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Research Article

A theoretical study on gaseous pollutant flushing of natural ventilation driven by buoyancy forces in industrial buildings

Jiawei Zhuang1,3Genyang Chen2Rumeng Yang1Kun Han3Dongdong Tian4Yongfa Diao3( )Henggen Shen3
School of Urban Construction, Changzhou University, Changzhou 213164, China
School of Petroleum and Natural Gas Engineering, School of Energy, Changzhou University, Changzhou 213164, China
College of Environmental Science and Engineering, Donghua University, Shanghai 201620, China
School of Architecture and Urban Planning, Nanjing University, Nanjing 210093, China
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Abstract

The acceleration of industrialization worsening indoor environments of industrial buildings has drawn more attention in recent years. Natural ventilation can improve indoor air quality (IAQ) and reduce carbon emissions. To evaluate gaseous pollutant levels in industrial buildings for the development of buoyancy-driven natural ventilation, two theoretical models of pollutant flushing (Model Ⅰ and Model Ⅱ) are developed based on the existing thermal stratification theory in combination with the mixing characteristics of lower pollutant. The results show that indoor pollutant flushing is mainly dependent on the pollution source intensity and effective ventilation area. The mixing characteristics of lower pollutant has an important effect on pollutant stratification and evolution during ventilation, but it does not change the prediction results at steady state. When the dimensionless pollution source intensity is larger than 1, the pollution source should be cleaned up or other ventilation methods should be used instead to improve IAQ. In addition, the comparisons between Model Ⅰ and Model Ⅱ on instantaneous pollutant concentration are significantly influenced by the pollution source intensity, and the actual pollutant concentration is more likely to be between the predicted values of Model Ⅰ and Model Ⅱ. To reduce pollutant concentration to a required level, the pollution source intensity should be in a certain range. The theoretical models as well as the necessary conditions for ventilation effectiveness obtained can be used for the ventilation optimization design of industrial buildings.

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Building Simulation
Pages 575-589

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Cite this article:
Zhuang J, Chen G, Yang R, et al. A theoretical study on gaseous pollutant flushing of natural ventilation driven by buoyancy forces in industrial buildings. Building Simulation, 2024, 17(4): 575-589. https://doi.org/10.1007/s12273-023-1092-3

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Received: 16 July 2023
Revised: 09 October 2023
Accepted: 02 November 2023
Published: 25 January 2024
© Tsinghua University Press 2024