497
Views
23
CrossRef citations to date
0
Altmetric
Technical Paper

Numerical Study of the Effect of Ventilation Pattern on Coarse, Fine, and Very Fine Particulate Matter Removal in Partitioned Indoor Environment

, &
Pages 179-189 | Published online: 29 Feb 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Yunus Emre Cetin, Mete Avci & Orhan Aydin. (2020) Influence of ventilation strategies on dispersion and removal of fine particles: An experimental and simulation study. Science and Technology for the Built Environment 26:3, pages 349-365.
Read now
JackyA. Rosati, Jonathan Thornburg & Charles Rodes. (2008) Resuspension of Particulate Matter from Carpet Due to Human Activity. Aerosol Science and Technology 42:6, pages 472-482.
Read now

Articles from other publishers (21)

Jin Cheng, Ke Zhong, Yiqi Wang, Jun Hu & Yanming Kang. (2023) Effect of physical partition height on medical staff exposure in a barn-integrated operating room. Journal of Building Engineering 80, pages 107948.
Crossref
Hui-Tsung Hsu, Ming-Jen Chen, Kuang-Chung Tsai, Li-Jen Huang, Ching-Ho Lin, Chin-Hsing Lai & Li-Hsin Cheng. (2023) Modelling chloroform in indoor swimming pool air and water: the influences of internal air circulation and occupants. Environmental Science and Pollution Research 30:19, pages 54857-54870.
Crossref
Chia-Ren Chu & Kai-Jie Yang. (2022) Transport process of outdoor particulate matter into naturally ventilated buildings. Building and Environment 207, pages 108424.
Crossref
Erin K. Boedicker, Ethan W. Emerson, Gavin R. McMeeking, Sameer Patel, Marina E. Vance & Delphine K. Farmer. (2021) Fates and spatial variations of accumulation mode particles in a multi-zone indoor environment during the HOMEChem campaign. Environmental Science: Processes & Impacts 23:7, pages 1029-1039.
Crossref
Wakkas Ali Rasheed, Wisam A Abd Al-wahid & Muna Alturaihi. (2021) Contaminant Removal from Virtual Operation Room. IOP Conference Series: Materials Science and Engineering 1094:1, pages 012123.
Crossref
Rana ZenissaArie Dipareza SyafeiUsep SurahmanAlvin Christianta SembiringAlfendha Wiranditya PradanaTresta CiptaningayuImam Safawi AhmadAbdu Fadli AssomadiRachmat BoedisantosoJoni Hermana. (2020) The Effect of Ventilation and Cooking Activities Indoor Fine Particulates in Apartments Towards. Civil and Environmental Engineering 16:2, pages 238-248.
Crossref
Pengyuan Dai, Dan Shen, Qian Tang, Kai Huang & Chunmei Li. (2020) PM2.5 from a broiler breeding production system: The characteristics and microbial community analysis. Environmental Pollution 256, pages 113368.
Crossref
Bert Blocken. (2018) LES over RANS in building simulation for outdoor and indoor applications: A foregone conclusion?. Building Simulation 11:5, pages 821-870.
Crossref
Xiaocheng Song & Yu Zhao. (2017) CFD Simulation of Particle Diffusion at the Region near the Entrance or Exit of An Underground Parking Lot. Energy Procedia 118, pages 184-188.
Crossref
Haidong Wang & Zhiqiang (John) Zhai. (2016) Advances in building simulation and computational techniques: A review between 1987 and 2014. Energy and Buildings 128, pages 319-335.
Crossref
Sujit Dahal, Taehyeung Kim & Kwangseog Ahn. (2016) Indirect Prediction of Welding Fume Diffusion inside a Room Using Computational Fluid Dynamics. Atmosphere 7:6, pages 74.
Crossref
Hyeon-Ju Oh, Na-Na Jeong, Woo-Bae Chi, Ji-Hoon Seo, Si-Moon Jun & Jong-Ryeul Sohn. (2015) Characterization of particulate matter concentrations and bioaerosol on each floor at a building in Seoul, Korea. Environmental Science and Pollution Research 22:20, pages 16040-16050.
Crossref
Tsang-Jung Chang, Hong-Ming Kao & Rita Sau-Wai Yam. (2013) Lagrangian modeling of the particle residence time in indoor environment. Building and Environment 62, pages 55-62.
Crossref
Kao-Hua Chang, Hong-Ming Kao & Tsang-Jung Chang. (2012) Lagrangian modeling of particle concentration distribution in indoor environment with different kernel functions and particle search algorithms. Building and Environment 57, pages 81-87.
Crossref
Tsang-Jung Chang, Kao-Hua Chang, Hong-Ming Kao & Yu-Sheng Chang. (2012) Comparison of a new kernel method and a sampling volume method for estimating indoor particulate matter concentration with Lagrangian modeling. Building and Environment 54, pages 20-28.
Crossref
E.A. Hathway, C.J. Noakes, P.A. Sleigh & L.A. Fletcher. (2011) CFD simulation of airborne pathogen transport due to human activities. Building and Environment 46:12, pages 2500-2511.
Crossref
Hanhui Jin, Yong Chen, Qinping Li, Jianren Fan & Kun Luo. (2011) Numerical prediction of indoor airborne particle concentration in a test chamber with drift-flux model. Journal of Thermal Science 20:2, pages 161-166.
Crossref
Hong-Ming Kao, Tsang-Jung Chang, Yi-Fang Hsieh, Chia-Ho Wang & Cheng-I. Hsieh. (2009) Comparison of airflow and particulate matter transport in multi-room buildings for different natural ventilation patterns. Energy and Buildings 41:9, pages 966-974.
Crossref
Qingyan Chen. (2009) Ventilation performance prediction for buildings: A method overview and recent applications. Building and Environment 44:4, pages 848-858.
Crossref
Tsang-Jung Chang & Ting-Shing Hu. (2008) Transport mechanisms of airborne particulate matters in partitioned indoor environment. Building and Environment 43:5, pages 886-895.
Crossref
Sanjay JainCharles R. McLean. (2008) Components of an Incident Management Simulation and Gaming Framework and Related Developments. SIMULATION 84:1, pages 3-25.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.