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Mechanics-Based Modeling of Strength Distribution of Concrete Structures: Problems and Progress

机译:基于力学的混凝土结构强度分布建模:问题与进展

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This paper reviews a recently developed finite weakest link model of strength of concrete structures, which fail under controlled load at macro-crack initiation from one representative volume element (RVE). The probability distribution of RVE strength is derived from the well-established transition rate theory and a hierarchical multi-scale transition model. The model predicts that the strength distribution of concrete structures depends on the structure size and geometry, transiting from a predominantly Gaussian distribution to a Weibull distribution as the structure size increases. It is shown that the present model agrees well with the strength histograms of Portland cement mortar measured by Weibull, which consistently deviate from the classical Weibull distribution. The importance of size effect for the reliability analysis of large concrete structures is then demonstrated through the analysis of the failure of the Malpsset Dam. Both the present model and the available experimental data invalidate the three-parameter Weibull distribution for concrete structures.
机译:本文回顾了最近开发的混凝土结构强度的有限最弱连接模型,该模型在受控制的载荷下,从一个有代表性的体积元(RVE)的宏观裂纹萌生时失效。 RVE强度的概率分布来自完善的过渡速率理论和分层的多尺度过渡模型。该模型预测混凝土结构的强度分布取决于结构尺寸和几何形状,随着结构尺寸的增加,其强度将从高斯分布转变为威布尔分布。结果表明,该模型与威布尔测得的波特兰水泥砂浆的强度直方图非常吻合,该直方图始终偏离经典的威布尔分布。然后,通过对马尔普塞特大坝的破坏进行分析,证明了尺寸效应对大型混凝土结构可靠性分析的重要性。本模型和可用的实验数据都使混凝土结构的三参数Weibull分布无效。

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