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本文引用的文献

1
On-site measurement of tracer gas transmission between horizontal adjacent flats in residential building and cross-infection risk assessment.住宅建筑水平相邻公寓间示踪气体传输的现场测量及交叉感染风险评估。
Build Environ. 2016 Apr;99:13-21. doi: 10.1016/j.buildenv.2016.01.013. Epub 2016 Jan 18.
2
The airborne transmission of infection between flats in high-rise residential buildings: A review.高层住宅建筑中公寓间感染的空气传播:综述
Build Environ. 2015 Dec;94:516-531. doi: 10.1016/j.buildenv.2015.09.026. Epub 2015 Sep 30.
3
Predictions and measurements of the stack effect on indoor airborne virus transmission in a high-rise hospital building.高层医院建筑中烟囱效应对室内空气传播病毒的预测与测量
Build Environ. 2011 Dec;46(12):2413-2424. doi: 10.1016/j.buildenv.2011.04.015. Epub 2011 Apr 21.
4
Wind tunnel tests of inter-flat pollutant transmission characteristics in a rectangular multi-storey residential building, part B: Effect of source location.矩形多层住宅楼内平面间污染物传播特性的风洞试验,B部分:源位置的影响。
Build Environ. 2017 Mar;114:281-292. doi: 10.1016/j.buildenv.2016.12.031. Epub 2016 Dec 26.
5
Wind tunnel tests of inter-flat pollutant transmission characteristics in a rectangular multi-storey residential building, part A: Effect of wind direction.矩形多层住宅建筑中扁平污染物传输特性的风洞试验,A部分:风向的影响。
Build Environ. 2016 Nov 1;108:159-170. doi: 10.1016/j.buildenv.2016.08.032. Epub 2016 Aug 30.
6
Multi-zone modeling of probable SARS virus transmission by airflow between flats in Block E, Amoy Gardens.淘大花园E座各单位之间气流传播SARS病毒可能性的多区域建模
Indoor Air. 2005 Apr;15(2):96-111. doi: 10.1111/j.1600-0668.2004.00318.x.
7
On the history of indoor air quality and health.论室内空气质量与健康的历史。
Indoor Air. 2004;14 Suppl 7:51-8. doi: 10.1111/j.1600-0668.2004.00273.x.
8
The National Human Activity Pattern Survey (NHAPS): a resource for assessing exposure to environmental pollutants.国家人类活动模式调查(NHAPS):评估环境污染物暴露情况的一项资源。
J Expo Anal Environ Epidemiol. 2001 May-Jun;11(3):231-52. doi: 10.1038/sj.jea.7500165.

地中海地区多层建筑地下停车场气态污染物的传输——不同天气条件下时间分辨率的影响

Gaseous pollutant transport from an underground parking garage in a Mediterranean multi-story building-Effect of temporal resolution under varying weather conditions.

作者信息

Reichman Rivka, Dubowski Yael

机构信息

Faculty of Civil and Environmental Engineering, Technion - Israel Institute of Technology, Haifa, 32000 Israel.

出版信息

Build Simul. 2021;14(5):1511-1523. doi: 10.1007/s12273-020-0757-4. Epub 2021 Feb 25.

DOI:10.1007/s12273-020-0757-4
PMID:33649710
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7905197/
Abstract

Indoor air dynamics and quality in high density residential buildings can be complex as it is affected by both building parameters, pollution sources, and outdoor meteorological conditions. The present study used CONTAM simulations to investigate the intra-building transport and concentration of an inert pollutant continuously emitted from an underground garage of a 15-floor building under moderate Mediterranean weather. The effects of outdoor meteorological conditions (air temperature, wind speed and direction) on indoor distribution of the emitted pollutant was tested under constant conditions. The importance of using actual transient meteorological data and the impact of their temporal resolution on calculated concentrations and exposure levels were also investigated. Vertical profiles of air exchange rate (AER) and CO concentration were shown to be sensitive to indoor-outdoor temperature difference, which controls the extent of the stack effect and its importance relative to wind effect. Even under constant conditions, transient mode simulations revealed that the time needed for pollutant distribution to reach steady state can be quite long (>24h in some cases). The temporal resolution (1h vs. 8h) of the meteorological data input was also found to impact calculated exposure levels, in an extent that varied with time, meteorological conditions and apartment position.

摘要

高密度住宅建筑中的室内空气动力学和空气质量可能很复杂,因为它受到建筑参数、污染源和室外气象条件的影响。本研究使用CONTAM模拟,研究了在温和的地中海气候条件下,一栋15层建筑的地下车库持续排放的惰性污染物在建筑物内的传输和浓度情况。在恒定条件下,测试了室外气象条件(气温、风速和风向)对排放污染物室内分布的影响。还研究了使用实际瞬态气象数据的重要性及其时间分辨率对计算浓度和暴露水平的影响。空气交换率(AER)和一氧化碳浓度的垂直剖面显示对室内外温差敏感,室内外温差控制着烟囱效应的程度及其相对于风效应的重要性。即使在恒定条件下,瞬态模式模拟也表明污染物分布达到稳态所需的时间可能相当长(在某些情况下超过24小时)。还发现气象数据输入的时间分辨率(1小时与8小时)会影响计算出的暴露水平,其影响程度随时间、气象条件和公寓位置而变化。