1 |
Chen_2015 |
A Markov chain model for predicting transient particle transport in enclosed environments |
Chen, Chun; Liu, Wei; Lin, Chao-Hsin; Chen, Qingyan |
2015 |
2015-08-31 |
PMC |
N |
PMC7117050 |
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10.1016/j.buildenv.2015.03.024 |
kyq5n601 |
0.932200 |
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Liu_W_2019, Chen_2013, Fontanini_2015, Ding_2013 |
2 |
Ding_2013 |
An efficient lattice Boltzmann model for indoor airflow and particle transport |
Ding, L.; Lai, A.C.K. |
2013 |
2013-09-30 |
PMC |
N |
PMC7127572 |
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10.1016/j.jaerosci.2013.04.004 |
tep4h5l1 |
0.921530 |
Chen_2015 |
Chen_2013, Gao_N_2007, Lai_A_2008, Chen_2015 |
3 |
Liu_W_2019 |
Modeling transient particle transport by fast fluid dynamics with the Markov chain method |
Liu, Wei; You, Ruoyu; Chen, Chun |
2019 |
2019-03-06 |
PMC |
N |
PMC7090511 |
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10.1007/s12273-019-0513-9 |
0ro04s5e |
0.906502 |
Chen_2015 |
Chen_2015, Chen_2013, Ding_2013, Fontanini_2015 |
4 |
Shao_2017 |
Long-term prediction of dynamic distribution of passive contaminant in complex recirculating ventilation system |
Shao, Xiaoliang; Li, Xianting; Ma, Xiaojun; Zhu, Fenfei |
2017 |
2017-08-15 |
PMC |
N |
PMC7126526 |
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10.1016/j.buildenv.2017.05.012 |
j3jskkmw |
0.872550 |
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Li_X_2011, Mu_D_2016, Mu_D_2017, Zhu_S_2010 |
5 |
Feng_2019 |
Experimental study on a comprehensive particle swarm optimization method for locating contaminant sources in dynamic indoor environments with mechanical ventilation |
Feng, Qilin; Cai, Hao; Chen, Zhilong; Yang, Yibin; Lu, Jingyu; Li, Fei; Xu, Jiheng; Li, Xianting |
2019 |
2019-08-01 |
PMC |
N |
PMC7111221 |
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10.1016/j.enbuild.2019.03.032 |
ah3jclgw |
0.859085 |
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Feng_2019, Zhu_S_2010, Cai_H_2014, Mu_D_2017 |
6 |
Lai_A_2007 |
Comparison of a new Eulerian model with a modified Lagrangian approach for particle distribution and deposition indoors |
Lai, Alvin C.K.; Chen, F.Z. |
2007 |
2007-08-31 |
PMC |
N |
PMC7108307 |
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10.1016/j.atmosenv.2006.05.088 |
m3rgspxc |
0.857366 |
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Lai_A_2008, Sun_K_2012, Gao_N_2007, Ding_2013 |
7 |
Choi_2019 |
Displacement ventilation with radiant panel for hospital wards: Measurement and prediction of the temperature and contaminant concentration profiles |
Choi, Narae; Yamanaka, Toshio; Sagara, Kazunobu; Momoi, Yoshihisa; Suzuki, Tomoya |
2019 |
2019-08-31 |
PMC |
N |
PMC7116985 |
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10.1016/j.buildenv.2019.106197 |
tjcd4ywz |
0.854814 |
Hendiger_2016, Shih_2007 |
Yin_Y_2011, Cho_J_2019, He_Q_2011 |
8 |
Chen_2013 |
A hybrid model for investigating transient particle transport in enclosed environments |
Chen, Chun; Liu, Wei; Li, Fei; Lin, Chao-Hsin; Liu, Junjie; Pei, Jingjing; Chen, Qingyan |
2013 |
2013-04-30 |
PMC |
N |
PMC7126580 |
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10.1016/j.buildenv.2012.12.020 |
21ee4wxk |
0.822867 |
Chen_2015 |
Chen_2015, Gao_N_2007, Ding_2013, Lai_A_2008 |
9 |
Gao_N_2007 |
Modeling particle dispersion and deposition in indoor environments |
