混凝土和后张拉索劣化对混凝土围护结构应变测量的影响

IF 0.6
Yuqing Ding, S. Jaffer
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引用次数: 0

摘要

混凝土安全壳是核电站的重要安全结构;然而,随着年龄的增长,CCB可能会发生退化。对于后张式CCB,可能会发生预应力损失,并可能影响CCB在事故条件下的性能。CANDU CCB包含水泥灌浆后张拉(P-T)电缆。P-T电缆的灌浆防止了通过传统的剥离测试直接监测预应力损失。一些指南建议将仪器监测作为一种间接方法,用于灌浆预应力系统CCB的完整性评估。作为仪器数据与CCBs完整性之间关系研究的一部分,已经使用有限元模型进行了敏感性分析,以了解应变变化对导致预应力损失的退化因素的敏感性,如混凝土的蠕变和收缩、应力松弛,以及预应力系统的劣化。对CANDU CCB的应变测量结果进行了分析,以评估测量噪声,并将其与由于退化而预测的应变变化进行了比较,以评估应变仪器是否可以捕捉到混凝土和预应力系统的退化。分析表明,除了CCBs早期的蠕变和收缩外,退化引起的应变变化与测量应变数据中观察到的噪声水平相当。与预应力损失相关的退化机制对应变变化有着相互矛盾的影响,很难单独评估。因此,使用应变仪可能很难检测预应力损失和单个退化问题的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE IMPACT OF CONCRETE AND POST-TENSIONING CABLE DEGRADATION ON STRAIN MEASUREMENTS OF CONCRETE CONTAINMENT BUILDINGS
Concrete containment buildings (CCBs) are important safety structures in nuclear power plants; however, degradation may occur in CCBs as they age. For post-tensioned CCBs, prestressing losses could occur and may affect the CCBs’ performance under accident conditions. CANDU CCBs contain cement-grouted post-tensioning (P-T) cables. The grouting of P-T cables prevents direct monitoring of prestressing losses by traditional lift-off testing. Instrumented monitoring has been recommended as an indirect approach by some guidelines for integrity evaluation of CCBs with grouted prestressing systems. As part of the investigation on the relationship between instrumentation data and the integrity of CCBs, sensitivity analyses have been performed using finite element models to develop an understanding of the sensitivity of strain changes to degradation factors that contribute to prestressing losses, such as creep and shrinkage of the concrete, stress relaxation, and deterioration of prestressing systems. Strain measurements from a CANDU CCB were analysed to assess the measurement noise, which was compared with the predicted strain changes due to degradation to evaluate whether the degradation of concrete and prestressing systems can be captured by strain instrumentation. The analysis reveals that the strain changes due to degradation, except the creep and shrinkage during the early years of CCBs, were comparable with the level of noise observed in the measured strain data. Degradation mechanisms related to prestressing losses have conflicting effects on strain changes and are difficult to assess individually. Therefore, it could be difficult to detect the prestressing losses and the effect of individual degradation issues using strain instrumentation.
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来源期刊
CNL Nuclear Review
CNL Nuclear Review NUCLEAR SCIENCE & TECHNOLOGY-
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