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The effect of buoyancy forces in buildings on the efficiency of unbalanced regenerative air handling units

机译:浮力势力在建筑物中对不平衡再生空气处理单元效率的影响

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Over the years, ventilation in old residential buildings has developed and modernized, leading to more efficient ventilation systems and heat recovery units. In individual rooms, small houses, one-two storey buildings, and greenhouses it is very appropriate to use small single Air Handling Units (AHU) with heat recovery. It has been established in the literature that such devices for heat recovery are influenced by external factors - the outdoor and indoor parameters of the air, and especially the pressure difference in the buildings. These factors cause an unbalanced operating mode of the regenerative AHU which can significantly change its efficiency. The main aim of this paper is to simulate the unbalanced operating modes of AHU with a fixed-bed regenerator for heat recovery in multi-storey buildings. Simulations were performed for two cases of room ventilation, the first case refers to a single device in a room, and the second case refers to a pair of devices in a room. The results show different ventilation modes for each of the cases, which leads to different pressure distributions, air change rates, room velocity vector fields, and different regenerators' thermal efficiency.
机译:多年来,老住宅建筑的通风已经开发和现代化,导致更有效的通风系统和热回收单位。在各个房间,小房子,一两层楼和温室,使用小型单空气处理单位(ahu)具有热量回收是非常合适的。它已经在文献中建立了这种用于热回收的装置受到外部因素的影响 - 空气的室外和室内参数,特别是建筑物的压力差异。这些因素导致再生AHU的不平衡操作模式,这可以显着改变其效率。本文的主要目的是模拟AHU的不平衡运行模式,具有固定床再生器,用于在多层建筑物中热回收。对于两个房间通气的情况进行了模拟,第一壳体是指房间中的单个装置,第二种情况是指房间中的一对装置。结果显示了每个情况的不同通风模式,这导致不同的压力分布,空气变化率,室速度矢量字段和不同的再生器的热效率。

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