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Numerical studies of displacement natural ventilation in multi-storey buildings connected to an atrium

机译:与中庭相连的多层建筑物中置换自然通风的数值研究

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摘要

This paper describes computational fluid dynamics (CFD) simulations used to investigate displacement natural ventilation in simple multi-storey spaces connected to an atrium. The purpose of the work is to demonstrate the potential of CFD for modelling these airflows using solutions from simple mathematical models and salt bath experiments to provide an indication of the accuracy that can be attained. The storeys are connected to an atrium and air flows into them via top-down-chimneys. The driving force is provided by localised point heat sources on each floor which generate buoyant plumes that entrain the surrounding air and transport warm air upwards forming a warm, stratified layer in each storey. The mathematical models are used to describe the main flow features, such as stratification height, temperature gradient and ventilation flow rate. Results showed that, using the RNG κ - ε turbulence model, the predicted airflow patterns, temperature profiles and ventilation flow rates agreed favourably with the mathematical models, demonstrating the potential of using CFD for modelling buoyancy-driven displacement ventilation in multi-storey spaces connected to an atrium. Practical applications: Computer simulation programs have become valuable tools in the building design process, particularly of innovative buildings. This paper looks at the ability of CFD techniques to model buoyancy-driven natural ventilation in simple multi-storey spaces. The methods used in this paper provide a basis for others to use CFD for predicting natural ventilation in more complex, realistic building structures and are useful for both building designers and CFD practitioners.
机译:本文介绍了计算流体动力学(CFD)模拟,该模拟用于研究连接到中庭的简单多层空间中的置换自然通风。这项工作的目的是展示使用简单数学模型和盐浴实验得出的解决方案对这些气流进行建模的CFD的潜力,以表明可以达到的精度。楼层与中庭相连,空气通过自上而下的烟囱流入其中。驱动力由每个楼层上的局部点热源提供,这些点会产生可漂浮的羽流,这些羽流会带走周围的空气并向上传输温暖的空气,从而在每层楼中形成一个温暖的分层层。数学模型用于描述主要流动特征,例如分层高度,温度梯度和通风流量。结果表明,使用RNGκ-ε湍流模型,预测的气流模式,温度曲线和通风流量与数学模型吻合良好,证明了使用CFD建模连接多层住宅中浮力驱动的置换通风的潜力到中庭。实际应用:计算机模拟程序已成为建筑设计过程中的重要工具,尤其是在创新建筑中。本文研究了CFD技术在简单的多层空间中为浮力驱动的自然通风建模的能力。本文中使用的方法为其他人使用CFD预测更复杂,逼真的建筑结构中的自然通风提供了基础,并且对于建筑设计师和CFD从业人员都非常有用。

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