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Design of low-cost and loW-CO_2 air-entrained fly ash-blended concrete considering carbonation and frost durability

机译:考虑碳化和霜冻耐久性的低成本和低CO_2空气夹带粉煤灰混合混凝土设计

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Fly ash is increasingly used for producing sustainable concrete. This paper outlines a procedure for the optimal mixture design of air-entrained fly ash-blended concrete considering carbonation and frost durability. First, the aim function of the optimization is set as the total cost, which equals the material cost plus the CO2 emission cost. Constraints such as mechanical, workability, carbonation, and frost durability properties are considered during the optimization design procedure. The carbonation model considers the effect of global warming, including increasing CO2 concentration and environmental temperature. Second, a genetic algorithm is used for determining the optimal concrete mixtures. A total of 12 design examples are prepared for various frost exposure conditions (including mild, moderate, and severe exposure), and the effects of the carbonation durability and climate change on the mixture design are highlighted. According to the results, 1) for ordinary-strength concrete (design strength of 30 MPa), the carbonation durability is the decisive factor in the mixture design, and the actual strength should be greater than the design strength; 2) for high-strength concrete (design strength of 45 MPa), strength is the decisive factor in the mixture design, and the actual strength can equal the design strength; 3) for a particular entrained air content, the total cost of concrete increases with increasing concrete strength. In summary, the proposed method is a general and useful approach for designing air-entrained fly ashblended concrete considering sustainability and durability. (C) 2020 Elsevier Ltd. All rights reserved.
机译:粉煤灰越来越多地用于生产可持续混凝土。本文概述了考虑碳化和霜冻耐久性的空气夹带粉煤灰混凝土的最佳混合设计的程序。首先,优化的AIM功能被设定为总成本,其等于材料成本加上二氧化碳排放成本。在优化设计过程中考虑了在优化设计过程中考虑了机械,可加工性,碳化和霜耐久性特性的约束。碳化模型考虑了全球变暖的影响,包括增加CO 2浓度和环境温度。其次,遗传算法用于确定最佳混凝土混合物。对于各种霜冻暴露条件(包括轻度,中度和严重暴露),共制备12个设计实例,并突出了碳化耐久性和气候变化对混合物设计的影响。根据结果​​,1)对于常温混凝土(设计强度为30MPa),碳化耐久性是混合设计中的决定性因素,实际强度应大于设计强度; 2)对于高强度混凝土(设计强度为45 MPa),强度是混合物设计中的决定性因素,实际强度可以等于设计强度; 3)对于特定的夹带空气含量,混凝土总成本随着混凝土强度的增加而增加。总之,所提出的方法是考虑到可持续性和耐用性的空气夹带飞灰混凝土的一般和有用的方法。 (c)2020 elestvier有限公司保留所有权利。

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