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高原地区室内空间弥散供氧量分析计算
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作者 方宇 吕小亮 《暖通空调》 2024年第4期62-66,共5页
基于风量平衡方程和氧量平衡方程推导和分析了室内氧浓度变化方程,并对该方程进行了案例计算。结果表明,当目标室内氧浓度确定后,室内氧浓度变化速率主要由新风量决定,新风量较小时,所需稳态供氧量减少,但从初始供氧浓度达到目标室内氧... 基于风量平衡方程和氧量平衡方程推导和分析了室内氧浓度变化方程,并对该方程进行了案例计算。结果表明,当目标室内氧浓度确定后,室内氧浓度变化速率主要由新风量决定,新风量较小时,所需稳态供氧量减少,但从初始供氧浓度达到目标室内氧浓度所需时间增加,难以满足房间使用要求。因此提出了在供氧早期对稳态计算的供氧量进行修正,适当增加供氧量,以实现在规定时间内达到设定的目标室内氧浓度,并通过科学计算软件计算,获得所需的供氧量修正系数,可用于高原地区室内空间弥散供氧量设计计算。 展开更多
关键词 高原地区 弥散供 量计算 室内氧浓度 稳态供
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Correlation between Ozone and Total VOCs in Printing Environment 被引量:3
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作者 Kiurski Jelena Adamovie Dragan Oros Ivana Krstie Jelena Adamovie Savka Vojinovie Miloradov Mirjana Kovacevic Ilija 《Journal of Chemistry and Chemical Engineering》 2011年第5期423-428,共6页
In this study, indoor air quality (IAQ) assessments were carried out in a screen printing facility. The air sampling was conducted in press department, including two different types of screen printing machines: sem... In this study, indoor air quality (IAQ) assessments were carried out in a screen printing facility. The air sampling was conducted in press department, including two different types of screen printing machines: semi-automatic and automatic. Air samples were collected and analyzed in situ for 4 times, once per 2 hours, during working time of 8 hours. Analysis of the experimental data showed that ambient ozone concentrations slowly increases with the increasing of TVOCs concentration and intensive use of UV lamps during automatic screen printing process. Therefore, the detected concentration levels of ozone and VOCs were compared with the Occupational Safety and Health Administration (OSHA) and Serbian Regulation. Comparison of the two mentioned standard regulations, the ozone concentrations in indoor printing air were from 0.83 to 8.1 and 2.4 to 16.2 times higher in the relation to the prescribed PEL and maximum allowed concentration (MAC) values, respectively, while the concentrations of particular VOCs were much below the PEL prescribed by the OSHA. 展开更多
关键词 OZONE total volatile organic compounds (TVOCs) screen printing process printing environment.
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Indoor Nitrogen Oxides Occurrence, Modeling and Prediction
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作者 Ingrid Senitkova 《Journal of Civil Engineering and Architecture》 2012年第6期751-755,共5页
Outdoor air quality, building materials, HVAC (Heating, Ventilation, Air Conditioning) systems and people activity are important factors in human exposition of polluted indoor air. The degree of signification varies... Outdoor air quality, building materials, HVAC (Heating, Ventilation, Air Conditioning) systems and people activity are important factors in human exposition of polluted indoor air. The degree of signification varies in dependence on pollution character and its sources. Buildings eliminate significantly people exposition of outdoor pollutants, but on the other hand, buildings are significant source of indoor pollution. The contamination of indoor air is largely from the use of gas for heating and cooking appliances. A comprehensive analysis of indoor air pollution by nitrogen oxides shows that the extent of indoor air pollution and consequent exposure varies as a result of many factors mainly the differing dislribution of appliances and their level of use. This study aims to formulate a mathematical model for the production of nitrogen oxides indoors. The physical processes that determine the concentrations of indoor nitrogen oxides as a function of outdoor concentrations, indoor emission rates and building characteristics have been mathematically described. The mathematical model developed has been parameterized for typical Slovak residences. The modeling of the occurrence of indoor nitrogen oxides and verification of the model is presented in this paper. 展开更多
关键词 Indoors nitrogen oxides OCCURRENCE PREDICTION MODELING verification.
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Relationship Between Outdoor and Indoor Ozone Pollution Concentration
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作者 杜晓刚 刘俊杰 《Transactions of Tianjin University》 EI CAS 2009年第5期330-335,共6页
This paper analyses the changing rule of indoor ozone concentration and its influencing factors.A formula of indoor-outdoor concentration ratio(I/O ratio) was deduced based on the indoor ozone mass-balance equation.Th... This paper analyses the changing rule of indoor ozone concentration and its influencing factors.A formula of indoor-outdoor concentration ratio(I/O ratio) was deduced based on the indoor ozone mass-balance equation.The ozone I/O ratio in different kinds of buildings was studied.Results show that I/O ratio is much related to air-exchange rate,which is well compatible with the theoretical calculation results. 展开更多
关键词 OZONE I/O ratio air quality risk assessment
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Indoor Air Quality and Thermal Comfort Evaluation in Latvian Daycare Centers with Carbon Dioxide, Temperature and Humidity as Indicators
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作者 Galina Stankevica Arturs Lesinskis 《Journal of Civil Engineering and Architecture》 2012年第5期633-638,共6页
Latvian children under the age of 7 can spend up to 60 hours per week in daycare centers and therefore it is very important to establish a healthy and comfortable daycare environment that children will find pleasant a... Latvian children under the age of 7 can spend up to 60 hours per week in daycare centers and therefore it is very important to establish a healthy and comfortable daycare environment that children will find pleasant and stimulating to stay in. This study investigates indoor air quality and thermal comfort within six daycare centers (old, renovated and new-built) in moderate climate zone of Latvia. Measurements of carbon dioxide, air temperature and relative humidity were carried out, and data regarding daycare center characteristics and maintenance activities was collected via combination of field visits, record analysis and interviews. It was found that carbon dioxide concentrations exceeded 1000 ppm in 75% of daycare centers studied, with the highest (1356 ppm) measured in a renovated facility with the natural ventilation system. Thus installation of more efficient ventilation system (mechanical) is recommended to provide acceptable indoor air quality, since opening of windows itself cannot provide the optimal conditions indoors. In all facilities the temperature was kept above 20℃ and the average relative humidity was 40±35%, creating comfortable thermal environment for children. 展开更多
关键词 Daycare center indoor air quality thermal comfort.
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