用于快速部署和可重复使用系统的承重家具模块

IF 2.2 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
M. Riggio, Alberto Dalle Vedove, Maurizio Piazza
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引用次数: 0

摘要

建筑行业迫切需要减少碳排放,这推动了在建筑环境中探索循环经济的做法。然而,循环经济原则在项目中的实施仍然有限。本研究提出了一个项目建议,建立了一个模块化系统类型,旨在方便组装、拆卸和再利用,从而弥补了这一差距。具体来说,该提案侧重于承重木家具模块(FMs),将其作为平面模块和体积模块之间的中间解决方案。这些家具模块扩大了结构墙的体积,便于集成服务、存储和设备。这就解决了需要快速部署建筑的情况。与容积式解决方案相比,拟议的模块尺寸提高了运输效率,并通过消除平面系统中的临时稳定需求简化了施工。FM 模块中每个组件的标准化和 "可分离 "性便于集成和维护。我们特别关注调频内部和之间的木材连接系统,以方便组装和拆卸,以便将来重新使用。调频概念的适应性体现在多变的组合和布局上,便于空间的重新配置。虽然基于调频的系统在技术上是可行的,但还需要进一步研究,以解决地区和文化差异问题,并根据不同环境定制系统。这项研究强调了调频作为符合循环经济原则的建筑解决方案的潜力,并强调了在这一领域继续研究和开发的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load-bearing furniture modules for fast deployable and reusable systems
The urgent need to reduce carbon emissions in the construction sector has driven the exploration of circular economy practices in the built environment. Nevertheless, the implementation of circular economy principles in projects remains limited. This research contributes to bridging this gap by introducing a project proposal that establishes a typology of modular systems designed for easy assembly, disassembly, and reuse. Specifically, the proposal focuses on load-bearing wood furniture modules (FMs) as an intermediate solution between planar and volumetric modules. These FMs expand the structural wall’s volume, facilitating the integration of services, storage, and appliances. This addresses scenarios where swift building deployment is required. The proposed modular dimension enhances transportation efficiency compared to volumetric solutions and simplifies construction by eliminating the need for temporary stabilization, as seen in planar systems. Standardization and “separability” of each component within the FM allows for easy integration and maintenance. Special attention is paid to the timber connection systems within and between FMs facilitating easy assembly, and disassembly for future reuse. The adaptability of the FM concept is demonstrated through versatile compositions and layouts, facilitating space reconfiguration. While the technical feasibility of the FM-based system is demonstrated, further research is needed to address regional and cultural variations and customize the system to different contexts. The study emphasizes the potential of FMs as a solution for buildings aligned with circular economy principles and highlights the importance of continued research and development in this field.
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来源期刊
Frontiers in Built Environment
Frontiers in Built Environment Social Sciences-Urban Studies
CiteScore
4.80
自引率
6.70%
发文量
266
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