Gao, N.P.; Niu, J.L. |
2007 |
2007-06-30 |
PMC |
N |
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10.1016/j.atmosenv.2007.01.016 |
55pntml2 |
0.821130 |
Keshavarzian_2020, Weerasuriya_2018 |
Lai_A_2008, Sun_K_2012, Mui_K_2009, Chen_2013 |
10 |
Li_X_2011 |
A numerical method to determine the steady state distribution of passive contaminant in generic ventilation systems |
Li, Xianting; Shao, Xiaoliang; Ma, Xiaojun; Zhang, Yuanhui; Cai, Hao |
2011 |
2011-08-15 |
PMC |
N |
PMC7127271 |
21641112.0 |
10.1016/j.jhazmat.2011.04.108 |
073t95p8 |
0.811401 |
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Shao_2017, Zhu_S_2010, Mu_D_2016, Mu_D_2017 |
11 |
Li_F_2018 |
Predicting contaminant dispersion using modified turbulent Schmidt numbers from different vortex structures |
Li, Fei; Liu, Junjie; Ren, Jianlin; Cao, Xiaodong |
2018 |
2018-02-15 |
PMC |
N |
PMC7117062 |
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10.1016/j.buildenv.2017.12.023 |
5yd7hr5e |
0.807779 |
Keshavarzian_2020, Li_Y_2019, Dai_Y_2020 |
Li_F_2016, Mu_D_2016, Zhang_2015, Mu_D_2017 |
12 |
Lai_A_2008 |
Experimental and numerical study on particle distribution in a two-zone chamber |
Lai, Alvin C.K.; Wang, K.; Chen, F.Z. |
2008 |
2008-03-31 |
PMC |
N |
PMC7108313 |
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10.1016/j.atmosenv.2007.11.030 |
hzduf95m |
0.803962 |
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Gao_N_2007, Berrouk_2010, Chen_2013, Ding_2013 |
13 |
Cheong_2018 |
Case Study of Airborne Pathogen Dispersion Patterns in Emergency Departments with Different Ventilation and Partition Conditions |
Cheong, Chang Heon; Lee, Seonhye |
2018 |
2018-03-13 |
COMM-USE |
N |
PMC5877055 |
29534043.0 |
10.3390/ijerph15030510 |
d81v8b4j |
0.769389 |
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Aliabadi_2011, Park_2015, Wu_Y_2017 |
14 |
Feng_2020 |
Study on the motion law of aerosols produced by human respiration under the action of thermal plume of different intensities |
Feng, Guohui; Bi, Yang; Zhang, Yixian; Cai, Yilin; Huang, Kailiang |
2020 |
2020-03-31 |
None |
N |
PMC7104152 |
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10.1016/j.scs.2019.101935 |
lq3wl7e4 |
0.757968 |
Weerasuriya_2018, Mu_D_2018 |
Yan_Y_2019, Li_X_2018, Mu_D_2018, Gao_N_2006 |
15 |
He_Q_2011 |
CFD study of exhaled droplet transmission between occupants under different ventilation strategies in a typical office room |
He, Qibin; Niu, Jianlei; Gao, Naiping; Zhu, Tong; Wu, Jiazheng |
2011 |
2011-02-28 |
PMC |
N |
PMC7119025 |
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10.1016/j.buildenv.2010.08.003 |
rjpd0p8o |
0.741776 |
Choi_2019, Shih_2007, Zhang_2011, Mui_K_2009 |
Hui_D_2009, Mui_K_2009, Li_X_2012, Chan_2018 |
16 |
Cai_H_2014 |
Rapid identification of multiple constantly-released contaminant sources in indoor environments with unknown release time |
Cai, Hao; Li, Xianting; Chen, Zhilong; Wang, Mingyang |
2014 |
2014-11-30 |
PMC |
N |
PMC7126656 |
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10.1016/j.buildenv.2014.06.006 |
k6ovqpsn |
0.718080 |
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Fontanini_2015, Feng_2019, Bastani_2012 |
17 |
Chen_2018 |
A simple method for differentiating direct and indirect exposure to exhaled contaminants in mechanically ventilated rooms |
Chen, Chun; Zhao, Bin; Lai, Dayi; Liu, Wei |
