[1]上海市政工程设计研究总院(集团)有限公司, 同济大学. 城市综合管廊工程技术规范:GB 50838—2015[S].北京:中国计划出版社, 2015:20.Shanghai Municipal Engineering Design Institute (Group) Co., Tongji University. Technical code for utility tunnel engineering: GB 50838—2015[S]. Beijing:China Planning Press, 2015:20.
[2]孙立, 余斌, 杨恒声. 城市地下综合管廊通风设计探讨[J]. 暖通空调, 2018, 48(8): 94-96.
SUN Li, YU Bing, YANG Hengsheng. Discussion on ventilation design of urban utility tunnel[J]. Heating Ventilating & Air Conditioning, 2018, 48(8): 94-96.
[3]崔国静, 周庆国, 宋战平. 城市地下综合管廊建设与发展探析[J]. 西安建筑科技大学学报(自然科学版), 2020, 52(5): 660-666.
CUI Cuojing, ZHOU Qingguo, SONG Zhanping. Analysis on construction and development of urban utility tunnel[J]. J. of Xi′an Univ. of Arch. & Tech. (Natural Science Edition), 2020, 52(5): 660-666.
[4]鱼晟睿. 地下超长区间隧道取消中间风井的防排烟系统模式研究[J]. 西安建筑科技大学学报(自然科学版), 2021, 53(3): 379-385.
YU Shengrui. Study on the model of smoke prevention and exhaust system without intermediate wind well in the underground extra-long interval tunnel of urban rail transit[J]. J. of Xi′an Univ. of Arch. & Tech. (Natural Science Edition), 2021, 53(3): 379-385.
[5]李哲,高锴,张晨,等.综合管廊电力舱温度场的数值模拟研究[J]. 资源节约与环保, 2019(12): 137-140.
LI Zhe, GAO Kai, ZHANG Chen, et al. Numerical simulation study on the temperature field of electric cabin in utility tunnel[J]. Resources Economization & Environment Protection, 2019(12): 137-140.
[6]周游, 周伟国.综合管廊电缆舱通风数值模拟研究[J]. 建筑热能通风空调, 2016,35(11):29-33,91.
ZHOU You, ZHOU Weiguo. Study on numerical simulation of utility cable tunnel ventilation system[J]. Building Energy & Environment, 2016,35(11):29-33,91.
[7]韦岩, 谢安生, 洪梦华. 综合管廊电缆舱断面形状对通风影响的研究[J]. 施工技术, 2018,47(A4):1436-1439.
WEI Yan, XIE Ansheng, HONG Menghong. Study on the influence of section shape of utility cable tunnel on ventilation[J]. Construction Technology, 2018,47(A4):1436-1439.
[8]杨霁虹. 地下综合管廊电力舱内高温聚集区的通风系统模拟研究[D]. 沈阳:沈阳建筑大学, 2018.
YANG Jihong. Research on ventilation system of high temperature accumulation area in electric cabin of underground integrated pipe gallery[D]. Shenyang: Shenyang Jianzhu University, 2018.
[9]WANG J, LIU X, CHEN S, et al. Reducedscale model study on cable heat dissipation and airflow distribution of power cabins[J]. Applied Thermal Engineering, 2019, 160: 114068.
[10]郭对明, 李国清, 侯杰, 等. 基于FLUENT的深井掘进巷道局部通风参数优化[J]. 黄金科学技术, 2022, 30(5): 753-763.
GUO Duiming, LI Guoqing, HOU Jie, et al. Optimization of local ventilation parameters of deep mine excavation roadway based on FLUENT[J]. Gold Science and Technology, 2022, 30(5): 753-763.
[11]KUSUI A , VILLAESCUSA E , FUNATSU T . Mechanical behaviour of scaled-down unsupported tunnel walls in hard rock under high stress[J]. Tunnelling & Underground Space Technology Incorporating Trenchless Technology Research, 2016, 60:30-40.
