Recent developments in mechanical and uncertainty modelling of concrete

IF 5.7 1区 工程技术 Q1 ENGINEERING, CIVIL
Jianbing Chen , Xiaodan Ren , De-Cheng Feng , Jochen Kohler , John Dalsgaard Sørensen , Jian-Ying Wu , Jia-Liang Le , Robby Caspeele
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引用次数: 0

Abstract

Concrete is one of the most widely used materials in civil and infrastructure engineering in the world, just following water. Therefore, the serviceability and safety of concrete structures are of paramount importance. The modeling of mechanical properties of concrete and the uncertainty quantification are the two cornerstones for reliability evaluation and rational design decision of concrete structures. In the past 50 years, extensive endeavors have been devoted to these two aspects and great progresses have been made. In the present paper, investigations of and advances in mechanical and probabilistic modeling of concrete are reviewed, including the constitutive law of concrete material, the uncertainty quantification of parameters and constitutive laws of concrete, the nonlinear analysis of concrete structures, and the modeling of concrete properties in the design codes including the JCSS Probabilistic Model Code, fib Model Code, Chinese standard and Eurocodes. In particular, the transitions from uni-axial to multi-axial constitutive law, from probability distribution of major parameters and empirical relationship between parameters to full probabilistic quantification of the constitutive law of concrete, and from structural nonlinear analysis based on component internal force vs. deformation restoring force relationship to the framework based on continuum mechanics involving constitutive law are stressed.
混凝土力学和不确定性模型的最新进展
混凝土是世界上仅次于水的最广泛应用于土木和基础设施工程的材料之一。因此,混凝土结构的使用性能和安全性至关重要。混凝土力学性能的建模和不确定性量化是混凝土结构可靠性评估和合理设计决策的两大基石。50年来,中国在这两个方面进行了广泛的努力,取得了很大的进展。本文综述了混凝土力学和概率建模的研究进展,包括混凝土材料的本构规律,混凝土参数和本构规律的不确定性量化,混凝土结构的非线性分析,以及包括JCSS概率模型规范、fib模型规范、中国标准和欧洲规范在内的设计规范对混凝土性能的建模。特别强调了从单轴向多轴本构规律的转变,从主要参数的概率分布和参数之间的经验关系到混凝土本构规律的完全概率量化的转变,以及从基于构件内力与变形恢复力关系的结构非线性分析到基于涉及本构规律的连续介质力学框架的转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Structural Safety
Structural Safety 工程技术-工程:土木
CiteScore
11.30
自引率
8.60%
发文量
67
审稿时长
53 days
期刊介绍: Structural Safety is an international journal devoted to integrated risk assessment for a wide range of constructed facilities such as buildings, bridges, earth structures, offshore facilities, dams, lifelines and nuclear structural systems. Its purpose is to foster communication about risk and reliability among technical disciplines involved in design and construction, and to enhance the use of risk management in the constructed environment
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