2018 |
2018-03-17 |
PMC |
N |
PMC7090611 |
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10.1007/s12273-018-0441-0 |
qvub5v2e |
0.707554 |
Tung_2009 |
Chan_2018, Sung_2011 |
18 |
Li_F_2016 |
Numerical investigation of airborne contaminant transport under different vortex structures in the aircraft cabin |
Li, Fei; Liu, Junjie; Ren, Jianlin; Cao, Xiaodong; Zhu, Yifang |
2016 |
2016-05-31 |
PMC |
N |
PMC7094279 |
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10.1016/j.ijheatmasstransfer.2016.01.004 |
bx3nhlry |
0.690520 |
Keshavarzian_2020 |
Li_F_2018, Tung_2009, Li_F_2014, Yan_Y_2017 |
19 |
Liu_W_2012 |
State-of-the-art methods for studying air distributions in commercial airliner cabins |
Liu, Wei; Mazumdar, Sagnik; Zhang, Zhao; Poussou, Stephane B.; Liu, Junjie; Lin, Chao-Hsin; Chen, Qingyan |
2012 |
2012-01-31 |
PMC |
N |
PMC7126834 |
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10.1016/j.buildenv.2011.07.005 |
xf8160dx |
0.688606 |
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Zhu_S_2010, You_R_2018, Chen_2013, You_R_2017 |
20 |
Li_F_2014 |
Experimental study of gaseous and particulate contaminants distribution in an aircraft cabin |
Li, Fei; Liu, Junjie; Pei, Jingjing; Lin, Chao-Hsin; Chen, Qingyan |
2014 |
2014-03-31 |
PMC |
N |
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10.1016/j.atmosenv.2013.11.049 |
4dzv9l8n |
0.687899 |
Hao_J_2014, Keshavarzian_2020 |
Chen_2013, Li_F_2016, Mu_D_2017, Mu_D_2016 |
21 |
Bastani_2012 |
Contaminant source identification within a building: Toward design of immune buildings |
Bastani, Arash; Haghighat, Fariborz; Kozinski, Janusz A. |
2012 |
2012-05-31 |
PMC |
N |
PMC7127283 |
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10.1016/j.buildenv.2011.12.002 |
t54c2si1 |
0.675760 |
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Cai_H_2014, Wu_Y_2017, Bolashikov_2009, Tung_2009 |
22 |
Hathway_2011 |
CFD simulation of airborne pathogen transport due to human activities |
Hathway, E.A.; Noakes, C.J.; Sleigh, P.A.; Fletcher, L.A. |
2011 |
2011-12-31 |
PMC |
N |
PMC7126191 |
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10.1016/j.buildenv.2011.06.001 |
61gfqqhy |
0.673725 |
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Richmond-Bryant_2009, Yan_Y_2017, Fernstrom_2013 |
23 |
Feng_2015 |
TR-PIV measurement of exhaled flow using a breathing thermal manikin |
Feng, Lianyuan; Yao, Shiyong; Sun, Hejiang; Jiang, Nan; Liu, Junjie |
2015 |
2015-12-31 |
PMC |
N |
PMC7118971 |
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10.1016/j.buildenv.2015.11.001 |
lndtq585 |
0.665292 |
Xu_C_2017 |
Xu_C_2017, Wei_J_2016, Hui_D_2009, Kwon_2012 |
24 |
Yin_Y_2011 |
Distributions of respiratory contaminants from a patient with different postures and exhaling modes in a single-bed inpatient room |
Yin, Yonggao; Gupta, Jitendra K.; Zhang, Xiaosong; Liu, Junjie; Chen, Qingyan |
2011 |
2011-01-31 |
PMC |
N |
PMC7116938 |
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10.1016/j.buildenv.2010.07.003 |
latc3bwf |
0.665217 |
Qian_2010, Zhang_2011, Dai_Y_2020, Shih_2007 |
Yau_Y_2011 |
25 |
Zhu_S_2010 |
Experimental and numerical investigation of micro-environmental conditions in public transportation buses |
Zhu, Shengwei; Demokritou, Philip; Spengler, John |
2010 |
2010-10-31 |
PMC |
N |
PMC7125921 |
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10.1016/j.buildenv.2010.03.004 |
