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劉荔
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E-mail:liuli_archi@tsinghua.edu.cn

劉荔,beat365建築技術科學系副教授,入選新型冠狀病毒感染防治崗位國家高層次人才計劃、國家海外青年人才項目等。從事健康建築方向的研究,提出了呼吸道傳染性疾病的近距離空氣傳播機制,發明了能夠精細化測量空氣污染物黏膜暴露和呼吸道暴露劑量的體外系統,開發了基于機器視覺和聽覺的症狀和感染行為識别方法。世界衛生組織呼吸道病毒經空氣傳播專家組成員,參與編寫世界衛生組織 醫院内自然通風控制傳染疾病指南” 。承擔國家重點研發計劃抗疫專項課題3項、國家自然科學基金應急和面上項目等多項研究。新冠疫情期間,承擔了對醫院、監獄等特殊場所疫情暴發的監測和回溯;完成了武漢火神山、雷神山、金銀潭、清華長庚、江夏方艙、瑞麗中傣等醫院的環境監測和院感信息化;實現了雷神山醫院、金銀潭醫院ICU區域、瑞麗中傣醫院的環境改造,系統性降低了醫護感染風險。相關研究成果發表論文50篇,包括6篇高被引論文,授權發明專利7項。獲全國科技系統抗擊新冠肺炎疫情先進集體,住建部華夏建設科學技術獎一等獎,清華大型抗擊新冠肺炎疫情先進個人,中國環境學會最美生态環境科技工作者,“何興舟”青年學術獎等學術獎勵

個人信息

劉荔,男,出生于1984年5月,現任beat365副教授,

地址:beat365中500

郵箱:liuli_archi@tsinghua.edu.cn   

 

教育信息

博士  香港大學機械工程系,導師 Yuguo Li

課題:Exposure of expiratory droplets between people in ventilated   rooms

論文下載地址:http://hub.hku.hk/handle/10722/146136  

2011.12.15


本科    beat365熱能工程系熱能與動力工程專業                               2006.07.01    



工作經曆


2018.09

beat365副教授

2015.02-2018.08

丹麥奧爾堡大學土木工程系副教授

2012.02-2015.01

丹麥奧爾堡大學土木工程系助理教授

2014.10-2019.10

西安建築科技大學環境與市政工程學院兼職教授

2016.03-2016.04

法國東巴黎大學CERTES實驗室訪問教授

 

社會服務


2020

2019

中國建築學會建築物理分會理事

Indoor Air期刊編委

2019

中國環境學會室内環境與健康分會青年委員會副主任

2014

美國采暖、制冷與空調工程師協會成員(ASHRAE member)

2013

國際室内空氣品質與氣候協會成員(ISIAQ member)

2013

丹麥采暖、制冷與空調工程師協會成員(Danvak member)

所獲榮譽

1.        2022-2025國家高層次人才計劃

2.        2022全國科技系統抗擊新冠肺炎疫情先進集體

3.        2021年室内環境與健康學會“何興舟”青年學術獎

4.        2020年住建部華夏建設科學技術獎一等獎,項目名稱:公共建築室内環境智能監控和節能關鍵技術研究,排名第2/14。

5.        2020年beat365抗擊新冠疫情先進個人

6.        2020年中國環境學會“最美生态環境科技工作者”

7.        2019年MIT國際流體與健康大會最高獎創新獎

8.        入選國家海外青年人才項目(優先資助)

9.        2016年陝西高等學校科學技術獎一等獎,項目名稱:大型工業廠房環境保障關鍵技術研究與應用

10.      Knowledge Exchange Awards (KE) 2012, Faculty of Engineering, the University of Hong Kong

Indoor Air、暖通空調等期刊優秀論文,2022全國醫院感染管理學術年會、2021室内環境與健康分會學術年會等10餘項國内外學術會議優秀論文、優秀牆報

 

科研項目


1.        廣東呼研菲蘭科技有限公司-beat365佛山先進制造研究院,氣溶膠院感風險可視化測量技術的開發與應用

2.        國家重點研發計劃應急項目“監獄場所新型冠狀病毒傳播規律及防控策略研究”,2020YFC0861500

3.        國家自然科學基金委專項項目,醫院病房或方艙内新冠病毒氣溶膠傳播防控措施有效性研究,52041602

4.        國家自然科學基金委面上項目,高密人群室内環境空氣中病原體吸入暴露的通風控制方法研究,51778520

5.        國家重點研發計劃“建築室内空氣質量控制的基礎理論和關鍵技術研究”-建築室内空氣質量與溫濕度局部時間和空間控制策略及方法研究,2017YFC0702702

