钢筋混凝土下水道生物劣化效应的概率评估

J. F. Márquez-Peñaranda, M. Sánchez-Silva, E. Bastidas-Arteaga
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引用次数: 3

摘要

目前世界范围内下水道结构设计的实践是基于通常包括化学和生物劣化造成的影响的程序。然而,在过去的几十年里,许多污水管道都是用钢筋混凝土设计的,这些管道都简洁地考虑了这些促进劣化的因素。事实上,在预测下水道的预期寿命或剩余寿命时,与钢筋混凝土劣化过程有关的知识已成为一个重要问题。在这些过程中,厚度和强度的损失以及孔隙度的增加被发现是硫氧化细菌和某些类型的真菌的重要活动的结果。本文提出了一种合理的方法,使用生物劣化测量来描述生物劣化效应如何影响下水道寿命期间的故障概率。基于对数正态分布和均匀分布的数值抽样,采用蒙特卡罗模拟方法获得了失效概率。混凝土和钢筋强度、几何特性、顶空H2S浓度和荷载值是不确定性的主要来源。结果表明,在低H2S浓度和高H2S浓度下,预期使用寿命分别为55 ~ 37年。
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Probabilistic Assessment of Biodeterioration Effects on Reinforced Concrete Sewers
The worldwide current practice of the structural design of sewers is based on procedures which usually include the effects caused by chemical and biological deterioration. However, in the last few decades, many sewer pipes have been designed using reinforced concrete which have succinctly considered such deterioration promoters. Indeed, knowledge related to reinforced concrete deterioration processes has become an important issue when forecasting the expected or remaining lifespan of sewers. Within these processes, thickness and strength losses and porosity augments have been found to be the result of the vital activity of sulfur-oxidizing bacteria and some types of fungus. This paper presents a rational methodology that uses biodeterioration measurements to describe how biodeterioration effects can affect the probability of failure during the lifetime of sewers. The probability of failure was obtained using Monte Carlo simulations based on numerical sampling from lognormal and uniform distributions. The concrete and reinforcement strength, geometric properties, H2S concentration in the headspace, and load values were considered as the main sources of uncertainty. The results indicate that the expected service lifespan can vary between 55 and 37 years for low and high H2S concentrations, respectively.
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