Adaptive façade for building energy efficiency improvement by arithmetical optimization algorithm

Leyan Shi, Somayeh Pouramini
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引用次数: 7

Abstract

To improve the energy efficiency in buildings, a computational optimization method is suggested in this article. The method is designed based on the structure of the adaptive façade. This type of façade system can adjust its visible and thermal transmissivity for actively changing weather conditions. The main concept of this system is the optimization process. This process integrates the DesignBuilder as the building energy simulation tool with an optimization method, called arithmetical optimization algorithm, through the MLE+ toolkit. It is notable that the proposed approach can be applied to different building types and is also not involved in any specific optimization tool. In this regard, two case studies, a typical single office room, and a medium office building are selected to show the capability of the presented approach to improve the energy effectiveness of the building. Based on the results, the energy consumption is decreased by 15.0%–29.1% for the first case study and 14.3%–22.4% for the second case compared to the static façades. The adaptive façades' potentiality is indicated by the important achievements in this study.
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基于算术优化算法的建筑节能自适应优化
为了提高建筑的能源效率,本文提出了一种计算优化方法。该方法是在自适应farade结构的基础上设计的。这种类型的遮阳系统可以根据积极变化的天气条件调整其可见光和热透射率。本系统的主要概念是优化过程。该过程通过MLE+工具包,将DesignBuilder作为建筑能耗模拟工具与一种称为算术优化算法的优化方法相结合。值得注意的是,所提出的方法可以应用于不同的建筑类型,也不涉及任何特定的优化工具。在这方面,选择了两个案例研究,一个典型的单人办公室和一个中型办公楼,以显示所提出的方法提高建筑物能源效率的能力。结果表明,与静态环境相比,第一个案例的能耗降低了15.0% ~ 29.1%,第二个案例的能耗降低了14.3% ~ 22.4%。本研究取得的重要成果表明,该区具有较强的适应性。
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