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Short-term mechanical ventilation of air-conditioned residential buildings: A general design framework and guidelines

机译:空调住宅的短期机械通风:一般设计框架和准则

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Ventilation is needed in air-conditioned residential buildings, particularly the bedrooms in nighttime sleeping periods, to maintain an acceptable indoor air quality. Our previous on-site measurements evaluating various ventilation strategies suggest that short-term mechanical ventilation is overall the most appropriate ventilation strategy for air-conditioned residential buildings. However, there is still no a general design framework of short-term mechanical ventilation strategy, which can determine appropriate design parameters, including ventilation period, ventilation frequency, and start concentration of ventilation, based on various combinations of indoor CO2 generation rate, net room volume, infiltration rate, and mechanical ventilation rate. This study for the first time develops such a design framework and then provides the detailed design guidelines. A whole sleeping period of 8 h is divided into many repeated single V-shape ventilation periods; each single ventilation period is comprised of a short-term mechanical ventilation period and a follow-up CO2 build-up period. The single V-shape ventilation process is particularly investigated based on a criterion that the average indoor CO2 concentration is less than but close to 1000 ppm. A high efficient ventilation strategy, namely requiring a minimum total mechanical ventilation period, is a short single ventilation period and a high ventilation frequency. The outcomes of this study are presented in the form of figures and tables, with most parameters normalized, which are useful to assist a rapid ventilation design. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在装有空调的住宅楼中,特别是在夜间睡眠期间的卧室,需要通风,以保持可接受的室内空气质量。我们以前的评估各种通风策略的现场测量结果表明,短期的机械通风是总体上最适合空调住宅建筑的通风策略。但是,仍然没有短期机械通风策略的通用设计框架,可以根据室内CO2产生率,净房间的各种组合来确定合适的设计参数,包括通风时间,通风频率和通风开始浓度。体积,渗透率和机械通风率。这项研究首次开发了这样的设计框架,然后提供了详细的设计指南。 8小时的整个睡眠时间分为多个重复的单V形通风时间;每个单独的通风期都由短期机械通风期和后续的CO2积累期组成。特别是基于室内平均CO2浓度小于但接近1000 ppm的标准研究了单V形通风过程。高效的通风策略(即要求最小的总机械通风时间)是较短的单个通风时间和较高的通风频率。这项研究的结果以图形和表格的形式呈现,其中大多数参数已标准化,可用于帮助快速通风设计。 (C)2016 Elsevier Ltd.保留所有权利。

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