首页> 外文期刊>Building and Environment >Air flow models for sub-slab depressurization systems design
【24h】

Air flow models for sub-slab depressurization systems design

机译:子板减压系统设计的气流模型

获取原文
获取原文并翻译 | 示例
           

摘要

The entry of soil gas pollutants (Radon, VOCs, ...) into buildings can cause serious health risks to inhabitants. Various systems have been developed to limit this risk. Soil Depressurization System (SDS) is one of the most efficient mitigation systems to prevent buildings against these pollutants. Two operating modes of SDS are currently used: active and passive systems. Active systems use a fan which enables to extract air from the sub-slab. Passive systems use the stack effect and the wind to extract air from the sub-slab. Until now, no airflow model has been developed that leads to the effective design of these systems. In this paper, an analytical method has been used to develop airflow models to design these systems. The developed models take into account different type of substructures. These models are integrated in a multizone airflow and heat transfer building code. This integration permits to take into account climate conditions (stack effect, wind), building envelope characteristics and ventilation systems. Preliminary field verification results for the extracted flow by the SDS in an experimental building are presented and discussed. The results show that the airflow models are accurate to design SDS. A first application of the models is illustrated by the impact of climate conditions on the operation of the passive SDS. A second application is illustrated by the study of the impact of the ventilation strategies (natural ventilation, exhaust ventilation, supply ventilation and balanced ventilation systems) on the passive SDS operation.
机译:土壤气体污染物(Ra,VOC等)进入建筑物会给居民带来严重的健康风险。已经开发了各种系统来限制这种风险。土壤降压系统(SDS)是防止建筑物受到这些污染物影响的最有效的缓解系统之一。当前使用SDS的两种操作模式:主动和被动系统。主动系统使用风扇,该风扇能够从子平板中抽出空气。被动系统利用烟囱效应和风从子平板中抽出空气。到目前为止,还没有开发出能够有效设计这些系统的气流模型。在本文中,已经使用一种分析方法来开发气流模型来设计这些系统。开发的模型考虑了不同类型的子结构。这些模型集成在多区域气流和热传递建筑规范中。这种集成允许考虑气候条件(烟囱效应,风),建筑围护结构特征和通风系统。介绍并讨论了SDS在实验大楼中提取的流量的初步现场验证结果。结果表明,气流模型对于设计SDS是准确的。气候条件对被动SDS运行的影响说明了该模型的首次应用。通过研究通风策略(自然通风,排气通风,供应通风和平衡通风系统)对被动SDS运行的影响来说明第二个应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号