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Evaluation of Eco-Efficiency and Performance of Retrofit Materials

机译:改造材料的生态效益和性能评估

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摘要

In this work three materials namely Fiber Reinforced Polymer (FRP), ferrocement and Textile Reinforced Concrete (TRC) have been evaluated towards their performance efficiency and eco-effectiveness for sustainable retrofitting applications. Investigations have been carried out for flexural strengthening of RC beams with FRP, ferrocement and TRC. It is observed that in the case of FRP, it is not possible to tailor the material according to design requirements and most of the time strengthened structure becomes over stiff. Eco-effectiveness of these retrofitting materials has been evaluated by computing the embodied energy. It is observed that the amount of CO_2 emitted by TRC is less compared to other retrofit materials. Further, the performance point of retrofitted RC frames has been evaluated and damage index has been calculated to find out the effective retrofit material. It is concluded that, if RC frame is retrofitted with FRP and TRC, it undergoes less damage compared to ferrocement.
机译:在这项工作中,对三种材料,即纤维增强聚合物(FRP),高铁和纺织纤维混凝土(TRC)进行了评估,以评估它们在可持续改造应用中的性能效率和生态效益。已经进行了使用FRP,加筋和TRC的RC梁抗弯加固的研究。可以观察到,在FRP的情况下,无法根据设计要求来定制材料,并且大多数时候强化结构变得过硬。这些翻新材料的生态效益已通过计算实际能量进行了评估。可以发现,与其他改型材料相比,TRC排放的CO_2量更少。此外,已评估了改装后的RC框架的性能点,并计算了损坏指数以找出有效的改装材料。结论是,如果对RC框架进行FRP和TRC改造,则与钢筋混凝土相比,受损较小。

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