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Spray fire induced gas temperature characteristics and correlations in a ceiling ventilated compartment

机译:喷雾诱导气温特性和天花板通风舱中的相关性

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Spray fire, one of the common fires, often occurs in ship cabin and results in serious economic loss and casualties. However, there are few literatures [1-3] in terms of compartment spray fire, especially its gas temperature characteristics. Hence, a series of spray fire experiments were conducted in a 2m x 2m x 1.88 m ceiling ventilated compartment. It is found that the injecting pressure and ceiling vent size have significant effect on gas temperature. Gas temperature increases with the increase of injecting pressure and the increase in ceiling vent size results in a higher maximum gas temperature. The gas heat gain dominates the total heat transfer. The percentage of gas heat gain decreases with the ceiling vent size while the heat transfer through ceiling vent and compartment walls increases. For estimating the time-dependent average gas temperature in the combustion process, a simplified model was developed according to the thermal analyses, which shows good agreement with experimental data. Furthermore, based on M-Q-H method, a dimensionless analysis was performed for the total average gas temperature rise during the whole combustion process and the corresponding correlation was established, which can be applicable to estimate the gas temperature in ceiling ventilated compartment spray fire scenario.
机译:喷火是一种常见的火灾之一,经常发生在船舱内,并导致严重的经济损失和伤亡。然而,在隔室喷射火灾方面,尤其是其气体温度特性的文献[1-3]。因此,一系列喷雾消防实验以2m×2m×1.88米的天花板通风舱进行。发现注入压力和天花板通气尺寸对气体温度有显着影响。气温随着注射压力的增加而增加,天花板通风口尺寸的增加导致更高的最大气体温度。气体热量占据总热传递。气体热增益的百分比随着天花板通风口的百分比减小,而通过天花板通风口和隔室壁的热传递增加。为了估计燃烧过程中的时间依赖性平均气体温度,根据热分析开发了一种简化的模型,其与实验数据显示出良好的一致性。此外,基于M-Q-H方法,对整个燃烧过程中的总平均气体温度升高进行无量纲分析,建立了相应的相关性,这适用于估计天花板通风舱喷射火灾场景中的气体温度。

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