计结果表明,由于温度引起的极端应变分布的95%分位数高达1.488X10(-4),这比由于车辆负载而产生的应变大2.38倍。研究还表明,估计的极限应变可以反映温度对桥梁应变状态的长期影响,这对可靠性评估和安全评估具有参考意义。

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