Experimental study of the combination of a positive input ventilation and active air vents on the air change rates of a house

IF 1.1 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
A. Leconte, Clément Lafféter, T. Fritsch, N. Giordano, J. Escaich, Ophélie Ouvrier-Bonnaz
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引用次数: 1

Abstract

Abstract This study aims to experimentally evaluate the influence of the combination of a supply only ventilation, called here positive input ventilation, and innovative active air vents on the Indoor Air Quality of a house. The positive input ventilation draws fresh air from the outside, filters and pre-heats it before supplying it to living areas. Active air vents are small motorised dampers set up in the upper part of windows able to move according to local pollutants measurements or to the measurements of other active air vents in the house. This combination is expected to improve the Indoor Air Quality by increasing efficiently the air change rate of a room when it is too polluted. The goal of the tests presented in this paper is to evaluate quantitatively the air change rate in a real size environment. To do so, a positive input ventilation and active air vents are set up in an experimental house. The tests were carried out in 3 different rooms. For each room, the air change rate is evaluated for different configurations of the combination. CO2 is used as a trace gas to evaluate the air change rate. Results are promising and show that the studied combination allows a significant of the air change rate of each room. An appropriate Demand Control Ventilation strategy based on the sensors of each active air vents and the communication between all the devices would thus lead to an efficient while simple improvement in the use of a positive input ventilation system.
正输入通风与主动通风口组合对房屋换气率影响的实验研究
摘要本研究旨在实验评估纯供气通风(这里称为正输入通风)和创新主动通风口组合对房屋室内空气质量的影响。正输入通风系统从室外吸收新鲜空气,过滤并预热空气,然后将其输送到生活区。主动通风口是安装在窗户上部的小型电动阻尼器,能够根据当地污染物测量值或房屋中其他主动通风口的测量值移动。这种组合有望通过有效地增加污染严重的房间的换气率来改善室内空气质量。本文提出的试验目的是定量地评价真实尺寸环境中的空气变化速率。为此,在实验室内设置了正输入通风和主动通风口。测试在3个不同的房间进行。对于每个房间,对不同组合配置的空气换率进行评估。二氧化碳被用作痕量气体来评估空气变化速率。结果是有希望的,表明所研究的组合允许每个房间的空气换率显著。适当的需求控制通风策略基于每个主动通风口的传感器和所有设备之间的通信,因此可以有效而简单地改进正输入通风系统的使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Ventilation
International Journal of Ventilation CONSTRUCTION & BUILDING TECHNOLOGY-ENERGY & FUELS
CiteScore
3.50
自引率
6.70%
发文量
7
审稿时长
>12 weeks
期刊介绍: This is a peer reviewed journal aimed at providing the latest information on research and application. Topics include: • New ideas concerned with the development or application of ventilation; • Validated case studies demonstrating the performance of ventilation strategies; • Information on needs and solutions for specific building types including: offices, dwellings, schools, hospitals, parking garages, urban buildings and recreational buildings etc; • Developments in numerical methods; • Measurement techniques; • Related issues in which the impact of ventilation plays an important role (e.g. the interaction of ventilation with air quality, health and comfort); • Energy issues related to ventilation (e.g. low energy systems, ventilation heating and cooling loss); • Driving forces (weather data, fan performance etc).
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