6.        中法“蔡元培”交流合作項目,Lowering exposure to airborne particulate pollutants in indoor   environments, 201700260133

7.        國家自然科學基金委面上項目,人呼出顆粒物在人體微環境中的沉降研究, 51378475


教學經曆   

1.        2012-2014年,通過丹麥奧爾堡大學兩年制Problem Based   Learning教學培訓并獲得證書

2.        2020年起,主講beat365通識選修課“健康建築”,建築學專業課“醫院建築環境設計與運維”

3.        2013-2018年,主講“建築相關流體力學Built Related Fluid Mechanics”,“自然與混合通風的高級建模Advanced Modelling of Natural and Hybrid Ventilation” “随機建模與設計優化Stochastic Modelling and Design Optimization”和“建築通風Building Ventilation”四門碩士課程

4.        2015-2018年,奧爾堡大學 “Indoor Environment and Energy Engineering”和“Building Energy Design”碩士項目學期負責人和學期課題導師

5.        作為主導師,已畢業博士生1名,已畢業碩士1名,在讀博士生4名,在讀碩士生6名。作為副導師,已畢業博士生2名,已畢業碩士生14名。


文章發表

1.          Pan, S., Xu, C., Francis Yu, C. W.,   & Liu, L. (2022). Characterization and size distribution of initial   droplet concentration discharged from human breathing and speaking. Indoor and Built Environment.       https://doi.org/10.1177/1420326X221110975

2.          Li, X., Yang, F., Su, Z., Liu, L.,   & Lin, B. (2022). Aerosol Transmission of SARS-CoV-2 in Two Dormitories —   Hubei and Shandong Provinces, China, 2020. China CDC Weekly, 4,   1–4. https://doi.org/10.46234/ccdcw2022.064

3.          Ou, C., Hu, S., Luo, K., Yang, H.,   Hang, J., Cheng, P., Hai, Z., Xiao, S., Qian, H., Xiao, S., Jing, X., Xie,   Z., Ling, H., Liu,   L., Gao, L., Deng, Q., Cowling, B. J., & Li, Y. (2022).   Insufficient ventilation led to a probable long-range airborne transmission   of SARS-CoV-2 on two buses. Building and Environment, 207, 108414. https://doi.org/10.1016/j.buildenv.2021.108414

4.          Liu, W., Liu, L., Xu, C., Fu, L., Wang,   Y., Nielsen, P. V, & Zhang, C. (2021). Exploring the potentials of   personalized ventilation in mitigating airborne infection risk for two   closely ranged occupants with different risk assessment models. Energy and   Buildings, 253, 111531.   https://doi.org/10.1016/j.enbuild.2021.111531

5.          Zhang, C., Nielsen, P. V, Liu, L.,   Sigmer, E. T., Mikkelsen, S. G., & Jensen, R. L. (2022). The source   control effect of personal protection equipment and physical barrier on   short-range airborne transmission. Building and Environment, 211, 108751. https://doi.org/10.1016/j.buildenv.2022.108751

6.          Duan, M.†, Wang, L.†,   Meng, X., Fu, L., Wang, Y., Liang, W.*, & Liu, L.* (2022). Negative Ion   Purifier Effects on Indoor Particulate Dosage to Small Airways. International Journal of Environmental   Research and Public Health 19(1),   264.   https://doi.org/10.3390/ijerph19010264

7.          Wang, Y.†, Yang, J.†,   Qiao, F., Feng, B., Hu, F., Xi, Z., Wu, W., Ni, Z., Liu, L.*, & Yuan, Y.* (2021). Compared Hand Hygiene Compliance among Healthcare Providers   before and after the COVID-19 Pandemic: A Rapid Review and Meta-analysis:   Hand Hygiene Compliance among Healthcare Providers. American Journal of Infection Control, in press. https://doi.org/10.1016/j.ajic.2021.11.030

8.          Fan, Y., Liu, L.*, Zhang, H., Deng, Y.,   Wang, Y., Duan, M., Wang, H., Wang, L., Han, L., & Liu, Y. (2021).   Exposure of Ophthalmologists to Patients’ Exhaled Droplets in Clinical   Practice: A Numerical Simulation of SARS-CoV-2 Exposure Risk. Frontiers in   Public Health, 9, 1371. https://www.frontiersin.org/article/10.3389/fpubh.2021.725648

9.          Guo, K., Qian, H.*, Liu, F., Ye, J., Liu, L.*,   & Zheng, X. (2021). The impact of using portable humidifiers on airborne   particles dispersion in indoor environment. Journal of Building   Engineering, 103147. https://doi.org/10.1016/j.jobe.2021.103147

