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Numerical prediction of stress and displacement of ageing concrete dam due to alkali-aggregate and thermal chemical reaction

机译:碱骨料和热化学反应对老化混凝土坝应力和位移的数值预测

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摘要

The damage of concrete due to the expansion of alkali-aggregate reaction (AAR) and thermal-chemical reactions affecting the strength of concrete is studied. The empirical equations for the variations of expansion of AAR, compressive strength and degradation of the modulus of elasticity with time, and compressive strength with degradation of the modulus of elasticity are proposed by analysing numerous experimental data. It is revealed that the expansion of AAR and compressive strength increase with time. The proposed combination of the time variations of chemical and mechanical parameters provides a satisfactory prediction of the concrete strength. Seismic analysis of the aged Koyna dam is conceded for two different long-term experimental data of concrete incorporating the proposed AAR based properties. The responses of aged Koyna dam reveal that the crest displacement of the Koyna dam significantly increases with time while the contour plots show that major principal stress at neck level reduces with time. As the modulus of elasticity decreases with ages the stress generated in the concrete structure get reduces. On the other hand with lesser value of modulus of elasticity the structure becomes more flexible and the crest displacement becomes very high that cause the seismic safety of the dam reduce.
机译:研究了由于碱集料反应(AAR)的扩展和热化学反应对混凝土强度的影响而对混凝土造成的破坏。通过分析大量实验数据,提出了AAR膨胀,抗压强度和弹性模量随时间变化以及抗压强度随弹性模量随时间变化的经验方程。结果表明,AAR的膨胀和抗压强度随时间增加。化学和机械参数的时间变化的拟议组合为混凝土强度提供了令人满意的预测。考虑到两种提出的基于AAR的特性的混凝土的长期不同实验数据,对Koyna老坝进行了地震分析。老化的科伊纳水坝的响应表明,科伊纳水坝的顶峰位移随时间显着增加,而等高线图表明,颈部水平处的主要主应力随时间减小。随着弹性模量的增加,随着年龄的增长,混凝土结构中产生的应力也会减小。另一方面,当弹性模量值较小时,结构会变得更柔韧,波峰位移会变得很高,从而导致大坝的地震安全性降低。

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