scwhwurr |
0.634803 |
Hao_J_2014, Masiol_2014, Shi_Z_2018 |
Mu_D_2016, Mu_D_2017, Li_X_2011, Yuan_2014 |
26 |
Habchi_2015 |
Transient transport model of particles resulting from high momentum respiratory activities: Inter-personal exposure |
Habchi, Carine; Ghali, Kamel; Ghaddar, Nesreen |
2015 |
2015-12-31 |
PMC |
N |
PMC7125956 |
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10.1016/j.buildenv.2015.07.028 |
goier9an |
0.615051 |
Chen_2015 |
Gao_N_2007, Chen_2013, Mui_K_2009, Chen_2015 |
27 |
You_R_2018 |
An innovative personalized displacement ventilation system for airliner cabins |
You, Ruoyu; Zhang, Yongzhi; Zhao, Xingwang; Lin, Chao-Hsin; Wei, Daniel; Liu, Junjie; Chen, Qingyan |
2018 |
2018-06-30 |
PMC |
N |
PMC7116964 |
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10.1016/j.buildenv.2018.03.057 |
ugzdyvof |
0.614985 |
Li_Y_2019, Shih_2007 |
Zhang_2010, He_Q_2011, Yau_Y_2011, Choi_2019 |
28 |
Gao_N_2006 |
Transient CFD simulation of the respiration process and inter-person exposure assessment |
Gao, Naiping; Niu, Jianlei |
2006 |
2006-09-30 |
PMC |
N |
PMC7117026 |
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10.1016/j.buildenv.2005.05.014 |
n0y8hngv |
0.593978 |
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Feng_2020, Li_X_2012, Yin_Y_2011, Han_Z_2014 |
29 |
Feng_2019 |
An improved particle swarm optimization method for locating time-varying indoor particle sources |
Feng, Qilin; Cai, Hao; Li, Fei; Liu, Xiaoran; Liu, Shichao; Xu, Jiheng |
2019 |
2019-01-31 |
PMC |
N |
PMC7117037 |
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10.1016/j.buildenv.2018.10.008 |
lcy3jhd0 |
0.584972 |
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Feng_2019, Gao_N_2007, Zhao_2005, Gao_X_2016 |
30 |
Shi_Z_2016 |
Modeling of gasper-induced jet flow and its impact on cabin air quality |
Shi, Zhu; Chen, Jun; You, Ruoyu; Chen, Chun; Chen, Qingyan |
2016 |
2016-09-01 |
PMC |
N |
PMC7127636 |
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10.1016/j.enbuild.2016.06.038 |
7z2aehta |
0.582588 |
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You_R_2018, Wang_2020, Cheng_2011, Mu_D_2018 |
31 |
Keshavarzian_2020 |
Effect of pollutant source location on air pollutant dispersion around a high-rise building |
Keshavarzian, Erfan; Jin, Ruizhi; Dong, Kejun; Kwok, Kenny C.S.; Zhang, Yu; Zhao, Ming |
2020 |
2020-05-31 |
PMC |
N |
PMC7111480 |
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10.1016/j.apm.2020.01.019 |
dn2rigki |
0.568182 |
Weerasuriya_2018, Li_Y_2019 |
Zhang_2015, Mu_D_2017, Mu_D_2016, Zahid_Iqbal_2016 |
32 |
Mui_K_2009 |
Numerical modeling of exhaled droplet nuclei dispersion and mixing in indoor environments |
Mui, K.W.; Wong, L.T.; Wu, C.L.; Lai, Alvin C.K. |
2009 |
2009-08-15 |
PMC |
N |
PMC7117047 |
19232824.0 |
10.1016/j.jhazmat.2009.01.041 |
p2n7nyrq |
0.558327 |
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Hui_D_2009, Berrouk_2010, He_Q_2011, Gao_N_2007 |
33 |
Lai_A_2007 |
Study of expiratory droplet dispersion and transport using a new Eulerian modeling approach |
Lai, Alvin C.K.; Cheng, Y.C. |
2007 |
2007-11-30 |
PMC |
N |
PMC7108424 |
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10.1016/j.atmosenv.2007.05.045 |
8eaqn8eu |
0.555093 |
Lai_A_2007, Mui_K_2009 |
Berrouk_2010, Mui_K_2009, Li_X_2018, Hui_D_2009 |
34 |
Saarinen_2015 |