10.      Chen, W., Qian, H., Zhang, N., Liu,   F., Liu, L.,   & Li, Y. *   (2021). Extended short-range airborne transmission of respiratory infections.   Journal of Hazardous Materials,   126837. https://doi.org/10.1016/j.jhazmat.2021.126837

11.      Fu, L., Nielsen, P. V, Wang, Y.,   & Liu,   L.* (2021). Measuring interpersonal transmission of expiratory   droplet nuclei in close proximity. Indoor   and Built Environment, 1420326X211029689. https://doi.org/10.1177/1420326X211029689

12.      Liu, L., Liu, X., Duan, M., Wang, Y.,   Zhang, X. (2021). Experimentalstudy on evaporation mechanism of indoor   microbial droplets. Journal of Xi'an University of Architecture &   Technology (Natural Science Edition). 2021(1), 126-131. https://doi.org/10.15986/j.1006-7930.2021.01.017

13.      Lu, Y. #, Li, Y. #,   Zhou, H., Lin, J., Zheng, Z., Xu, H., Lin, B. *, Lin, M. *, & Liu, L. *   (2021). Affordable measures to monitor and alarm nosocomial SARS-CoV-2   infection due to poor ventilation. Indoor Air, 31, 1833–1842. https://doi.org/10.1111/ina.12899

14.      張再鵬、陳焰華、雷建平、張德銀、趙彬、劉荔. (2020). 某方艙醫院的通風空調系統設計. 暖通空調, 50 (11), 67-70+92. https://d.wanfangdata.com.cn/periodical/ntkt202011013  

15.      王力翔, 鄧應平, 王钰嬌, 劉荔, 段夢婕, & 張慧.   (2021). 冠狀病毒與眼部傳染風險. 中華眼科雜志, 57(04), 305-310. https://doi.org/10.3760/cma.j.cn112142-20200926-00625  

16.      Qian, H., Miao, T., Liu, L.,   Zheng, X., Luo, D., & Li, Y. * (2021). Indoor transmission of SARS-CoV-2.   Indoor Air, 31, 639–645. https://doi.org/10.1111/ina.12766   ESI高被引論文

17.      Li, Y., Qian, H., Hang, J.,   Chen, X., Cheng, P., Ling, H., Wang, S., Liang, P., Li, J., Xiao, S., Wei,   J., Liu, L.,   Cowling, B. J., & Kang, M. (2021). Probable airborne transmission of   SARS-CoV-2 in a poorly ventilated restaurant. Building and Environment,   196,   107788. https://doi.org/10.1016/j.buildenv.2021.107788   ESI熱點論文

18.      Qian, H., & Liu, L.   (2021). Indoor transmission law and control method of novel coronavirus. Chinese   Science Bulletin, 66(4–5), 415–416. https://doi.org/10.1360/TB-2021-0047  

19.      徐春雯, 劉文冰, 劉荔*, 曹世傑, 任怡靜. (2021). 新型冠狀病毒肺炎個性化通風防控的非均布評價方法, 科學通報, 66(4–5), 465–474. https://doi.org/10.1360/TB-2020-0830  

20.      陸依然, 李伊凡, 林明貴*, 劉荔*, 林波榮, 周浩, 林金蘭, 徐滬濟.(2021). 新冠肺炎疫情下綜合醫院發熱門診環境監測與感染控制, 科學通報, 66(4–5), 475–485. https://doi.org/10.1360/TB-2020-0969  

21.      劉荔, 周浩, 林波榮*, 餘娟. (2020). 新冠疫情下隔離醫院室内環境安全實時監測與防控策略研究. 科學通報, 66(4–5), 424–432. https://doi.org/10.1360/TB-2020-0660  

22.      Zhang, N., Cheng, P., Jia,   W., Dung, C.-H., Liu, L., Chen, W., Lei, H., Kan, C., Han, X.,   Su, B., Xiao, S., Qian, H., Lin, B., & Li, Y.* (2020). Impact of   intervention methods on COVID-19 transmission in Shenzhen. Building and   Environment, 180, 107106. https://doi.org/10.1016/j.buildenv.2020.107106  

23.      Guo, Y., Wei, J.*, Ou, C., Liu, L.,   Sadrizadeh, S., Jin, T., Tang, L., Zhang, Y., & Li, Y. (2020). Deposition   of droplets from the trachea or bronchus in the respiratory tract during   exhalation: A steady-state numerical investigation. Aerosol Science and   Technology, 54(8), 869–879. https://doi.org/10.1080/02786826.2020.1772459  

