[1]

Johansson N, Ronchi E, Scozzari R, Fronterrè M. 2023. The use of multi-zone modelling for tunnel fires. Tunnelling and Underground Space Technology 134:104996

doi: 10.1016/j.tust.2023.104996
[2]

Ang CDE, Rein G, Peiro J, Harrison R. 2016. Simulating longitudinal ventilation flows in long tunnels: Comparison of full CFD and multi-scale modelling approaches in FDS6. Tunnelling and Underground Space Technology 52:119−26

doi: 10.1016/j.tust.2015.11.003
[3]

Wang M, Guo X, Yu L, Zhang Y, Tian Y. 2021. Experimental and numerical studies on the smoke extraction strategies by longitudinal ventilation with shafts during tunnel fire. Tunnelling and Underground Space Technology 116:104030

doi: 10.1016/j.tust.2021.104030
[4]

Yao Y, Wang Y, Chen L, Ren F, Shi C. 2023. Numerical study on coupled smoke control using longitudinal ventilation and naturally ventilated shafts during fires in a road tunnel. Fire 6(3):126

doi: 10.3390/fire6030126
[5]

Tung PW, Chung HC, Kawabata N, Seike M, Hasegawa M, et al. 2023. Numerical study of smoke distribution in inclined tunnel fire ventilation modes considering traffic conditions. Buildings 13(3):714

doi: 10.3390/buildings13030714
[6]

Chow WK, Gao Y, Zhao JH, Dang JF, Chow CL, et al. 2015. Smoke movement in tilted tunnel fires with longitudinal ventilation. Fire Safety Journal 75:14−22

doi: 10.1016/j.firesaf.2015.04.001
[7]

Kim E, Woycheese JP, Dembsey NA. 2008. Fire dynamics simulator (version 4.0) simulation for tunnel fire scenarios with forced, transient, longitudinal ventilation flows. Fire Technology 44(2):137−66

doi: 10.1007/s10694-007-0028-2
[8]

Huang Y, Li Y, Dong B, Li J, Liang Q. 2018. Numerical investigation on the maximum ceiling temperature and longitudinal decay in a sealing tunnel fire. Tunnelling and Underground Space Technology 72:120−30

doi: 10.1016/j.tust.2017.11.021
[9]

Muhasilovic M, Duhovnik J. 2012. CFD-based investigation of the response of mechanical ventilation in the case of tunnel-fire. Strojniški Vestnik – Journal of Mechanical Engineering 58(3):183−90

doi: 10.5545/sv-jme.2009.091
[10]

He K, Li YZ, Ingason H, Cheng X. 2023. Fire spread among multiple vehicles in tunnels using longitudinal ventilation. Tunnelling and Underground Space Technology 133:104967

doi: 10.1016/j.tust.2022.104967
[11]

Drame O, Mbow C, Bode F. 2019. Numerical simulation of the natural convection in a tunnel whose floor has a variable sinusoid with a roof opening. Open Journal of Fluid Dynamics 9(4):326−33

doi: 10.4236/ojfd.2019.94021
[12]

Brahim K, Mourad B, Afif EC, Ali B. 2013. Control of smoke flow in a tunnel. Journal of Applied Fluid Mechanics 6(1):49−60

doi: 10.36884/jafm.6.01.19481
[13]

Wu Y, Bakar MZA. 2000. Control of smoke flow in tunnel fires using longitudinal ventilation systems – a study of the critical velocity. Fire Safety Journal 35(4):363−90

doi: 10.1016/S0379-7112(00)00031-X
[14]

Li L, Du F, Yang Y, Wei L, Huang F, et al. 2022. Research on the smoke mass flow rate in one-dimensional spreading stage in tunnel with multiple fire sources. Case Studies in Thermal Engineering 31:101801

doi: 10.1016/j.csite.2022.101801
[15]

Yao Y, Wang R, Xia Z, Ren F, Zhao J, et al. 2022. Numerical study of the characteristics of smoke spread in tunnel fires during construction and method for improvement of smoke control. Case Studies in Thermal Engineering 34:102043

doi: 10.1016/j.csite.2022.102043
[16]

Yao HW, Li YX, Lv KF, Zhang JG, Lv ZB, et al. 2022. Numerical simulation of smoke control in underground space. Mathematical Problems in Engineering 2022:3113779

doi: 10.1155/2022/3113779
[17]

Zhao P, Yuan Z, Yuan Y, Yu N, Yu T. 2019. A study on ceiling temperature distribution and critical exhaust volumetric flow rate in a long-distance subway tunnel fire with a two-point extraction ventilation system. Energies 12(8):1411

doi: 10.3390/en12081411
[18]

Yao Y, Xia Z, Wang R, Ren F, Gao Z, et al. 2023. Smoke movement and control in tunnels under construction: Recent research progress and future directions. Fire 6(5):191

doi: 10.3390/fire6050191
[19]

Patankar S.1980. Numerical heat transfer and fluid flow. 1st Edition. Boca Raton: CRC Press. https://doi.org/10.1201/9781482234213

[20]

Kennedy WD. 1996. Critical velocity: past, present and future. One Day Seminar on Smoke and Critical Velocity in Tunnels, ITC, 2 April.

[21]

National Fire Protection Association (NFPA). 2021. NFPA Technical Committee on Road Tunnel and Highway Fire Protection (ROA-AAA), NFPA 502 Second Draft Meeting. October 5−7, 14 & 19, 2021, Web/Teleconference. National Fire Protection Association. www.nfpa.org/api/files?path=%2Ffiles%2FAboutTheCodes%2F502%2F502_A2022_ROA_AAA_SDagenda_10_21.pdf

[22]

Fu PH, Tam HK, Lao S, Tam LM, Sin VK, et al. 2018. Simulation of smoke flow in a longitudinal ventilated tunnel in Macau. Proceedings of the International Conference on Computational Methods. https://repository.um.edu.mo/handle/10692/112109