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可持续建筑形式的紧凑性度量。

A compactness measure of sustainable building forms.

作者信息

D'Amico Bernardino, Pomponi Francesco

机构信息

REBEL (Resource Efficiency Built Environment Lab), Edinburgh Napier University, Edinburgh, UK.

出版信息

R Soc Open Sci. 2019 Jun 12;6(6):181265. doi: 10.1098/rsos.181265. eCollection 2019 Jun.

Abstract

Global population growth and urbanization necessitate countless more buildings in this century, causing an unprecedented increase in energy consumption, greenhouse gas emissions, waste generation and resource use. It is imperative to achieve maximal efficiency in buildings quickly. The building envelope is a key element to address environmental concerns, as it is responsible for thermal transfers to the outdoors, causing energy demand and carbon emissions. It also requires cladding, thus consuming a significant amount of finite resources. This paper investigates the relationship between surface area and indoor space to unravel the sustainability of building forms. Firstly, we demonstrate what the optimal form is. Secondly, as a single definite form is of little use in practice, we develop a scale-independent metric to measure the degree of optimality of building forms and show its practical use. This newly developed metric can significantly help in early design stages, by quantifying how much a building form deviates from optimality and identifying the domain of alternative geometries to bring us closer to it. This compactness measure also represents a theoretical basis for further research, to explore how optimality changes when additional parameters are factored in. It therefore contributes to both theory and practice to support global efforts towards sustainable built environments.

摘要

全球人口增长和城市化使得本世纪需要建造更多的建筑,这导致能源消耗、温室气体排放、垃圾产生和资源使用量空前增加。必须尽快实现建筑的最高效率。建筑围护结构是解决环境问题的关键要素,因为它负责向室外的热传递,从而导致能源需求和碳排放。它还需要覆层,因此消耗大量有限资源。本文研究表面积与室内空间之间的关系,以揭示建筑形式的可持续性。首先,我们展示最优形式是什么。其次,由于单一确定的形式在实践中用处不大,我们开发了一种与比例无关的度量方法来衡量建筑形式的最优程度,并展示其实际用途。这种新开发的度量方法可以在早期设计阶段提供显著帮助,通过量化建筑形式偏离最优程度的多少,并确定替代几何形状的范围,以使我们更接近最优形式。这种紧凑性度量也为进一步研究提供了理论基础,以探索当考虑其他参数时最优性如何变化。因此,它对理论和实践都有贡献,以支持全球为实现可持续建筑环境所做的努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff6/6599769/69f234bb6122/rsos181265-g1.jpg

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