军队消防队员扑救大力士拖船火灾的干预分析

I. Voicu, D. Juganaru, M. Panaitescu, F. Panaitescu
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引用次数: 0

摘要

本文介绍了一种在船舶发生火灾时进行干预的场景,以及在物质和人力资源最少的情况下火灾限制/控制系统的操作。干预的效率恰恰取决于操作模式。操作效率模式包括对干预的物质和人力资源的技术特征、它们的性能、干预的成本以及操作时间的描述。HERCULES舰的一次火灾被选为案例研究。展示了大力神拖船的特点、容量、等级符号和设备,以及火灾发生时船上的消防设施。大火从发动机室开始,那里有大量的电气设备,燃烧着闷烧,大量烟雾、有毒气体和高温排放。
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ANALYSIS OF THE INTERVENTION OF THE MILITARY FIREFIGHTERS TO EXTINGUISH THE FIRE PRODUCED AT THE HERCULES TUGBOAT
The paper presents a scenario of intervention in case of fire on a ship and the operation of fire limitation / control systems, with minimal material and human resources. The efficiency of the intervention consists precisely in the mode of operation. The mode of operation efficiency involves the description of the technical characteristics of the material and human resources of the intervention, their performances, the costs of the intervention, as well as the operating times. A fire at the HERCULES ship was chosen as a case study. There are present the characteristics, capacity, class symbols and equipment of the Hercules tugboat, as well as the fire-fighting installations present on board at the time of the fire. The fire started from the engine room where they were large quantities of electrical equipment and it burned smoldering, with large emissions of smoke, toxic gases and high temperature.
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来源期刊
International Journal of Modern Manufacturing Technologies
International Journal of Modern Manufacturing Technologies Engineering-Industrial and Manufacturing Engineering
CiteScore
0.70
自引率
0.00%
发文量
15
期刊介绍: The main topics of the journal are: Micro & Nano Technologies; Rapid Prototyping Technologies; High Speed Manufacturing Processes; Ecological Technologies in Machine Manufacturing; Manufacturing and Automation; Flexible Manufacturing; New Manufacturing Processes; Design, Control and Exploitation; Assembly and Disassembly; Cold Forming Technologies; Optimization of Experimental Research and Manufacturing Processes; Maintenance, Reliability, Life Cycle Time and Cost; CAD/CAM/CAE/CAX Integrated Systems; Composite Materials Technologies; Non-conventional Technologies; Concurrent Engineering; Virtual Manufacturing; Innovation, Creativity and Industrial Development.
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