[12]徐志胜, 陶浩文, 王天雄, 等. 隧道曲率半径对空气射流流场特性及升压效率的影响研究[J].安全与环境学报, 2023,23(2):415-423.
XU Zhisheng, TAO Haowen, WANG Tianxiong, et al. Experimental study on propagation characteristics of the deflagration flame of coal dust/methane /air in constant volume chamber[J]. Journal of Safety and Environment, 2023,23(2):415-423.
[13]王万青. 城市隧道射流风机安装技术[J]. 城市建筑空间, 2022, 29(9): 245-246.
WANG Wanqing. Installation techniques for jet fans in urban tunnels[J]. Urban Architectural Space, 2022, 29(9): 245-246.
[14]李方舰, 李婧, 戎贤,等. 基于FDS的公路隧道火灾可逆射流风机通风疏散研究[J]. 消防科学与技术, 2022,41(8): 1056-1060.
LI Fangjian, LI Jing, RONG Xian, et al. Study on ventilation and evacuation of highway tunnel fire reversible jet fan based on FDS[J]. Fire Science and Technology, 2022,41(8): 1056-1060.
[15]LEE H, KWAK J, CHOI J, et al. A labscale experimental approach to evaluate rheological properties of foam-conditioned soil for EPB shield tunnelling[J]. Tunnelling and Underground Space Technology, 2022, 128: 104667.
[16]JANG Y, KIM J, RHO J, et al. The characteristics of ventilated pool fires of Daegok-Sosa subway lines using Model-Scale tunnels and stations[J]. Tunnelling and Underground Space Technology, 2022, 121:104321.
[17]WANG X, SPEARPOINT M, FLEISCHMANN C. Comparison of results from large-scale and small-scale tunnel experiments[J]. Fire Safety Journal, 2018, 95: 135-144.
[18]LI J, LIU W, LI Y F, et al. Scale modelling experiments on the effect of longitudinal ventilation on fire spread and fire properties in tunnel[J]. Tunnelling and Underground Space Technology, 2022, 130: 104725.
[19]COSTANTINO A, MUSTO M, ROTONDO G, et al. Numerical analysis for reducedscale road tunnel model equipped with axial jet fan ventilation system[J]. Energy Procedia, 2014, 45: 1146-1154.
[20]CHENG Q, LI H, RONG L, et al. Using CFD to assess the influence of ceiling deflector design on airflow distribution in hen house with tunnel ventilation[J]. Computers and Electronics in Agriculture, 2018, 151: 165-174.
[21]DU L, YANG C, DOMINY R, et al. Computational fluid dynamics aided investigation and optimization of a tunnel-ventilated poultry house in China[J]. Computers and Electronics in Agriculture, 2019, 159: 1-15.
[22]YANG S, AI Z, ZHANG C, et al. Study on optimization of tunnel ventilation flow field in long tunnel based on CFD computer simulation technology[J]. Sustainability, 2022, 14(18): 11486.
[23]陆耀庆. 实用供热空调设计手册[M].第二版,北京:中国建筑工业出版社, 2008.
LU Yaoqing. Practical heating and air conditioning design manual[M].2nd ed, Beijing: China Construction Industry Press, 2008.
[24]刘引鸽, 周欢欢, 胡浩楠, 等. 西安地区土壤浅层温度变化特征[J]. 干旱区资源与环境, 2019,33(8):153-159.
LIU Yinge, ZHOU Huanhuan, HU Haonan. Characteristics of shallow soil temperature changes in Xi′an area[J]. Journal of Arid Land Resources and Environment, 2019,33(8):153-159.
[25]张锦鹏. 综合管廊通风换热理论研究[J]. 暖通空调, 2022,52(4):146-151.
ZHANG Jinpeng. Theoretical study on ventilation and heat transfer of utility tunnels[J]. Heating Ventilating & Air Conditioning, 2022,52(4):146-151.