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Performance prediction of biomimetic adaptive building skins: Integrating multifunctionality through a novel simulation framework

机译:仿生自适应建筑皮肤的性能预测:通过新型仿真框架整合多功能

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Biomimetic adaptive building skins (Bio-ABS), being adaptable to changing environmental conditions, can foster improved comfort and reduced energy demand. Bio-ABS are climate-adaptable facades, and biological functions inspire their design. Buildings often require multiple functions for improved environmental performance. Multifunctionality refers to hosting multiple triggered by diverse stimuli interdependently. The realisation of multifunctional Bio-ABS may be challenging due to difficult construction processes, expensive materials, and the complexity in their application. Thus, digital modelling and simulation of multifunctional Bio-ABS are important to predict their performance. This paper reviews the studies on simulating Bio-ABS, proposes a novel simulation framework for multifunctional Bio-ABS and demonstrates it through a parametric case study. Performance comparisons among twenty base-case scenarios and 600 iterations of shading and ventilating multifunctional Bio-ABS provides shading through photovoltachromic (PVC) glazing and ventilation through Shape Memory Alloy (SMA) springs triggered openings. It is multifunctional by changing its morphology and physiology due to photovoltachromic glazing triggered by solar irradiance and Shape Memory Alloys being triggered by temperature. The results show that Bio-ABS improves building performance when compared against non-adaptable facades, reaching 37.1% for 90% acceptability limits and 18% for 80% acceptability limits for adaptive thermal comfort in an educational building in the humid subtropical climate of Sydney. Australia. The main outcome and contribution of this study is a novel simulation framework to predict the performance of morphology and physiology changing multifunctional Bio-ABS. Future work may focus on prototyping and validated experiments to close the gap between theory and the real world.
机译:仿生自适应建筑皮肤(BIO-ABS)适应改变环境条件,可以提高舒适性和降低的能源需求。生物ABS是气候适应性的外墙,生物功能激发了他们的设计。建筑物通常需要多种功能,以改善环境性能。多功能性是指通过相互依赖的多样化刺激触发的托管多个触发。由于困难的施工过程,昂贵的材料和应用中的复杂性,实现多功能生物ABS的实现可能是挑战性的。因此,多功能生物ABS的数字建模和模拟对于预测其性能很重要。本文综述了模拟生物腹肌的研究,提出了一种用于多功能生物ABS的新型仿真框架,并通过参数案例研究表明它。二十大基本情况的性能比较和600个遮蔽和通风多功能生物ABS的镜片通过光伏(PVC)玻璃窗通过形状记忆合金(SMA)弹簧触发开口的遮蔽和通风。由于太阳辐照度和形状记忆合金触发的光伏致电压玻璃,通过改变其形态和生理而改变其形态和生理是多功能的。结果表明,与不适应性外墙相比,生物ABS提高了建筑物性能,达到了90%可接受性限制的37.1%,80%可接受性限制为悉尼潮湿亚热带气候的教育建设中的适应性热舒适性,18%。澳大利亚。本研究的主要结果和贡献是一种新型模拟框架,以预测形态学和生理学变化多功能生物腹肌的性能。未来的工作可能会集中在原型和验证的实验上,以缩小理论与现实世界之间的差距。

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