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Numerical studies on issues of Re-independence for indoor airflow and pollutant dispersion within an isolated building

This study conducted the numerical models validated by wind-tunnel experiments to investigate the issues of Re-independence of indoor airflow and pollutant dispersion within an isolated building. The window Reynolds number (Re(w)) was specified to characterize the indoor flow and dispersion. The ind...

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Autores principales: Cui, Peng-Yi, Chen, Wei-Qiu, Wang, Jia-Qi, Zhang, Jin-Hao, Huang, Yuan-Dong, Tao, Wen-Quan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tsinghua University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8513550/
https://www.ncbi.nlm.nih.gov/pubmed/34659649
http://dx.doi.org/10.1007/s12273-021-0846-z
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author Cui, Peng-Yi
Chen, Wei-Qiu
Wang, Jia-Qi
Zhang, Jin-Hao
Huang, Yuan-Dong
Tao, Wen-Quan
author_facet Cui, Peng-Yi
Chen, Wei-Qiu
Wang, Jia-Qi
Zhang, Jin-Hao
Huang, Yuan-Dong
Tao, Wen-Quan
author_sort Cui, Peng-Yi
collection PubMed
description This study conducted the numerical models validated by wind-tunnel experiments to investigate the issues of Re-independence of indoor airflow and pollutant dispersion within an isolated building. The window Reynolds number (Re(w)) was specified to characterize the indoor flow and dispersion. The indicators of RRC (ratio of relative change) or DR (K_DR) (difference ratio of dimensionless concentration) ≤ 5% were applied to quantitatively determine the critical Re(w) for indoor flow and turbulent diffusion. The results show that the critical Re (Re(crit)) value is position-dependent, and Re(crit) at the most unfavorable position should be suggested as the optimal value within the whole areas of interest. Thus Re(H,crit) = 27,000 is recommended for the outdoor flows; while Re(w,crit) = 15,000 is determined for the indoor flows due to the lower part below the window showing the most unfavorable. The suggested Re(w,crit) (=15,000) for indoor airflow and cross ventilation is independence of the window size. Moreover, taking K_DR ≤ 5% as the indicator, the suggested Re(w,crit) for ensuring indoor pollutant diffusion enter the Re-independence regime should also be 15,000, indicating that indoor passive diffusion is completely determined by the flow structures. The contours of dimensionless velocity (U/U(0)) and concentration (K) against the increasing Re(w) further confirmed this critical value. This study further reveals the Re-independence issues for indoor flow and dispersion to ensure the reliability of the data obtained by reduced-scale numerical or wind-tunnel models.
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spelling pubmed-85135502021-10-13 Numerical studies on issues of Re-independence for indoor airflow and pollutant dispersion within an isolated building Cui, Peng-Yi Chen, Wei-Qiu Wang, Jia-Qi Zhang, Jin-Hao Huang, Yuan-Dong Tao, Wen-Quan Build Simul Research Article This study conducted the numerical models validated by wind-tunnel experiments to investigate the issues of Re-independence of indoor airflow and pollutant dispersion within an isolated building. The window Reynolds number (Re(w)) was specified to characterize the indoor flow and dispersion. The indicators of RRC (ratio of relative change) or DR (K_DR) (difference ratio of dimensionless concentration) ≤ 5% were applied to quantitatively determine the critical Re(w) for indoor flow and turbulent diffusion. The results show that the critical Re (Re(crit)) value is position-dependent, and Re(crit) at the most unfavorable position should be suggested as the optimal value within the whole areas of interest. Thus Re(H,crit) = 27,000 is recommended for the outdoor flows; while Re(w,crit) = 15,000 is determined for the indoor flows due to the lower part below the window showing the most unfavorable. The suggested Re(w,crit) (=15,000) for indoor airflow and cross ventilation is independence of the window size. Moreover, taking K_DR ≤ 5% as the indicator, the suggested Re(w,crit) for ensuring indoor pollutant diffusion enter the Re-independence regime should also be 15,000, indicating that indoor passive diffusion is completely determined by the flow structures. The contours of dimensionless velocity (U/U(0)) and concentration (K) against the increasing Re(w) further confirmed this critical value. This study further reveals the Re-independence issues for indoor flow and dispersion to ensure the reliability of the data obtained by reduced-scale numerical or wind-tunnel models. Tsinghua University Press 2021-10-13 2022 /pmc/articles/PMC8513550/ /pubmed/34659649 http://dx.doi.org/10.1007/s12273-021-0846-z Text en © Tsinghua University Press 2021 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Research Article
Cui, Peng-Yi
Chen, Wei-Qiu
Wang, Jia-Qi
Zhang, Jin-Hao
Huang, Yuan-Dong
Tao, Wen-Quan
Numerical studies on issues of Re-independence for indoor airflow and pollutant dispersion within an isolated building
title Numerical studies on issues of Re-independence for indoor airflow and pollutant dispersion within an isolated building
title_full Numerical studies on issues of Re-independence for indoor airflow and pollutant dispersion within an isolated building
title_fullStr Numerical studies on issues of Re-independence for indoor airflow and pollutant dispersion within an isolated building
title_full_unstemmed Numerical studies on issues of Re-independence for indoor airflow and pollutant dispersion within an isolated building
title_short Numerical studies on issues of Re-independence for indoor airflow and pollutant dispersion within an isolated building
title_sort numerical studies on issues of re-independence for indoor airflow and pollutant dispersion within an isolated building
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8513550/
https://www.ncbi.nlm.nih.gov/pubmed/34659649
http://dx.doi.org/10.1007/s12273-021-0846-z
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