Emission assessment of alternative dam structure types, a novel approach to consider in new dam projects

A. Alvanchi, Z. Bajalan, Pooya Iravani
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引用次数: 4

Abstract

Purpose Dams require high-volume of construction materials and operations over the life cycle. This paper aims to select a proper type of dam structure that can significantly contribute to the sustainability of dam projects. Design/methodology/approach This research proposes a complementary fuel consumption and carbon dioxide (CO2) emission assessment method for the alternate dam structure types to assist decision-makers in selecting sustainable choices. Related equations are developed for two common earthen and rock-fill dam structures types in Iran. These equations are then successfully applied to two real dam project cases where the significance of the achieved results are assessed and discussed. Findings The achieved results of the case studies demonstrate a high deviation of up to 41.3% in CO2 emissions comparing alternate dam structure scenarios of earthen and rock-fill dam structures. This high deviation represents an important potential for CO2 emission reduction considering the high volume of the emission in large dam projects. Originality/value The life cycle emission assessment of the alternate dam structures, proposed in this research as a novel complementary factor, can be used in the decision-making process of dam projects. The results in this research identify high potential sustainability improvement of dam projects as a result of the proposed method.
可选水坝结构类型的排放评价,是新建水坝工程考虑的新途径
大坝在整个生命周期中需要大量的建筑材料和操作。本文的目的是选择一种合适的水坝结构类型,可以显著促进水坝工程的可持续性。设计/方法/途径本研究提出了一种替代水坝结构类型的燃料消耗和二氧化碳(CO2)排放的互补评估方法,以帮助决策者选择可持续的选择。针对伊朗两种常见的土坝和石坝结构类型,建立了相关方程。然后将这些方程成功地应用于两个实际的大坝工程实例,并对所得结果的意义进行了评估和讨论。研究结果表明,对比土坝和堆石坝两种坝型结构的备选方案,两者在CO2排放上的偏差高达41.3%。考虑到大型水坝项目的高排放量,这种高偏差代表了二氧化碳减排的重要潜力。本研究提出的备用坝结构全生命周期排放评价作为一种新的互补因子,可用于大坝工程决策过程。本研究的结果表明,由于所提出的方法,大坝项目具有很高的可持续性改善潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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