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Environmental efficiency of strengthening schemes for concrete beams with externally bonded fibre reinforced plastic composites

机译:外粘合纤维增强塑料复合材料混凝土梁强化方案的环境效率

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摘要

Externally bonded fibre reinforced plastic (FRP) is one of the most widely used methods in engineering practice to strengthen in-service reinforced concrete (RC) structures. Although some specifications, such as GB50367-2013 (China) and ACI440-2008 (U.S.A), have been issued to guide the design of strengthening schemes, few researches were conducted to evaluate environmental impacts of the strengthening schemes. This study aims to explore the environmental impact of FRP strengthened RC beam considering the structural safety and uncertainty, and to establish sustainable design criteria. Environmental impact and improvement of structural safety of two strengthening schemes designed according to the specifications of China (GB50367-2013) and U.S.A. (ACI440-2008) were evaluated by Life Cycle Assessment (LCA) method and reliability method, respectively. An environmental-efficiency index was introduced by taking an increment of safety as a functional unit in the LCA method. Furthermore, the allowable environmental impact was assumed and uncertainties involved in the LCA method were considered. The exceedance probability, denoting the possibility that environmental impact of a design scheme exceeds a presumed allowable value, is presented and calculated. It can be found that the environmental-efficiency indices of two schemes are close to each other. Moreover, the exceedance probability depends on the allowable environmental impact, thus it should be determined cautiously.
机译:外部粘合的纤维增强塑料(FRP)是加强钢筋混凝土(RC)结构的工程实践中最广泛使用的方法之一。虽然已经发出了一些规格,例如GB50367-2013(中国)和ACI440-2008(美国)和ACI440-2008(U.S.A),以指导加强方案的设计,但少数研究才能评估加强计划的环境影响。本研究旨在探讨FRP加强RC光束的环境影响,考虑到结构安全和不确定性,并建立可持续设计标准。根据中国(GB50367-2013)和U.S.A.(AC440-2008)分别通过生命周期评估(LCA)方法和可靠性方法来评估根据中国(GB50367-2013)和U.S.A.(ACI440-2008)进行的环境影响和改善结构安全。通过将安全性作为LCA方法中的功能单元的增量递增来引入环境效率指数。此外,假设允许的环境影响和参与LCA方法的不确定性。表示和计算出设计方案对环境影响的可能性,并计算出的概率。可以发现,两种方案的环境效率指数彼此接近。此外,超标概率取决于允许的环境影响,因此应该小心地确定。

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