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Modelling of a thermally activated building system (TABS) combined with free-hanging acoustic ceiling units using computational fluid dynamics (CFD)

机译:使用计算流体动力学(CFD)的热激活建筑系统(TaBs)与自由悬挂声学天花板单元的建模

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摘要

Thermally Activated Building Systems (TABS) have proven to be an energy-efficient solution to achieve optimal indoor thermal environment in buildings. This solution uses the building mass to store heat and by means of water pipes embedded in the concrete slabs adjust the temperature in the premises. The active surfaces of TABS need to be as exposed as possible, but exposing bareconcrete surfaces has a negative impact on the acoustic quality in the premises. Acoustic solutions capable of providing optimal acoustic comfort while allowing the heat exchange between the TABS and the room are desirable. This study focuses on the influence of two types of free-hanging ceiling absorbers (horizontal and vertical) on the cooling performance of the TABS. Different scenarios are investigated for each type of sound absorber. Computational Fluid Dynamics (CFD) simulations are used to illuminate the nature of the heat exchange between the TABS and the room and the occupants. The simulations are validated by comparison with full scale measurements in laboratory conditions. The study shows that for equivalent sound absorption levels, free-hanging vertical sound absorbers have a lower impact on the heat exchange between the room and the TABS compared to free-hanging horizontal sound absorbers. Cold air stagnation between the sound absorber units and the TABS has been identified as the major cause of the cooling performance decrease of the TABS.
机译:热活化建筑系统(TABS)已被证明是一种节能解决方案,可实现建筑物中最佳的室内热环境。该解决方案利用建筑质量来存储热量,并通过嵌在混凝土板上的水管来调节房屋内的温度。 TABS的活动表面需要尽可能暴露,但裸露的混凝土表面暴露会对房屋的声音质量产生负面影响。希望能够提供最佳的声学舒适性同时允许TABS与房间之间进行热交换的声学解决方案。这项研究集中于两种类型的自由悬挂式吸顶器(水平和垂直)对TABS冷却性能的影响。针对每种类型的吸声器,研究了不同的场景。计算流体动力学(CFD)模拟用于阐明TABS与房间和居住者之间的热交换性质。通过与实验室条件下的满量程测量进行比较来验证仿真。研究表明,与水平悬挂式水平悬挂式吸声器相比,垂直悬挂式自由悬挂式吸声器对房间和TABS之间的热交换影响较小。吸声单元和TABS之间的冷空气停滞已被确定为TABS冷却性能下降的主要原因。

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