Airborne Pollutant Removal Effectiveness and Hidden Pollutant Source Identification of Bionic Ventilation Systems: Direct and Inverse CFD Demonstrations

IF 4.3 2区 环境科学与生态学 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Indoor air Pub Date : 2023-12-16 DOI:10.1155/2023/5522169
Hong-Liang Zhang, Bin Li, Jin Shang, Wei-Wei Wang, Fu-Yun Zhao
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Abstract

A healthy and efficient ventilation system is essential for establishing a comfortable indoor environment and significantly reducing a building’s energy demand simultaneously. This paper proposed a novel ventilation system and applied it to the IEA Annex 20 mixing ventilation enclosure to verify its feasibility through mathematical modeling and CFD simulations. First, two bionic ventilation systems, single-side and dual-side ventilations, were compared to a conventional constant-volume supply system using CFD simulations, with the results demonstrating that the bionic ventilation system could provide higher ventilation efficiency and more effective pollutant removal from stagnant regions. Furthermore, the present work exercised these two bionic ventilation systems with different temporal periods of sine and rectangular wave functions, identifying a turning point at a period of 0.06 τ n , which could contribute to further enhancement of these bionic ventilation systems. Finally, a methodology depending on the Bayesian inference algorithm was developed for identifying pollution sources in the bionic ventilation system with unstable flow fields, and factors influencing source identification accuracy were discussed. The results show that the peaks of the KDE distributions and the sampling average values of both the source location and intensity are all consistent with the actual source parameters. The potential of the proposed bionic ventilation systems has been well demonstrated by direct and inverse CFD models, paving the way for further engineering applications.
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仿生通风系统的空气污染物去除效果和隐性污染源识别:直接和反向 CFD 演示
健康高效的通风系统对于营造舒适的室内环境和同时大幅降低建筑物的能源需求至关重要。本文提出了一种新型通风系统,并将其应用于 IEA Annex 20 混合通风围护结构,通过数学建模和 CFD 模拟验证其可行性。首先,利用 CFD 模拟将单侧通风和双侧通风两种仿生通风系统与传统的恒定风量供给系统进行了比较,结果表明仿生通风系统可以提供更高的通风效率,更有效地去除停滞区域的污染物。此外,本研究还利用正弦波和矩形波函数的不同时间周期对这两种仿生通风系统进行了锻炼,确定了 0.06 τ n 周期的转折点,这有助于进一步提高这些仿生通风系统的性能。最后,开发了一种基于贝叶斯推理算法的方法,用于识别流场不稳定的仿生通风系统中的污染源,并讨论了影响污染源识别准确性的因素。结果表明,KDE 分布的峰值以及污染源位置和强度的采样平均值均与实际污染源参数一致。直接和反向 CFD 模型充分证明了拟议仿生通风系统的潜力,为进一步的工程应用铺平了道路。
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来源期刊
Indoor air
Indoor air 环境科学-工程:环境
CiteScore
10.80
自引率
10.30%
发文量
175
审稿时长
3 months
期刊介绍: The quality of the environment within buildings is a topic of major importance for public health. Indoor Air provides a location for reporting original research results in the broad area defined by the indoor environment of non-industrial buildings. An international journal with multidisciplinary content, Indoor Air publishes papers reflecting the broad categories of interest in this field: health effects; thermal comfort; monitoring and modelling; source characterization; ventilation and other environmental control techniques. The research results present the basic information to allow designers, building owners, and operators to provide a healthy and comfortable environment for building occupants, as well as giving medical practitioners information on how to deal with illnesses related to the indoor environment.
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