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Nonprobabilistic Reliability Evaluation for In-Service Gravity Dam Undergoing Structural Reinforcement

机译:在营业加固中的营养成型大坝的非特性可靠性评估

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摘要

Influenced by many factors such as material performance attenuation, structural defect repair, and reinforcement, the structural reliability of a gravity dam changes in different periods, which are called dynamic effects. Traditional methods are inclined to calculate and analyze the structural probability reliability from the random or fuzzy uncertain characteristics of parameters. However, in practice, it is difficult to obtain the probability distribution of uncertain parameters as well as the performance function, which is too nonlinear to be expressed. In addition, gravity dam failures are low probability events. Thus, a reliability calculation model and method for the gravity dam system considering dynamic effects under the practice of reinforcement are studied by integrating the theory of interval mathematics and nonprobability reliability. First, with the help of the monitoring data, and physical model and numerical simulation results of the gravity dam before and after the reinforcement, we establish a nonprobabilistic reliability (N-PR) calculation model for the gravity dam element and system based on the bounds of uncertain parameters and propose an inversion method for the bounds of uncertain parameters. Subsequently, by combining the response surface method with the central composite design technique, an N-PR index calculation method for gravity dams considering dynamic effects is developed. It turns out that the given model and method can effectively pave the way to avoid falling into the limitations of classical probabilistic reliability analysis of which the uncertain parameters require to be randomly changed and the results are highly sensitive to the parameters. In addition, it can better adapt to the characteristic of gravity dam performance function, which is too nonlinear to be expressed explicitly. When employing this method to analyze the reliability of gravity dam services, we are able to evaluate and predict the changing process and the trend of it more objectively, and have a closer look at the comprehensive influence and contribution of reinforcement to dam service reliability.
机译:受到多种因素的影响,如材料性能衰减,结构缺陷修复和加固,重力坝的结构可靠性在不同时期的变化,称为动态效果。传统方法倾向于计算和分析参数的随机或模糊不实特征的结构概率可靠性。然而,在实践中,难以获得不确定参数的概率分布以及性能函数,其太非线性地表示。此外,重力坝故障是低概率事件。因此,通过集成间隔数学和不可能可靠性理论,研究了考虑加固实践中的动态效应的可靠性计算模型和方法。首先,借助于监测数据,以及加固前后重力坝的物理模型和数值模拟结果,我们为基于界限的重力坝元件和系统建立了非动力可靠性(N-PR)计算模型不确定参数并提出一种不确定参数界限的反演方法。随后,通过将响应面方法与中央复合设计技术组合,开发了考虑动态效果的重力坝的N-PR指数计算方法。事实证明,给定的模型和方法可以有效地铺平了避免落入经典概率可靠性分析的局限性,因此需要随机改变的不确定参数,结果对参数非常敏感。此外,它可以更好地适应重力坝性能函数的特性,这太不明确表示。当采用这种方法分析重力坝服务的可靠性时,我们能够更客观地评估和预测变化的过程和它的趋势,并仔细看看加强对大坝服务可靠性的全面影响和贡献。

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