Large Eddy Simulation of Air Escape through a Hospital Isolation Room Single Hinged Doorway—Validation by Using Tracer Gases and Simulated Smoke Videos |
Saarinen, Pekka E.; Kalliomäki, Petri; Tang, Julian W.; Koskela, Hannu |
2015 |
2015-07-07 |
COMM-USE |
N |
PMC4494857 |
26151865.0 |
10.1371/journal.pone.0130667 |
15oi1wza |
0.549658 |
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Tung_2009, Kalliomäki_2016, Tang_2013 |
35 |
Cho_J_2019 |
Investigation on the contaminant distribution with improved ventilation system in hospital isolation rooms: Effect of supply and exhaust air diffuser configurations |
Cho, Jinkyun |
2019 |
2019-02-05 |
PMC |
N |
PMC7108396 |
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10.1016/j.applthermaleng.2018.11.023 |
2iqr8jzm |
0.542491 |
Hao_J_2014, Masiol_2014, Tung_2009 |
Aliabadi_2011, Tung_2009, Offermann_2016 |
36 |
Liu_X_2011 |
Analysis of concentration fluctuations in gas dispersion around high-rise building for different incident wind directions |
Liu, X.P.; Niu, J.L.; Kwok, K.C.S. |
2011 |
2011-09-15 |
PMC |
N |
PMC7126167 |
21784582.0 |
10.1016/j.jhazmat.2011.06.090 |
iinisnvw |
0.531703 |
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Mu_D_2016, Mu_D_2017, Zhang_2015, Keshavarzian_2020 |
37 |
Fontanini_2015 |
Constructing Markov matrices for real-time transient contaminant transport analysis for indoor environments |
Fontanini, Anthony D.; Vaidya, Umesh; Ganapathysubramanian, Baskar |
2015 |
2015-12-31 |
PMC |
N |
PMC7125716 |
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10.1016/j.buildenv.2015.07.020 |
raycnjbl |
0.523772 |
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Chen_2015, Hathway_2011, Cai_H_2014, Chen_2013 |
38 |
Berrouk_2010 |
Experimental measurements and large eddy simulation of expiratory droplet dispersion in a mechanically ventilated enclosure with thermal effects |
Berrouk, Abdallah S.; Lai, Alvin C.K.; Cheung, Albert C.T.; Wong, S.L. |
2010 |
2010-02-28 |
PMC |
N |
PMC7127197 |
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10.1016/j.buildenv.2009.06.016 |
z9ssp0rs |
0.516028 |
Chen_2015, Lai_A_2007, Feng_2015 |
Mui_K_2009, Lai_A_2007, Lai_A_2008, Li_X_2018 |
39 |
Yu_C_2014 |
Influence of mechanical ventilation system on indoor carbon dioxide and particulate matter concentration |
Yu, Conson K.H.; Li, Min; Chan, Vincent; Lai, Alvin C.K. |
2014 |
2014-06-30 |
PMC |
N |
PMC7126795 |
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10.1016/j.buildenv.2014.03.004 |
77xznoj4 |
0.501800 |
Hao_J_2014, Li_X_2011, Heo_K_2014, Amoatey_2018 |
He_Q_2011, Cho_J_2019, Li_X_2011, Aliabadi_2011 |
40 |
Yan_Y_2017 |
Evaluation of airborne disease infection risks in an airliner cabin using the Lagrangian-based Wells-Riley approach |
Yan, Yihuan; Li, Xiangdong; Shang, Yidan; Tu, Jiyuan |
2017 |
2017-08-15 |
PMC |
N |
PMC7111330 |
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10.1016/j.buildenv.2017.05.013 |
q18cs63z |
0.493753 |
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Han_Z_2014 |
41 |
Rudnick_2015 |
Influence of ceiling fan's speed and direction on efficacy of upperroom, ultraviolet germicidal irradiation: Experimental |
Rudnick, S.N.; McDevitt, J.J.; Hunt, G.M.; Stawnychy, M.T.; Vincent, R.L.; Brickner, P.W. |
2015 |
2015-10-31 |
PMC |
N |
PMC7127731 |
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10.1016/j.buildenv.2014.03.025 |
7q0eipgw |
0.465147 |
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Sung_2011, He_Q_2011 |
