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Analysis of Wind Speed Influence on Heat Recovery Efficiency of Local Decentralized Alternating Ventilation Units

机译:局部分散交替通风装置热回收效率的风速影响分析

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摘要

Both for new and renovated buildings, decentralized room-based ventilation systems with alternating working regimes have become increasingly popular in Europe and Baltic countries. Such devices offer the possibility to ensure ventilation with heat recovery for smaller to middle-sized apartments as well as for renovation projects where other means oj ventilation are hard to install. According to the manufacturer's data sheets, such devices have high heat recovery efficiency although ensure relatively low air volumes. This given heat recovery efficiency is afterward used to determine the yearly energy consumption of the building and the necessary heating energy to heat the supply air. However, this value is stated at non-existent pressure difference between building indoor and outside while in real case situations there is always some pressure difference due to wind and stack effect. In this study, two different sized ventilation devices are tested in a laboratory environment at different simulated outside air temperatures and pressure differences to measure the actual heat recovery efficiency at various combinations. The results showed that the pressure difference can have a high impact on the heat recovery efficiency. Especially for the smaller device if the pressure difference rises just to 5 Pa (0.02 in. WC) the heat recovery efficiency drops to 60%. For the larger device, the pressure difference had a smaller effect and only at 30 Pa (0.12 in. WC) pressure difference the efficiency noticeably dropped. However, for both devices, the results showed that the actual efficiency is noticeably lower than stated in the technical data sheet even at no pressure difference. This can influence the actual building energy efficiency class, as well as lead to undersized heating system elements.
机译:对于新的和经过翻新的建筑物,具有交替工作制度的分散房间的通风系统在欧洲和波罗的海国家越来越受欢迎。这种装置提供了能够为更小于中型公寓的热回收以及更加易于安装的改造项目,以确保较小的热量回收的可能性。根据制造商的数据表,这种装置具有高热量回收效率,尽管确保相对低的空气量。随后,该给定的热回收效率用于确定建筑物的年度能量消耗以及加热供应空气的必要加热能量。然而,该值在建筑物室内和外部之间的不存在压力差异,而在实际情况下,由于风和堆叠效应总是存在一些压力差异。在本研究中,在不同模拟的外部空气温度和压力差异的实验室环境中测试了两个不同尺寸的通风装置,以测量各种组合的实际热回收效率。结果表明,压力差可对热回收效率产生高影响力。特别是对于较小的设备,如果压力差升至5Pa(0.02英寸WC),热回收效率降至60%。对于较大的装置,压力差具有较小的效果,并且仅在30Pa(0.12英寸WC)压力差时效率明显掉落。然而,对于两个设备,结果表明,即使在无压力差异也明显低于技术数据纸中的实际效率。这可以影响实际的建筑能效等级,以及导致口径的加热系统元件。

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  • 来源
    《ASHRAE Transactions》 |2020年第1期|360-368|共9页
  • 作者单位

    Institute of Heat Gas and Water Technology Riga Technical U niversity Riga Latvia;

    Institute of Heat Gas and Water Technology Riga Technical U niversity Riga Latvia;

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  • 正文语种 eng
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