[1] |
Li Bin, Ning Zhaoyu, Zhang Zhiwei, Jia Boyan .
Research on the fire extinguishing efficiency of low-pressure water mist in urban underground utility tunnel cable fires
[J]. Fire Science and Technology, 2024, 43(6): 787-791.
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[2] |
Ding Chao, Li Yuyao, He Lingfeng, Jiao Yan.
Study on the combustion characteristics of cable fire under different ambient pressure and inclination angle
[J]. Fire Science and Technology, 2023, 42(9): 1197-1200.
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[3] |
Yu Wei, Tu Yue, Yi Tao, Gao Fei.
Experimental study on combustion characteristics and heat transfer of 220 kV high-voltage cable Fire
[J]. Fire Science and Technology, 2023, 42(9): 1187-1191.
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[4] |
Luo Man, Wang Ziyang, Chu Zhubin, Shi Xiaolong.
Experimental study on entity fire test of high pressure water mist in equipment room of hub station
[J]. Fire Science and Technology, 2023, 42(8): 1094-1097.
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[5] |
Liu Jie, Ying Di, Li Qiuping, Zhang Ran.
Influence of wind speed and fire source location on the fire spread characteristics of L⁃shaped comprehensive pipe gallery
[J]. Fire Science and Technology, 2023, 42(7): 944-949.
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[6] |
Liu Wenyuan, Xu Zhijun, Zhang Cailiang.
Research on fire hazards and the automatic fire extinguishing system in underground comprehensive pipe gallery of nuclear power plant
[J]. Fire Science and Technology, 2023, 42(12): 1738-1742.
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[7] |
Gong Xiangyang, Dong Ping, He Yutao, Chen Cheng.
Study on early combustion characteristics and prevention measures of overloaded cable fire in narrow channel
[J]. Fire Science and Technology, 2023, 42(12): 1642-1645.
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[8] |
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Influence of cable surface temperature on arc ignition cable and flame spread
[J]. Fire Science and Technology, 2022, 41(2): 180-184.
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[9] |
Cui Kunpeng, Zeng Tao, Cui Yingjie, Li Xue.
Study on the influence of temperature and pressure field after gas leakage and explosion in underground utility tunnels
[J]. Fire Science and Technology, 2022, 41(11): 1503-1506.
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[10] |
LV Hong-kun1, LIN Chen-yu2, YU Bin1, ZHANG Guang-xue2.
Test of cable fire smoke characteristics and experimental study of acoustic agglomeration to eliminate smoke
[J]. Fire Science and Technology, 2022, 41(1): 5-10.
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[11] |
CHI Yuan, WANG Na, MA Yi-wei.
Numerical analysis of influence of ventilation on
cable fire in long and narrow space
[J]. Fire Science and Technology, 2021, 40(9): 1341-1344.
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[12] |
LAN Mei-juan, FENG Tao, TU Jia-qing, TAO Chang-fa.
Study on the effectiveness of extinguishing
cable fires under the combined action of
liquid nitrogen and smoke
[J]. Fire Science and Technology, 2021, 40(9): 1269-1275.
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[13] |
LI Chen-ying, CHEN Jie, TAN Xiao, HU Li-bin, ZHANG Wei, CAO Jing-ying, LIU Xu-hui, WU Shu-qun.
A review of typical fire source simulation methods for cable combustion
[J]. Fire Science and Technology, 2021, 40(3): 345-351.
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[14] |
ZHONG Wei, MA Wen-hui, SUN Cao-peng, GAO Zi-he, ZHAO Jun.
Numerical simulation on ignition process of 110 kV high-voltage cable
[J]. Fire Science and Technology, 2021, 40(1): 68-75.
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[15] |
JIA Bo-yan, ZHANG Peng, ZHANG Yuan-yuan, XU Ya-bing, WEI Li-qiang.
Influence of fire separation and smoke extraction measures on the spread of smoke utility tunnel cable fire
[J]. Fire Science and Technology, 2021, 40(1): 47-50.
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