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Quality assessment of material models for reinforced concrete flexural members

机译:钢筋混凝土受弯构件材料模型的质量评估

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摘要

Non-linear constitutive models for concrete in compression are frequently defined in design codes. The engineer generally uses either the linear (in SLS) or non-linear (in ULS) compression model. However, a large variety of different approaches exists for describing the behaviour of the cracked concrete tension zone, and the selection of a corresponding model is usually based on qualitative engineering judgement. The aim of this paper is to assess the prediction quality of several concrete material models in order to provide a quantitative model selection. Therefore, uncertainty analysis is applied in order to investigate the model and parameter uncertainty in the bending stiffness prognosis for flexural members. The total uncertainty is converted into a prognosis model quality that allows a quantitative comparison between the material models considered. The consideration of the reinforced concrete in tension is based on the characterization of the tension stiffening effect, which describes the cracking in an average sense. In the interest of the practical applicability of the models considered, even for large structures, no discrete crack simulations based on fracture mechanics are considered. Finally, the assessment identifies that the prediction quality depends on the loading level and, furthermore, the quality across the models can be quantitatively similar as well as diverse.
机译:在设计规范中经常定义用于压缩混凝土的非线性本构模型。工程师通常使用线性(在SLS中)或非线性(在ULS中)压缩模型。然而,存在多种不同的方法来描述开裂的混凝土张拉区的性能,相应模型的选择通常基于定性工程判断。本文的目的是评估几种混凝土材料模型的预测质量,以便提供定量的模型选择。因此,应用不确定性分析来研究抗弯构件抗弯刚度预测中的模型和参数不确定性。将总不确定性转换为预后模型质量,从而可以在考虑的材料模型之间进行定量比较。对钢筋混凝土受拉力的考虑是基于对拉力加劲效果的表征,该特性以一般意义描述裂缝。为了所考虑的模型的实际适用性,即使对于大型结构,也没有考虑基于断裂力学的离散裂纹模拟。最后,评估确定预测质量取决于负载水平,此外,各个模型的质量在数量上可以相似,也可以不同。

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