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Heat Release Rate of Heavy Goods Vehicle Fire in Tunnels with Fixed Water Based Fire-Fighting System

机译:固定水基灭火系统的隧道重型货车火灾的热释放率

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A series of large-scale fire tests for road tunnel application was conducted in a test tunnel facility in Spain. The aim of this fire tests program was to investigate the magnitude of the heat release rate generated by a fire in heavy goods vehicles (HGV's) with and without a fire suppression system in tunnels in Singapore; the possibility of interchanging a fire suppression system with other measures such as lowering the longitudinal flow velocity; and to acquire information on the appropriate design parameters (e.g., nozzle type, discharge density and activation time) to adopt based on the most probable fuel load used in these road tunnels. In order to ensure repeatability, simulated HGV's consisting of 228 pallets with 48 plastic pallets (20%) and 180 wooden pallets (80%) were used in all fire tests. An air velocity of approximately 3 m/s was applied. As the scope of work covered in this fire test program is very large, only the setup of the fire test and the findings on the effects of heat release rate with (Test 4) and without (Test 7) a fixed water based fire-fighting system are covered. The test results indicate that a substantial reduction of fire heat release rate can be obtained using a low-pressure deluge fire suppression system, as long as timely activation of the water is provided. However, the influence of the suppression system on CO production is significant. Such experimental data address the current dearth of knowledge on the actual effect of low-pressure deluge systems on the heat release rate from HGVs in tunnel fires.
机译:在西班牙的一个测试隧道设施中,进行了一系列用于道路隧道的大型耐火测试。这项防火测试计划的目的是调查新加坡隧道中有无灭火系统的重型货车(HGV)着火时产生的放热率的大小;有可能将灭火系统与其他措施互换,例如降低纵向流速;并获取有关适当设计参数(例如喷嘴类型,排放密度和激活时间)的信息,以根据这些道路隧道中使用的最可能的燃料负荷来采用。为了确保可重复性,在所有防火测试中均使用了模拟HGV,该HGV由228个托盘,48个塑料托盘(20%)和180个木制托盘(80%)组成。施加大约3 m / s的空气速度。由于该防火测试程序涵盖的工作范围非常大,因此仅进行防火测试以及在(测试4)和不使用(测试7)进行固定水基灭火的情况下,对放热率影响的发现系统被覆盖。测试结果表明,只要提供及时的水活化功能,使用低压雨淋灭火系统就可以大大降低火的放热率。然而,抑制系统对CO产生的影响是显着的。此类实验数据解决了当前对低压洪水系统对隧道火灾中HGV放热率的实际影响的认识不足。

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