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Life Comparative Analysis of Energy Consumption and CO2 Emissions of Different Building Structural Frame Types

机译:不同建筑结构类型能耗与CO2排放量的寿命比较分析

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摘要

The objective of this research is to quantitatively measure and compare the environmental load and construction cost of different structural frame types. Construction cost also accounts for the costs of CO2 emissions of input materials. The choice of structural frame type is a major consideration in construction, as this element represents about 33% of total building construction costs. In this research, four constructed buildings were analyzed, with these having either reinforced concrete (RC) or steel (S) structures. An input-output framework analysis was used to measure energy consumption and CO2 emissions of input materials for each structural frame type. In addition, the CO2 emissions cost was measured using the trading price of CO2 emissions on the International Commodity Exchange. This research revealed that both energy consumption and CO2 emissions were, on average, 26% lower with the RC structure than with the S structure, and the construction costs (including the CO2 emissions cost) of the RC structure were about 9.8% lower, compared to the S structure. This research provides insights through which the construction industry will be able to respond to the carbon market, which is expected to continue to grow in the future.
机译:本研究的目的是定量测量和比较不同结构框架类型的环境负荷和建筑成本。建筑成本还占进料的CO2排放成本。结构框架类型的选择是建筑中的主要考虑因素,因为该元素约占建筑总建筑成本的33%。在这项研究中,分析了四座建筑,其中有钢筋混凝土(RC)或钢(S)结构。投入产出框架分析用于衡量每种结构框架类型的能耗和投入材料的二氧化碳排放量。此外,CO2排放成本是使用国际商品交易所上的CO2排放交易价格来衡量的。该研究表明,RC结构比S结构平均降低了能耗和CO2排放,与RC结构相比,RC结构的建造成本(包括CO2排放成本)降低了约9.8%。到S结构。这项研究提供了一些见识,建筑业将通过这些见识来应对碳市场,而碳市场有望在未来继续增长。

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