Journal of System Simulation ›› 2025, Vol. 37 ›› Issue (8): 2030-2042.doi: 10.16182/j.issn1004731x.joss.24-0237
• Papers • Previous Articles
Niu Jianmin, Zhong Yue, Xu Feng, Ma Jindun
Received:
2024-03-13
Revised:
2024-05-13
Online:
2025-08-20
Published:
2025-08-26
Contact:
Zhong Yue
CLC Number:
Niu Jianmin, Zhong Yue, Xu Feng, Ma Jindun. Research on Simulation Technology of Fire Extinguishing in Engine Compartment of Special Vehicle[J]. Journal of System Simulation, 2025, 37(8): 2030-2042.
Table 1
Total detection response time and fire extinguishing time
工况 | 探测响应时间 | 灭火时间 | 总时长 |
---|---|---|---|
常温常压,火源在舱室角落 | 12.83 | 12.01 | 24.84 |
常温常压,火源在舱室中部 | 15.19 | 0.79 | 15.98 |
低温低湿,火源在舱室角落 | 12.55 | 24.52 | 37.07 |
低温低湿,火源在舱室中部 | 18.05 | 24.71 | 42.76 |
低温低压,火源在舱室角落 | 9.91 | 6.64 | 16.55 |
低温低压,火源在舱室中部 | 13.42 | 0.65 | 14.07 |
高温高湿,火源在舱室角落 | 12.48 | 11.71 | 24.19 |
高温高湿,火源在舱室中部 | 14.62 | 0.73 | 15.35 |
[1] | 李丽. 动力装置舱灭火剂浓度分布影响因素试验分析[J]. 工程与试验, 2018, 58(1): 50-53, 61. |
Li Li. Experimental Analysis of Influencing Factors on Concentration Distribution of Extinguishing Agent in Powerplant Nacelle[J]. Engineering and Test, 2018, 58(1): 50-53, 61. | |
[2] | 谷运双, 霍岩. 载人航天器密封舱内强制通风下的火灾温度场及流场特性仿真分析[J]. 航天器环境工程, 2020, 37(1): 31-36. |
Gu Yunshuang, Huo Yan. The Characteristics of Fire Temperature and Flow Field for Different Ventilation Angles in Manned Spacecraft's Sealed Cabin[J]. Spacecraft Environment Engineering, 2020, 37(1): 31-36. | |
[3] | Kim Jintaek, Baek Byungjoon, Lee Jeekeun. Numerical Analysis of Flow Characteristics of Fire Extinguishing Agents in Aircraft Fire Extinguishing Systems[J]. Journal of Mechanical Science and Technology, 2009, 23(7): 1877-1884. |
[4] | 严震海, 胡洋洋, 武红梅, 等. 典型机舱1301灭火系统管网流速及浓度分布仿真计算[J]. 船海工程, 2018, 47(6): 93-97, 101. |
Yan Zhenhai, Hu Yangyang, Wu Hongmei, et al. Simulation of Flow Rate and Concentration Distribution of Typical Cabin 1301 Fire Extinguishing System[J]. Ship & Ocean Engineering, 2018, 47(6): 93-97, 101. | |
[5] | 黄苏平, 朱培, 刘全义, 等. 民机货舱氮气-细水雾协同灭火数值仿真研究[J/OL]. 北京航空航天大学学报. (2023-10-23) [2024-03-05]. . |
Huang Suping, Zhu Pei, Liu Quanyi, et al. Numerical Simulation Study on Synergetic Fire Suppression of Nitrogen/Water-mist in Aircraft Cargo Compartment[J/OL]. Journal of Beijing University of Aeronautics and Astronautics. (2023-10-23) [2024-03-05]. . | |
[6] | Ivan Miguel De Cachinho Cordeiro, Liu Hengrui, Anthony Chun Yin Yuen, et al. Numerical Investigation of Expandable Graphite Suppression on Metal-based Fire[J]. Heat and Mass Transfer, 2022, 58(1): 65-81. |
[7] | Garnayak Subrat, Amjad Ali Pasha, Alsulami Radi, et al. Numerical Investigation to Evaluate the Effects of Gravity and Pressure on Flame Structure and Soot Formation of Turbulent Non-premixed Methane-air Flame[J]. Propulsion and Power Research, 2022, 11(4): 473-495. |
[8] | White J P. Measurement and Simulation of Suppression Effects in a Buoyant Turbulent Line Fire[D]. College Park: University of Maryland, College Park, 2016. |
[9] | 任凯, 杨立, 浦金云, 等. 基于系统动力学特性的虚拟舱室灭火交互模型[J]. 兵工学报, 2013, 34(9): 1137-1143. |
Ren Kai, Yang Li, Pu Jinyun, et al. An Interactive Virtual Compartment Fire Extinguishing Model Based on System Dynamic Characteristic[J]. Acta Armamentarii, 2013, 34(9): 1137-1143. | |
[10] | Kim T, Suh S, Jung G. Analysis Procedure for Fire Power Suppression on Enemy Artillery Base Using FASCAM[J]. Journal of the Korea Institute of Military Science and Technology, 2015, 18(6): 743-754. |
[11] | Hughes T J R, Franca L P, Balestra M. A New Finite Element Formulation for Computational Fluid Dynamics: V. Circumventing the Babuška-brezzi Condition: A Stable Petrov-galerkin Formulation of the Stokes Problem Accommodating Equal-order Interpolations[J]. Computer Methods in Applied Mechanics and Engineering, 1986, 59(1): 85-99. |
[12] | 刘涛涛, 王国玉, 段磊. 基于实验观测的分域湍流模型在通气超空化中的评价[J]. 北京理工大学学报, 2016, 36(3): 247-251. |
Liu Taotao, Wang Guoyu, Duan Lei. Assessment of a Modified Turbulence Model Based Experiment Results for Ventilated Supercavity[J]. Transactions of Beijing Institute of Technology, 2016, 36(3): 247-251. | |
