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首页> 外文期刊>Computers & Structures >Reducing uncertainties in estimating long-time prestress losses in concrete structures using a hygro-thermo-chemo-mechanical model for concrete
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Reducing uncertainties in estimating long-time prestress losses in concrete structures using a hygro-thermo-chemo-mechanical model for concrete

机译:使用湿热化学机械模型减少混凝土结构中长期预应力损失的不确定性

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摘要

Prestress losses occur in concrete structures due to long-time creep and shrinkage in concrete, and stress relaxation in prestressing strands. The existing formulations for creep and shrinkage modeling in concrete are empirical in nature, which have been developed based on a particular set of measured data. In this study a coupled hygro-thermo-mechanical formulation is used to model the physics associated with creep and shrinkage in concrete structures. Uncertainty tools based on a probabilistic framework are used to model the possible variations in the input variables in the hygro-thermo-mechanical formulation. A distance measure based global response sensitivity analysis is adopted to identify the parameters having maximum impact on the output responses. Uncertainties in the selected set of important variables are reduced using Bayesian inference and short-time measured responses. For validating efficiency of the uncertainty reduction technique adopting Bayesian inference and global response sensitivity, the predictions of creep and shrinkage in concrete are compared with a few experiments from the North-Western University (NU) data base. The uncertainty reduction technique is then used to predict the long-time prestress losses in post-tensioned concrete beams and slabs cast in the laboratory. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于混凝土的长期蠕变和收缩以及预应力股线中的应力松弛,混凝土结构中会发生预应力损失。混凝土中蠕变和收缩建模的现有公式本质上是经验性的,它们是基于一组特定的测量数据而开发的。在这项研究中,采用了湿热力学耦合公式来模拟与混凝土结构的蠕变和收缩有关的物理过程。使用基于概率框架的不确定性工具来模拟湿热机械公式中输入变量的可能变化。采用基于距离测度的全局响应灵敏度分析来确定对输出响应影响最大的参数。使用贝叶斯推断和短时测量响应,可以减少所选重要变量集中的不确定性。为了验证采用贝叶斯推断和整体响应灵敏度的不确定性降低技术的效率,将混凝土的蠕变和收缩预测与西北大学(NU)数据库的一些实验进行了比较。然后,使用不确定性降低技术来预测实验室中浇筑的后张混凝土梁和楼板的长期预应力损失。 (C)2018 Elsevier Ltd.保留所有权利。

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