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FUZZY RANDOM TIME-DEPENDENT RELIABILITY ANALYSIS OF EXISTING REINFORCED CONCRETE BRIDGES

机译:现有钢筋混凝土桥的模糊随机时间依赖性可靠性分析

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Bridges deteriorate with time due to reinforcement corrosion, concrete carbonization and ever-increasing traffic loads. This results in reduction of their reliability,. The factors influencing their reliability represent uncertainty. Binary state assumption indicates that the structure demonstrates only two crisp states, i.e., fully functioning oi fully failed. The structure will be realized in one of the two states at any time. This is not practical in the real world. The structural failure criterion should be fuzzy. Based on conventional study on random time-dependent reliability, the fuzziness is incorporated in this paper,. The fuzzy random time-dependent probabilistic (FRTDP) models of reinforcement strength and its sectional area and concrete strength are founded by fuzzy random variable and fuzzy stochastic process theory, A FRTDP model of resistance is deduced. Due to the difference between existing and constructing reinforced concrete (RC) bridges in analysis background, service life and information, the load models should be re-studied. A FRTDP model is substituted the dead load, and a FRTDP model is applied to the live load by incorporated fuzziness. The ,JC method is improved to compute the fuzzy random time-dependent (FRTD) reliability indices subjected to FRTD resistance, live load, dead load and fuzzy failure criterion. The total analytical method and process are demonstrated by an example of a fabricated RC bridge.
机译:由于增强腐蚀,混凝土碳化和不断增加的交通负荷,桥梁随着时间的推移而恶化。这导致其可靠性降低。影响其可靠性的因素代表不确定性。二进制状态假设表明该结构仅演示了两个清晰的状态,即全功能oi完全失败。该结构将随时在两个状态中实现。这在现实世界中并不实用。结构故障标准应该是模糊的。基于对随机时间依赖性可靠性的传统研究,本文结合了模糊性。增强强度的模糊随机时间依赖性概率(FRTDP)型号及其截面区域和混凝土强度的模糊随机变量和模糊随机过程理论建立,推导了FRTDP抗性模型。由于现有和构造钢筋混凝土(RC)桥梁在分析背景下,使用寿命和信息,应重新研究负载模型。 FRTDP模型代替死载,通过合并模糊性应用FRTDP模型。改进了,JC方法以计算经过FRTD电阻,实时负载,死载和模糊故障标准的模糊随机时间依赖性(FRTD)可靠性指数。通过制造的RC桥的示例来证明总分析方法和过程。

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