持続可能な循環型建築:線形建設からの移行における推進要因と障壁 – ミラノのボスコ・ヴェルティカーレの事例研究
Sustainable Circular Architecture: Drivers and Barriers in the Transition from Linear Construction – A Case Study of Bosco Verticale, Milan (原題)
Kais Abdulhusein Abbas
🤖 gxceed AI 要約
日本語
本研究は、高層住宅における循環型建築の導入要因と障壁を、ミラノのボスコ・ヴェルティカーレの事例を通して分析する。結果、CO2吸収や生物多様性など循環性の実証を示す一方、高コストや専門的維持管理などの障壁を特定。BIMとAIが障壁克服に寄与する可能性に言及する。
English
This qualitative case study of Bosco Verticale, Milan, analyzes drivers and barriers to circular architecture in high-rise residential buildings. It finds circularity exemplified through CO2 sequestration, biodiversity, and greywater reuse, but identifies high costs and specialized maintenance as key barriers. BIM and AI are suggested as potential mitigants.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では、建設分野の脱炭素と循環経済移行が政策課題であり、本稿の障壁分析は国内のゼロエネルギービルや長寿命化施策に示唆を与える。ただし、日本の法規制やSSBJとの直接的な関連は薄い。
In the global GX context
This paper contributes to global discourse on circular economy in the built environment, aligning with EU Circular Economy Action Plan and sustainable construction trends. It offers empirical insights on barriers that are relevant for international green building certification and policy development.
👥 読者別の含意
🔬研究者:Provides a qualitative framework for analyzing circularity in high-rise buildings, useful for comparative studies.
🏢実務担当者:Highlights practical barriers and potential tech solutions (BIM/AI) for circular construction projects.
🏛政策担当者:Identifies legal, financial, and social barriers that policy could address to promote circular buildings.
📄 Abstract(原文)
The urgent environmental challenges of resource depletion, waste generation, and climate change necessitate a paradigm shift in architecture from the conventional linear "take-make-dispose" model toward a regenerative circular economy. This study seeks to analytically investigate the key drivers and barriers to implementing sustainable circular architecture, with a specific focus on high rise residential buildings. Employing a qualitative case study methodology, this research analyzed the design, implementation, and ecological performance of Bosco Verticale in Milan against established circularity principles and LEED certification standards. According to the study’s results, Bosco Verticale exemplifies circularity because it combines biodiversity with many features, including: sequestration of 30 tons of CO₂; having more than 1,600 different species; features for reusing greywater; and the use of durable modular building materials. However, the study has identified many significant barriers to adopting these types of buildings more broadly: very high costs associated with construction; a need for intense, highly specialized maintenance; and structural complexity associated with each design. Moreover, it was found through the research that (BIM) and (AI) are two new technologies that may help reduce the roadblocks that have been encountered in the adoption of circular buildings. The result of this study is that the circular built environment can be adopted and implemented in an environmentally sustainable manner; however, it will take a concerted effort by architects, policymakers and urban designers to break down the legal, financial and social barriers that are preventing the sustainable construction of buildings with a circular design.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.52113/3/eng/mjet/2026-14-04-/76-89first seen 2026-09-07 04:37:09
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