24.      Jiang, J.*, Vincent Fu, Y., Liu, L.,   & Kulmala, M. (2020). Transmission via aerosols: Plausible differences   among emerging coronaviruses. Aerosol Science and Technology, 54(8),   865–868. https://doi.org/10.1080/02786826.2020.1769020  

25.      Liu, W., Huang, J., Lin, Y.,   Cai, C., Zhao, Y., Teng, Y., Mo, J., Xue, L., Liu, L., Xu, W., Guo, X., Zhang,   Y.*, & Zhang, J.* (Jim). (2021). Negative ions offset cardiorespiratory   benefits of PM2.5 reduction from residential use of negative ion air   purifiers. Indoor Air, 31(1), 220–228. https://doi.org/10.1111/ina.12728  

26.      Xu, C., Wei, X., Liu, L.*,   Su, L., Liu, W., Wang, Y., & Nielsen, P. V. (2020). Effects of   personalized ventilation interventions on airborne infection risk and   transmission between occupants. Building and Environment, 180,   107008. https://doi.org/10.1016/j.buildenv.2020.107008  

27.    劉荔*, 張毅, 付林志,王怡. (2020). 熱分層環境人際間飛沫傳染風險與對策研究. 暖通空調, 50(6), 19-25. https://d.wanfangdata.com.cn/periodical/ntkt202006004   2020年暖通空調期刊優秀論文獎

28.      Yang, X., Ou, C., Yang, H., Liu, L.,   Song, T., Kang, M., Lin, H., & Hang, J.* (2020). Transmission of   pathogen-laden expiratory droplets in a coach bus. Journal of Hazardous   Materials, 397, 122609. https://doi.org/10.1016/j.jhazmat.2020.122609  ESI高被引論文

29.      劉碩, 劉雅琳, 王怡, 張婷, 孫偉, 劉荔*.   (2020). 呼吸暖體假人的技術發展及其在健康建築領域的應用與展望. 科學通報,   65(4), 274–287. https://doi.org/10.1360/TB-2019-0462

30.      Berlanga,   F. A.*, Liu, L., Nielsen,   P. V, Jensen, R. L., Costa, A., Olmedo, I., & de Adana, M. R. (2020). Influence of the geometry of the airways on the characterization   of exhalation flows. Comparison between two different airway complexity   levels performing two different breathing functions. Sustainable Cities and Society, 53, 101874. https://doi.org/10.1016/j.scs.2019.101874  

31.      Zhao, R., Qian, H.*, Liu, L., & Zheng, X. (2020). Comprehensive performance evaluation of   a novel Aaberg exhaust system reinforced by a swirling jet. Building and Environment, 167, 106451. https://doi.org/10.1016/j.buildenv.2019.106451  

32.      Duan, M., Liu, L.*, Da, G. , Géhin, E. , Nielsen, P. V., Weinreich, U. , Lin, B. ,   Wang, Y. , Zhang, T., & Sun, W. (2019). Measuring the administered dose   of particles on the facial mucosa of a realistic human model. Indoor Air, 30, 108-116. https://doi.org/10.1111/ina.12612 

33.      Hvelplund,   M. H., Liu, L.*,   Frandsen, K. M., Qian, H., Nielsen, P. V, Dai, Y., Wen, L., & Zhang, Y.   (2019). Numerical investigation of the lower airway   exposure to indoor particulate contaminants. Indoor and Built Environment, 29, 575-586. https://doi.org/10.1177/1420326X19874856  

34.      Vianello,   A., Jensen, R. L., Liu, L., & Vollertsen, J.* (2019). Simulating human   exposure to indoor airborne microplastics using a Breathing Thermal Manikin. Scientific Reports, 9(1), 8670. https://doi.org/10.1038/s41598-019-45054-w   ESI高被引論文

35.      Duan, M., Wang, Y., Wang, D.,   Da, G., Liu,   L., & Yang, Y. (2019). Modeling dynamic variation of drag   force acting on single hot particle. Powder Technology, 344, 432–442. https://doi.org/10.1016/j.powtec.2018.12.034  

36.      Zhang, Q.,   Zhang, X.*, Ye, W., Liu, L., & Nielsen,   P. V. (2018). Experimental study of dense gas contaminant transport   characteristics in a large space chamber. Building and Environment, 138, 98–105. https://doi.org/10.1016/j.buildenv.2018.04.020

37.      Jin, D., Wexler, A.S., Chan,   M., Liu, L., Zhou, Z., Li, X.*. (2018). Characterization   of Size Distribution and Chemical Composition of Exhaled Particles by Using   Single Particle Aerosol Mass Spectrometry. Journal of Instrumental Analysis, 37(8), 906-912. https://doi.org/10.3969/j.issn.1004-4957.2018.08.006  

