通过生命周期评估实现战后建筑的可持续再利用

Pub Date : 2021-06-24 DOI:10.1080/13556207.2021.1943260
Lori Ferriss
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引用次数: 2

摘要

摘要二十世纪中期是一个建筑理想主义和快速技术创新的时期,建筑面积和建筑面积空前增长。随着设计运动的全球化和机械系统的发展,提供了现成的供暖和制冷服务,建筑对气候的反应变得越来越弱,运行起来也越来越耗能。这一时期的建筑也庆祝结构创新和新型材料,这导致了结构、围护结构和系统的频繁集成。这些特征导致建筑存量的能源效率通常很低,并对新材料的保护提出了挑战。与其说拆除并更换这些建筑是合理的,不如说它们的数量巨大,对全球温室气体排放的重大贡献是为什么必须有效地重新调整世纪中期建筑的用途,以实现气候目标,同时尊重它们的历史。由于必须将全球变暖控制在2摄氏度以下,重新利用和升级这些建筑提供了一个关键的近期碳减排战略。本文介绍了两个涉及这个时代本科生宿舍再利用的案例研究。第一个例子说明了恢复和再利用所节省的大量碳总量。第二个提出了一种基于分析的方法来设计改造,以优化有针对性的干预措施的碳回收。
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Sustainable reuse of post-war architecture through life cycle assessment
ABSTRACT The mid-twentieth century was a period of architectural idealism and rapid technological innovation paired with unprecedented growth in construction and built square footage. As design movements became global and mechanical systems evolved to provide ready access to heating and cooling, buildings became less climate responsive and more energy intensive to operate. Architecture of this time also celebrated structural innovation and novel materials, which led to frequent integration of structure, envelope, and systems. These characteristics resulted in a building stock with typically poor energy efficiency and new material challenges for conservation. Rather than a justification to tear down these buildings and replace them, their vast numbers and significant contributions to global greenhouse gas emissions are reasons why mid-century buildings must be effectively repurposed to meet climate goals while respecting their history. With the imperative to limit global warming to less than 2 degrees Celsius, reusing and upgrading these buildings provides a critical near-term carbon reduction strategy. This paper presents two case studies involving the reuse of undergraduate residence halls of this era. The first illustrates the substantial total carbon savings from restoration and reuse. The second proposes an analysis-based methodology for designing retrofits that optimize carbon payback of targeted interventions.
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