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Impacts of climate change on optimal mixture design of blended concrete considering carbonation and chloride ingress

机译:考虑碳化和氯化物入口的碳化混凝土最优混合设计气候变化对混合混凝土的影响

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摘要

Many studies on the mixture design of fly ash and slag ternary blended concrete have been conducted. However, these previous studies did not consider the effects of climate change, such as acceleration in the deterioration of durability, on mixture design. This study presents a procedure for the optimal mixture design of ternary blended concrete considering climate change and durability. First, the costs of CO_2 emissions and material are calculated based on the concrete mixture and unit prices. Total cost is equal to the sum of material cost and CO_2 emissions cost, and is set as the objective function of the optimization. Second, strength, slump, carbonation, and chloride ingress models are used to evaluate concrete properties. The effect of different climate change scenarios on carbonation and chloride ingress is considered. A genetic algorithm is used to find the optimal mixture considering various constraints. Third, illustrative examples are shown for mixture design of ternary blended concrete. The analysis results show that for ternary blended concrete exposed to an atmospheric environment, a rich mix is necessary to meet the challenge of climate change, and for ternary blended concrete exposed to a marine environment, the impact of climate change on mixture design is marginal.
机译:已经进行了许多关于粉煤灰和炉渣三元混合混凝土混合设计的研究。然而,这些先前的研究没有考虑气候变化的影响,例如加速在耐久性的情况下,在混合设计中。本研究提出了考虑气候变化和耐久性的三元混合混合混合混合混合的最佳混合设计的程序。首先,基于混凝土混合物和单位价格计算CO_2排放和材料的成本。总成本等于材料成本和CO_2排放成本的总和,并被设置为优化的目标函数。二,强度,坍落度,碳化和氯化物入口模型用于评估混凝土性质。考虑了不同气候变化情景对碳化和氯化物进入的影响。遗传算法用于考虑各种约束的最佳混合物。第三,示出了用于三元混合混凝土的混合设计的说明性实例。分析结果表明,对于大气环境暴露的三元混合混凝土,有助于满足气候变化的挑战,以及暴露于海洋环境的三元混合混合,对混合物设计的影响是边缘的影响。

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