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Baseline Model Updating During Bridge Construction Using Measured Strains

机译:基线模型在桥梁施工期间更新使用测量菌株

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Instrumentation, structural modeling, and model updating are incorporated into the design and construction process of a multi-span bridge to change the paradigm of traditional bridge design to a long-term bridge design. A continuous three span composite steel stringer bridge in Barre, Massachusetts was used as a pilot bridge. A monitoring system was installed in order to capture structural behavior during construction and into the service life of the bridge. Strain data from the steel girders was collected during the concrete deck pour. Two finite element models were created using shell/solid elements and frame/shell elements. Both computer model responses are compared with field strain measurements of the full scale bridge during the concrete deck pour. Both the shell/solid and frame/shell FEMs produced close estimates of the measured strain data. Modeling assumptions for boundary conditions and temperature effects play a major role in magnitudes of the analytical responses. In the future, truck load tests will be used for baseline model updating of the completed bridge. The structural model that reflects the actual bridge 3D system behavior can be used for load rating and overload permitting.
机译:仪表,结构建模和模型更新纳入了多跨度桥梁的设计和施工过程,将传统桥梁设计的范例改变为长期桥梁设计。 Massachusetts在Barre中的连续三个跨度复合钢纵梁桥梁用作先导桥。安装了监控系统,以捕捉建筑过程中的结构行为以及桥梁的使用寿命。在混凝土甲板倒入中收集来自钢梁的应变数据。使用shell / solid元素和帧/壳元素创建两个有限元模型。将计算机模型响应与在混凝土甲板倒入的全尺度桥的现场应变测量进行比较。 Shell / Solid和帧/壳FEM都产生了测量的应变数据的关闭估计。边界条件和温度效应的建模假设在分析响应的大小中起主要作用。将来,卡车载荷测试将用于完成桥的基线模型更新。反映实际桥3D系统行为的结构模型可用于负载额定值和过载允许。

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