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Vehicle-bridge coupling vibration analysis based fatigue reliability prediction of prestressed concrete highway bridges

机译:基于车桥耦合振动分析的预应力混凝土公路桥梁疲劳可靠度预测

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摘要

The extensive use of prestressed reinforced concrete (PSC) highway bridges in marine environment drastically increases the sensitivity to both fatigue- and corrosion-induced damage of their critical structural components during their service lives. Within this scenario, an integrated method that is capable of evaluating the fatigue reliability, identifying a condition-based maintenance, and predicting the remaining service life of its critical components is therefore needed. To accomplish this goal, a procedure for fatigue reliability prediction of PSC highway bridges is proposed in the present study. Vehicle-bridge coupling vibration analysis is performed for obtaining the equivalent moment ranges of critical section of bridges under typical fatigue truck models. Three-dimensional nonlinear mathematical models of fatigue trucks are simplified as an eleven-degree-of-freedom system. Road surface roughness is simulated as zero-mean stationary Gaussian random processes using the trigonometric series method. The time-dependent stress-concentration factors of reinforcing bars and prestressing tendons are accounted for more accurate stress ranges determination. The limit state functions are constructed according to the Miner's linear damage rule, the time-dependent S-N curves of prestressing tendons and the site-specific stress cycle prediction. The effectiveness of the methodology framework is demonstrated to a T-type simple supported multi-girder bridge for fatigue reliability evaluation.
机译:在海洋环境中广泛使用预应力钢筋混凝土(PSC)公路桥梁,大大提高了其使用寿命期间对疲劳和腐蚀引起的关键结构部件损坏的敏感性。因此,在这种情况下,需要一种能够评估疲劳可靠性,识别基于状况的维护并预测其关键组件的剩余使用寿命的集成方法。为了实现这一目标,本研究提出了一种预测PSC公路桥梁疲劳可靠性的方法。进行车桥耦合振动分析,以获取典型疲劳卡车模型下桥梁临界截面的等效弯矩范围。疲劳卡车的三维非线性数学模型被简化为一个11自由度系统。使用三角序列方法将路面粗糙度模拟为零均值固定高斯随机过程。钢筋和预应力筋的随时间变化的应力集中系数可用于确定更准确的应力范围。极限状态函数是根据Miner的线性损伤规则,预应力筋的随时间变化的S-N曲线以及特定位置的应力周期预测构造的。该方法框架的有效性通过T型​​简单支撑多梁桥进行了验证,以进行疲劳可靠性评估。

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