42 |
Yang_2016 |
Person to person droplets transmission characteristics in unidirectional ventilated protective isolation room: The impact of initial droplet size |
Yang, Caiqing; Yang, Xudong; Zhao, Bin |
2016 |
2016-04-11 |
PMC |
N |
PMC7091150 |
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10.1007/s12273-016-0290-7 |
0b12dy3e |
0.459090 |
Shih_2007 |
Andersen_2018, Hui_D_2009, Yang_2020 |
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Dai_Y_2020 |
Investigation of interunit dispersion in 2D street canyons: A scaled outdoor experiment |
Dai, Yuwei; Mak, Cheuk Ming; Zhang, Yong; Cui, Dongjin; Hang, Jian |
2020 |
2020-03-15 |
PMC |
N |
PMC7116958 |
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10.1016/j.buildenv.2020.106673 |
ie8bsfzu |
0.453994 |
Weerasuriya_2018, Li_Y_2019, Zahid_Iqbal_2016, Keshavarzian_2020 |
Mu_D_2016, Mu_D_2017, Zhang_2015, Liu_X_2011 |
44 |
Mu_D_2018 |
CFD investigation on the effects of wind and thermal wall-flow on pollutant transmission in a high-rise building |
Mu, Di; Gao, Naiping; Zhu, Tong |
2018 |
2018-06-30 |
PMC |
N |
PMC7127015 |
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10.1016/j.buildenv.2018.03.051 |
fmgsp615 |
0.450662 |
Weerasuriya_2018, Li_Y_2019, Keshavarzian_2020, Feng_2020 |
Mu_D_2016, Mu_D_2017, Zhang_2015, Cui_D_2016 |
45 |
Poon_2011 |
An experimental study quantifying pulmonary ventilation on inhalation of aerosol under steady and episodic emission |
Poon, Carmen K.M.; Lai, Alvin C.K. |
2011 |
2011-09-15 |
PMC |
N |
PMC7116912 |
21752541.0 |
10.1016/j.jhazmat.2011.06.040 |
meumpn3g |
0.448892 |
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McGrath_2019, Mui_K_2009, Yin_Y_2011, Nikula_1990 |
46 |
Yam_R_2011 |
Rethinking hospital general ward ventilation design using computational fluid dynamics |
Yam, R.; Yuen, P.L.; Yung, R.; Choy, T. |
2011 |
2011-01-31 |
PMC |
N |
PMC7114569 |
21129819.0 |
10.1016/j.jhin.2010.08.010 |
pz2us1xx |
0.444176 |
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Yau_Y_2011, Qian_2010, Aliabadi_2011 |
47 |
Li_X_2012 |
Characteristics of physical blocking on co-occupant’s exposure to respiratory droplet residuals |
Li, Xiao-ping; Niu, Jian-lei; Gao, Nai-ping |
2012 |
2012-03-03 |
PMC |
N |
PMC7111536 |
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10.1007/s11771-012-1051-0 |
w50hgp0p |
0.439941 |
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Aliabadi_2011 |
48 |
Xu_C_2017 |
Human exhalation characterization with the aid of schlieren imaging technique |
Xu, Chunwen; Nielsen, Peter V.; Liu, Li; Jensen, Rasmus L.; Gong, Guangcai |
2017 |
2017-02-01 |
PMC |
N |
PMC7111220 |
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10.1016/j.buildenv.2016.11.032 |
3xskmsne |
0.436005 |
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Feng_2015, Wei_J_2016, Hui_D_2012, Hui_D_2009 |
49 |
Klettner_2011 |
The Effect of Turbulence on the Spreading of Infectious Airborne Droplets in Hospitals |
Klettner, C. A.; Eames, I.; Tang, J. W. |
2011 |
2011-08-19 |
PMC |
N |
PMC7121146 |
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10.1007/978-94-007-2506-5_9 |
5wvdz0s1 |
0.421705 |
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Fernstrom_2013 |
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Yuan_2014 |
Practical application of CFD on environmentally sensitive architectural design at high density cities: A case study in Hong Kong |