[13] | 肖华林. 燃烧对湍流的影响机理及考虑燃烧效应的湍流模型的研究[D]. 杭州: 浙江大学, 2023. |
Xiao Hualin. Investigation on the Influence of Combustion on Turbulent Flow and the Corresponding Turbulent Model Considering Combustion Effects[D]. Hangzhou: Zhejiang University, 2023. | |
[14] | 王国玉, 白泽宇, 黄彪. 非均相流模型在气液两相流动计算中的应用及评价[J]. 北京理工大学学报, 2014, 34(7): 685-690. |
Wang Guoyu, Bai Zeyu, Huang Biao. Evaluation of Inhomogeneous Model for Computations of Gas-liquid Multiphase Flows[J]. Transactions of Beijing Institute of Technology, 2014, 34(7): 685-690. | |
[15] | 冼锦宇, 陈钱, 蔡树峰. 超声速气流中液体喷雾流动数值模拟研究[J]. 航空科学技术, 2023, 34(1): 12-20. |
Xian Jinyu, Chen Qian, Cai Shufeng. Numerical Simulation of Liquid Spray Flow in Supersonic Airflow[J]. Aeronautical Science & Technology, 2023, 34(1): 12-20. | |
[16] | 干雨新. 基于笛卡尔网格的复杂流动问题数值模拟[D]. 南京: 南京航空航天大学, 2019. |
Gan Yuxin. Research on Cartesian Grid Method for Simulating Complex Flows[D]. Nanjing: Nanjing University of Aeronautics and Astronautics, 2019. | |
[17] | 温雄飞, 赵瑜, 马新建, 等. 固体火箭发动机斜切喷管两相流场特性数值模拟研究[J]. 弹箭与制导学报, 2023, 43(2): 72-79. |
Wen Xiongfei, Zhao Yu, Ma Xinjian, et al. Simulation Research on Two-phase Flow Characteristics in Angle-cut Nozzle of Solid Rocket Motor[J]. Journal of Projectiles, Rockets, Missiles and Guidance, 2023, 43(2): 72-79. | |
[18] | Choi Sang-Do, Eum Tae-Soo, Eun Taek Shin, et al. Numerical Investigation of Flow Around a Structure Using Navier-slip Boundary Conditions[J]. World Journal of Engineering, 2022, 19(5): 667-674. |
[1] | Hu Hongyu, Gao Tianzhu, Gu Haitao. Design and Implementation of Maritime Unmanned Cross-Domain Collaborative Effectiveness Evaluation System Based on MLP [J]. Journal of System Simulation, 2024, 36(11): 2542-2551. |
[2] | Zhang Guohui, Gao Ang, Zhang Ya'nan. Combat Effectiveness Evaluation Method of Homogeneous Cluster Equipment System Based on RLoMAG+EAS [J]. Journal of System Simulation, 2024, 36(1): 160-169. |
[3] | Yu Xiaolan, Xiong Wei, Han Chi, Wu Zhenwei. Research on Operational Effectiveness Evaluation Method of Space-based Information Support Equipment System [J]. Journal of System Simulation, 2023, 35(11): 2429-2444. |
[4] | Gaofeng Zhang, Liang Wu. Effectiveness Evaluation of Surface Ship Air Defense and Antimissile Combat in Complex Electromagnetic Environment [J]. Journal of System Simulation, 2022, 34(3): 640-650. |
[5] | Ziwei Zhang, Qisheng Guo, Zhiming Dong, Ang Gao, Yifei Wang. Review of System of Systems Combat Effectiveness Evaluation and Optimization Methods [J]. Journal of System Simulation, 2022, 34(2): 303-313. |
[6] | Guochen Wang. Simulation and Effectiveness Evaluation System for Joint Delivery Mission Planning of Airlift Fleets [J]. Journal of System Simulation, 2022, 34(11): 2497-2506. |
[7] | Lei Yonglin, Zhu Zhi, Gan bin, Lei Sen, Chen Yong. Combat Effectiveness Simulation Evaluation Framework of Complex Weapon System [J]. Journal of System Simulation, 2020, 32(9): 1654-1663. |
[8] | Zhou Yuchen, Lin Shengling, Ma Ping, Li Wei, Yang Ming. Research Progress on Weapon and Equipment Effectiveness Evaluation [J]. Journal of System Simulation, 2020, 32(8): 1413-1424. |
[9] | Shao Songshi, Ruan Minzhi, Zhang Zhihua. Model of Initial Spare Parts Configuration and Ordering Policy Optimization Based on Inventory State [J]. Journal of System Simulation, 2020, 32(3): 509-517. |
[10] | Zhao Yueqiang, An Shi, Mai Qiang, Lin Yinyin. Research on Cost-Effectiveness Analysis and Modeling of Equipment [J]. Journal of System Simulation, 2019, 31(8): 1521-1540. |
[11] | Si Guangya, Wang Fei, Liu Yang. System Analysis Method Based on Simulation Big Data [J]. Journal of System Simulation, 2019, 31(3): 511-519. |
[12] | Chen Chunyi, Yang Huamin, Ren Bin, Jiang Zhengang. Modeling and Computer Simulation of Numerical Experiments on Laser Propagation through Atmospheric Turbulence [J]. Journal of System Simulation, 2018, 30(6): 2133-2143. |
[13] | Lu Yingbo, Qian Xiaochao, Chen Wei, He Shu, Lu Zhifeng. Research on Construction Method of Data-Driven Equipment Effectiveness Evaluation Model [J]. Journal of System Simulation, 2018, 30(12): 4587-4595. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||