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Chained Analysis of Effective Prestress for Long-span PC Bridge: Identification, Simulation and Prediction

机译:对长跨度PC桥的有效预应力的链接分析:识别,仿真和预测

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In order to make much detail and more practical evaluation on structural safety and durability for long-span PC bridges, the condition for prestressing reservation in service stage turns out to be a necessary key index. For the sake of measuring it exactly, an invented instrument named Stretching Force Tester is applied to monitor the effective prestressing force of strand. The precision of this technology is guaranteed by means of amending analogous boundary condition and minimizing test errors through the tool of double-stage differences. Based on comparatively sophisticated prestressing loss method in current code, an evaluation model on attenuation of effective prestress is built up. By means of obtained stress datum on strand, recognition on two types of nominal coefficients for prestress losses is realized and regularities of practical distribution can be simulated simultaneously. The experimental results of a large-scale beam model show that the relative error for cable tension force between test value and standard one is able to meet the needs of engineering use and general principle for effective prestress can be demonstrated. Therefore, it laid the foundation for inspection and evaluation on structural deterioration of existing long-span PC bridges.
机译:为了对长跨度PC桥梁进行结构安全和耐用性进行更详细的细节和更实际的评估,服务阶段预计预留的条件是必要的关键指数。为了精确地测量它,施加了一种名为拉伸力测试仪的发明仪器以监测股线的有效预应力。通过修改类似的边界条件并通过双级差异的工具最小化测试误差来保证该技术的精度。基于当前代码中的比较复杂预应力损失方法,建立了有效预应力衰减的评估模型。通过在股线上获得的应力数据,实现了对预应力损耗的两种类型的标称系数的识别,并且可以同时模拟实际分布的规律。大型光束模型的实验结果表明,测试价值与标准电缆张力之间的相对误差能够满足工程利用的需求,可以证明有效预应力的一般原则。因此,它为现有的长跨度PC桥梁结构恶化的检查和评估奠定了基础。

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