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Comprehensive investigation of embodied carbon emissions, costs, design parameters, and serviceability in optimum green construction of two-way slabs in buildings

机译:全面研究建筑物双向二层板最佳绿色施工中的具体碳排放量,成本,设计参数和可维修性

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This paper presents an optimum design model for the green construction of reinforced concrete two-way slabs in buildings. The model was applied to various design cases of two-way slabs in residential, office, and commercial buildings to derive designs that minimize environmental impact. The sustainability and economic feasibility of the derived designs were extensively compared with those of the conventional design method in relation to the material composition of concrete and steel in slabs, design parameters, and dominant design factors. As compared to the conventional design method, the optimum sustainable design method achieved average CO2 emission reductions of 4.94%, 11.40%, and 19.96% for residential, office, and commercial buildings, respectively, for all design cases considered in this study. Moreover, a multi-objective optimum design method that could simultaneously minimize embodied carbon emissions, cost, and vibration responses was created to consider the serviceability for vibrations induced by human activity in buildings. The design method was applied for the design cases of slabs in residential and office buildings, which are sensitive to human-induced vibrations. A design with increased concrete strength was derived to satisfy vibration criteria in the case of a residential building. This resulted in an increase of 8.89% in embodied carbon emissions compared with the conventional design method. On the contrary, in the case of an office building, the derived design showed a reduction of 15.79% in embodied carbon emissions while satisfying vibration criteria. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文为建筑钢筋混凝土双向板的绿色施工提供了一种最佳的设计模型。该模型被应用于住宅,办公室和商业建筑中双向路面板的各种设计案例,以推导出最小化环境影响的设计。就平板中混凝土和钢材的材料成分,设计参数和主要设计因素而言,与常规设计方法相比,衍生设计的可持续性和经济可行性得到了广泛的比较。与传统设计方法相比,最佳可持续设计方法在本研究中考虑的所有设计案例中,住宅,办公室和商业建筑的平均CO2排放量分别减少了4.94%,11.40%和19.96%。此外,创建了一种多目标的最佳设计方法,该方法可以同时最小化所体现的碳排放量,成本和振动响应,以考虑建筑物中人类活动引起的振动的适用性。该设计方法适用于对人为振动敏感的住宅和办公楼楼板的设计案例。在住宅建筑中,得出了一种提高混凝土强度的设计以满足振动标准。与传统的设计方法相比,这导致体现的碳排放量增加了8.89%。相反,在办公楼中,派生的设计显示出在满足振动标准的同时,实现的碳排放量减少了15.79%。 (C)2019 Elsevier Ltd.保留所有权利。

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