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Embodied greenhouse gas assessment of a bridge: A comparison of preconstruction Building Information Model and construction records

机译:体现了一座桥梁的温室气体评估:预先构建建筑信息模型和施工记录的比较

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This paper presents an embodied GHG assessment of a completed highway bridge renewal project in Canada and offers new insights on the strengths and limitations of BIM-based GHG assessments. Bridges play a critical role in transportation infrastructure. As reducing environmental impacts has taken on increasing urgency across the construction sector, bridges have received relatively little study. A quantitative understanding of the embodied greenhouse gas emissions (GHG) in bridges is needed to inform future infrastructure planning, design, and construction. Recent efforts to streamline environmental assessment in construction have led to the creation and adoption of Building Information Model (BIM) based embodied GHG assessments, taking advantage of the quantity take-off functionality of BIM. However, as BIMs are rarely developed with environmental assessment as the primary goal, their effectiveness for GHG accounting can be limited. GHG assessments of the case study bridge using a BIM prepared before construction and using material and energy quantities records collected on-site during construction, are compared. Using only the quantities from preconstruction BIM, the embodied GHG for the case study bridge is 1.3 x 10(6) kgCO(2)e. After the adjustments for on-site data collection and factors commonly excluded from BIM, such as on-site fuel use from machinery, it rises to 4.06 x 10(6) kgCO(2)e, an increase of 212%. Results illustrate the need to change the scope and detail of BIMs if they are to be effective for embodied GHG assessment, and the potential limitations of using BIM in embodied GHG assessment. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了加拿大完整的高速公路桥重建项目的体现温室气体评估,对基于BIM的温室气体评估的优势和局限性提供了新的见解。桥梁在运输基础设施中发挥着关键作用。由于减少了环境影响,采取了施工部门的增加,桥梁已经收到了相对较少的研究。需要定量了解桥梁中所体现的温室气体排放(GHG),以通知未来的基础设施规划,设计和建设。最近精简建设环境评估的努力导致了基于建筑信息模型(BIM)的建筑信息模型(BIM),利用BIM的数量耗时功能。然而,由于BIMS很少与环境评估开发为主要目标,因此他们对GHG核算的有效性可以有限。比较使用BIM在施工前使用BIM进行案例研究桥的GHG评估,并使用施工期间内收集的材料和能量数量记录。仅使用预先构建BIM的数量,案例研究桥的实施温室为1.3×10(6)kgco(2)e。在现场数据收集的调整之后和通常排除在BIM之外的因素,例如从机械的现场燃料使用,它上升至4.06 x 10(6)kgco(2)e,同比增长212%。结果说明了如果对体现的温室气体评估有效,则需要改变BIMS的范围和细节,以及使用BIM体现的GMG评估的潜在限制。 (c)2021 elestvier有限公司保留所有权利。

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