建筑外墙的仿生设计:受大象皮肤启发的基于进化的计算方法,用于在湿热气候中降温

Nathan Hays, Lidia Badarnah, Anuj Jain
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引用次数: 0

摘要

在气温不断升高、气候变化日益受到关注的情况下,建筑环境在管理能源需求方面面临着巨大挑战。要实现碳排放目标和资源管理目标,就迫切需要创新更节能的冷却解决方案。大自然提供了一个庞大的适应性和高效热能解决方案数据库,可以通过生物仿生方法在建筑设计和系统中加以利用。新兴的仿生和计算方法有望促进实际应用工作。本文研究了如何将大象皮肤的形态特征转化为建筑外墙,通过使用进化算法进行计算设计来优化其内在冷却能力。通过探索,我们提出了一套通用的进化原则,为纹理外墙砖的开发提供了一个基础框架,目的是减少太阳辐射的热增益。这项研究深入分析了装配、纹理深度和方向如何影响热性能,通过了解纹理表面形态变化与环境性能之间的关系,设计出更有效的被动冷却系统。未来的研究可能包括研究自然对流动力学、优化毛细管网络、评估材料的水附着性和清洁性、评估对生物生长的影响以及探索纹理外墙板中的生物多样性整合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomimetic design of building facades: an evolutionary-based computational approach inspired by elephant skin for cooling in hot and humid climates
The built environment faces significant challenges in managing energy demands amidst rising temperatures and increasing concerns linked to climate change. Meeting carbon emissions targets and resource management goals necessitates urgent innovation in more energy-efficient cooling solutions. Nature offers a large database of adaptive and efficient thermal solutions that can be harnessed through biomimetic methods in building design and systems. Emerging biomimetic and computational approaches hold promise in facilitating practical application efforts. This paper investigates the translation of morphological features from elephant skin to building facades, optimizing their inherent cooling capabilities through computational design using evolutionary algorithms. Through this exploration, we propose a set of generalized evolutionary principles, offering a foundational framework for the development of textured facade tiles with the aim of mitigating heat gain from solar radiation. This study provides an in-depth analysis of how assembly, texture depth, and orientation impact thermal performance, enabling the design of more effective passive cooling systems through an understanding of the relationship between morphological variations in textured surfaces and environmental performance. Future research may involve studying natural convection dynamics, optimizing capillary networks, evaluating materials for water adhesion and cleaning, assessing impacts on biological growth, and exploring biodiversity integration within textured facade panels.
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