Yuan, Chao; Ng, Edward |
2014 |
2014-06-30 |
PMC |
N |
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10.1016/j.uclim.2013.12.001 |
nbbcacy4 |
0.416900 |
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Yuan_2018, Yuan_2012, Mu_D_2016, Zahid_Iqbal_2016 |
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Gao_N_2009 |
The airborne transmission of infection between flats in high-rise residential buildings: Particle simulation |
Gao, N.P.; Niu, J.L.; Perino, M.; Heiselberg, P. |
2009 |
2009-02-28 |
PMC |
N |
PMC7116967 |
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10.1016/j.buildenv.2008.03.016 |
7gzpvqc9 |
0.410860 |
Li_Y_2019 |
Gao_N_2008, Mao_J_2015, Wu_Y_2017, Wu_Y_2016 |
52 |
Yan_Y_2019 |
Thermal effect of human body on cough droplets evaporation and dispersion in an enclosed space |
Yan, Yihuan; Li, Xiangdong; Tu, Jiyuan |
2019 |
2019-01-15 |
PMC |
N |
PMC7116917 |
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10.1016/j.buildenv.2018.10.039 |
frrao2bv |
0.408850 |
Feng_2020, Li_X_2018, Weerasuriya_2018 |
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PMC7108432 |
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Shih_2007, Hendiger_2016 |
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PMC7115726 |
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PMC4865048 |
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10.1371/journal.pone.0155159 |
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PMC7127727 |
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10.1016/j.buildenv.2016.12.031 |
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PMC7090705 |
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10.1007/s12273-018-0460-x |
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PMC7116934 |
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10.1016/j.buildenv.2015.12.011 |
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10.1016/j.buildenv.2017.11.025 |
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HVAC filtration for controlling infectious airborne disease transmission in indoor environments: Predicting risk reductions and operational costs |
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PMC7127325 |
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10.1016/j.buildenv.2013.08.025 |
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Hao_J_2014, Amoatey_2018 |
Aliabadi_2011, Mead_2004 |
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Virus diffusion in isolation rooms |
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PMC7114847 |
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10.1016/j.jhin.2005.07.019 |
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Numerical and experimental study on airborne disinfection by negative ions in air duct flow |
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PMC7116982 |
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10.1016/j.buildenv.2017.11.006 |
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Airborne exposure patterns from a passenger source in aircraft cabins |
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PMC |
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PMC4626449 |
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10.1080/10789669.2013.838990 |
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Yan_Y_2017, Han_Z_2014, Aliabadi_2011, Tung_2009 |