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首页> 外文期刊>Journal of Performance of Constructed Facilities >Deflection Control of Long-Span PSC Box-Girder Bridge Based on Field Monitoring and Probabilistic FEA
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Deflection Control of Long-Span PSC Box-Girder Bridge Based on Field Monitoring and Probabilistic FEA

机译:基于现场监测和概率有限元分析的大跨度PSC箱梁桥挠度控制

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摘要

For long-span prestressed concrete (PSC) box-girder bridges, excessive midspan deflection because of uncertain concrete shrinkage and creep undermines driving comfort and structural safety. In this paper, a deflection control strategy is proposed on the basis of field monitoring and probabilistic finite element analysis (FEA). The time-dependent behavior of the bridge was predicted using a three-dimensional finite element model with integrated time-dependent models for creep and shrinkage. The FE model was validated or updated according to field monitored data to predict future bridge performance. Using probability density functions of variables and probabilistic analyses, uncertainties in long-term deflections were described. Finally, according to the probabilistic analysis results and the allowable deflection, the amount for deflection control was determined, and the control was conducted using backup prestressing tendons. A case study on the Jinghang Canal Bridge, a three-span continuous PSC box-girder bridge in China, was made for demonstration.
机译:对于大跨度的预应力混凝土(PSC)箱梁桥,由于不确定的混凝土收缩和蠕变而导致的中跨挠度过大,从而损害了驾驶舒适性和结构安全性。本文基于现场监测和概率有限元分析(FEA)提出了挠度控制策略。使用三维有限元模型预测了桥梁的时变行为,并结合了时变和收缩的时变模型。根据现场监测数据验证或更新了有限元模型,以预测未来的桥梁性能。使用变量的概率密度函数和概率分析,描述了长期挠度中的不确定性。最后,根据概率分析结果和允许的挠度,确定挠度控制量,并使用后备预应力筋进行控制。以中国三跨连续PSC箱梁桥京杭运河桥为例进行了演示。

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