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Review of modelling approaches for passive ceiling cooling systems

机译:审查被动式天花板冷却系统的建模方法

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摘要

Passive ceiling cooling systems can lead to reduced cooling requirements, less fan energy and downsized ductwork, compared to conventional all-air systems. Additionally, radiant cooling of occupants allows for improved comfort while allowing for higher operating temperature, improving chiller efficiency. This paper presents a comprehensive review of current modelling approaches for passive ceiling cooling systems in order to document the state of the art and identify current research gaps and modelling development needs. Modelling methods are separated in three main categories, based on the domain of interest: component or passive ceiling cooler models, indoor environment models and integrated models. Simplified, detailed and empirical models are presented for each category. Different modelling approaches may be appropriate for different purposes (design vs. control analysis, and system simulation vs. whole building performance). The study summarizes useful findings, modelling limitations and applications, and presents needs for further modelling and simulation research, including passive chilled beams.
机译:与传统的全空气系统相比,被动式天花板冷却系统可降低冷却需求,减少风扇能量并缩小风道尺寸。此外,对乘员进行辐射冷却可提高舒适度,同时允许更高的工作温度,从而提高冷却器效率。本文对无源天花板冷却系统的当前建模方法进行了全面回顾,以记录最新技术并确定当前的研究差距和建模开发需求。根据感兴趣的领域,建模方法分为三个主要类别:组件式或无源天花板冷却器模型,室内环境模型和集成模型。为每个类别提供了简化,详细和经验模型。不同的建模方法可能适用于不同的目的(设计与控制分析,系统仿真与整体建筑性能)。该研究总结了有用的发现,建模的局限性和应用,并提出了进一步建模和仿真研究的需求,包括被动冷梁。

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