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首页> 外文期刊>Journal of structural engineering >Advancing the Design of Resilient and Sustainable Buildings: An Integrated Life-Cycle Analysis
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Advancing the Design of Resilient and Sustainable Buildings: An Integrated Life-Cycle Analysis

机译:推进弹性和可持续建筑物的设计:综合生命周期分析

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摘要

A holistic evaluation of a building's environmental impact must include a thorough accounting of both its operating and embodied energies, inclusive of the influence of hazard-induced damage and repairs. Unfortunately, these considerations are notoriously absent in today's practice owing to a traditionally segmented approach to the design process that has perpetuated interoperability challenges between existing commercial tools. In response to this and other limitations of existing approaches, this paper offers an integrated life-cycle assessment (iLCA) that (1) considers the effects of site-specific climate and exposure to wind and seismic hazards on a building's embodied and operating energy, (2) adopts an assembly-based approach to reveal the specific components influencing performance outcomes, (3) accommodates both risk-neutral and risk-adverse perspectives, and (4) addresses interoperability challenges that limit access to the data stored within commercial building information models. The resulting iLCA is partitioned into a sustainability workflow, with modules dedicated to embodied and operating energy, and a resilience workflow, sequencing modules for hazard characterization, structural response, damage, and repair/loss. A custom parser leverages semantic technologies to efficiently extract geometry and material information from the underlying data structures of Revit building information models; this parser ultimately supplies the required building data to each module. A unifying probabilistic framework is then adopted to quantify life-cycle performance, in terms of repair costs and total (embodied and operating) energy, with emphasis placed on expanding the statistical descriptions of performance to support both risk-neutral and risk-averse decision-making. The iLCA is applied to a case study office building at two sites to demonstrate the effects of climate and wind and seismic hazards on the performance of specific components over different service lives, inclusive of potential performance variability due to hazard exposure. The framework is further leveraged to examine how different sources of uncertainty, or assumptions surrounding the quantification of this uncertainty, impact life-cycle performance estimates. (C) 2020 American Society of Civil Engineers.
机译:对建筑物的环境影响的整体评估必须包括其经营和体现能量的彻底核算,包括危险造成损伤和维修的影响。不幸的是,由于传统上分割了在现有商业工具之间具有永久性互操作性挑战的设计过程的传统分割方法,这些考虑因素令人难以缺乏。为了响应现有方法的其他局限性,本文提供了综合生命周期评估(ILCA)(1)考虑了场地特定气候的影响,并在建筑物的体现和运营能源上造成风和地震危害的影响, (2)采用基于组装的方法来揭示影响性能结果的特定组分,(3)适应风险中立和风险不利的观点,(4)解决限制商业建筑信息中存储的数据访问的互操作性挑战楷模。得到的ILCA被划分为可持续性工作流程,模块专用于体现和操作能量,以及弹性工作流程,用于危险表征,结构响应,损坏和修复/损失的测序模块。自定义解析器利用语义技术从Revit构建信息模型的底层数据结构有效地提取几何和材料信息;此解析器最终将所需的构建数据提供给每个模块。然后采用统一的概率框架来量化生命周期性能,以维修成本和总(体现和运营)能源,重点是扩大对性能的统计说明,以支持风险中立和风险厌恶决策 - 制作。 ILCA适用于两个地点的案例研究办公楼,以证明气候和风和地震危害对不同服务生活的特定组成部分的性能的影响,包括由于危险暴露导致的潜在性能变化。进一步利用该框架来检查如何不同的不确定性来源,或围绕这种不确定性的量化的假设,影响生命周期性能估计。 (c)2020年美国土木工程师协会。

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