38.      Xu, C.*, & Liu, L. (2018). Personalized ventilation: One possible solution for   airborne infection control in highly occupied space? Indoor and Built   Environment, 27(7), 873–876. https://doi.org/10.1177/1420326X18777383  

39.      Xu,   C., Nielsen, P.V.*, Liu, L., Jensen, R.L., & Gong, G. (2018). Impacts of   airflow interactions with thermal boundary layer on performance of   personalized ventilation. Building and   Environment, 135,31-41. https://doi.org/10.1016/j.buildenv.2018.02.048  

40.      Shi,   Z., Qian, H.*, Zheng, X., Lv, Z., Li, Y., Liu, L., & Nielsen, P.V. (2017). Seasonal variation of window opening behaviors in two naturally   ventilated hospital wards. Building and   Environment, 130,85-93. https://doi.org/10.1016/j.buildenv.2017.12.019  

41.      Huang,   Y., Wang, Y.*, Liu, L., Nielsen, P. V., Jensen, R. L., & Yang, X. (2017). Performance of constant exhaust ventilation for removal of   transient high-temperature contaminated airflows and ventilation-performance   comparison between two local exhaust hoods. Energy & Buildings, 154,   207-216. https://doi.org/10.1016/j.enbuild.2017.08.061

42.      Sørensen, M.J., Hansen, K.K.,   Silkjær, M.H., Myhre, S.H., Marszal-Pomianowska, A., & Liu, L.* (2017). Integrated building energy design of   a Danish office building based on Monte Carlo Simulation method. Energy Procedia, 132, 93-98. https://doi.org/10.1016/j.egypro.2017.09.646  

43.      Xu,   C., Nielsen, P.V.*, Liu, L., Jensen, R.L., & Gong, G. (2017). Human   exhalation characterization with the aid of Schlieren imaging technique. Building and Environment, 112, 190-199. https://doi.org/10.1016/j.buildenv.2016.11.032  

44.      Zhou, Q., Qian, H.*, & Liu, L. (2016). Numerical investigation of airborne infection in   naturally ventilated hospital wards with central-corridor type. Indoor and Built Environment, 27(1), 59-69. https://doi.org/10.1177/1420326X16667177  

45.      Liu, L., Li, Y.*, Nielsen, P.V., Jensen, R.L., & Wei, J.   (2016). Short-range airborne transmission of   expiratory droplets between two people. Indoor   Air, 27, 452-462. https://doi.org/10.1111/ina.12314   ESI高被引論文

46.      Liu, L., Wei, J.*, Li, Y., & Ooi, A. 2016. Evaporation and dispersion of respiratory droplets from coughing. Indoor Air, 27, 179-190. https://doi.org/10.1111/ina.12297   ESI高被引論文/Indoor Air期刊優秀論文

47.      Huang,   Y., Wang, Y.*, Liu, L., Nielsen, P.V., Jensen, R.L., & Yan, F.L. (2015). Reduced-scale experimental investigation on ventilation   performance of a local exhaust hood in an industrial plant. Building and Environment,   85, 94-103. https://doi.org/10.1016/j.buildenv.2014.11.038  

48.      Peng, L., Nielsen, P. V,   Wang, X., Sadrizadeh, S., Liu, L., & Li, Y. (2016). Possible   user-dependent CFD predictions of transitional flow in building ventilation. Building   and Environment, 99, 130–141. https://doi.org/10.1016/j.buildenv.2016.01.014  

49.      Cao, G., Nielsen, P. V,   Jensen, R. L., Heiselberg, P., Liu, L., & Heikkinen, J. (2015). Protected   zone ventilation and reduced personal exposure to airborne cross-infection. Indoor   Air, 25(3), 307–319. https://doi.org/10.1111/ina.12142  

50.      Xu,   C., Nielsen, P. V., Gong, G.*, Liu, L., & Jensen, R. L. (2015). Measuring the   exhaled breath of a manikin and human subjects. Indoor Air, 25(2),   188-197. https://doi.org/10.1111/ina.12129  

51.      Xu,   C., Nielsen, P. V., Gong, G.*, Jensen, R. L., & Liu, L. (2015). Influence of air stability and metabolic rate on exhaled flow. Indoor Air, 25(2), 198-209. https://doi.org/10.1111/ina.12135

52.      Xie,   X., Li, Y.*, Sun, H., & Liu, L. (2009). Exhaled droplets due to talking and   coughing. Journal of the Royal Society   Interface, 6, 703-714. https://doi.org/10.1098/rsif.2009.0388.focus  

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