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Experimental and numerical simulation studies on heat transfer to calorimeters engulfed in diesel pool fires

机译:柴油池火中热量传递至量热计的实验和数值模拟研究

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摘要

Characterization of heat transfer to calorimeters engulfed in pool fires is extremely important. To estimate the heat flux to the calorimeters, experiments are performed with horizontal stainless steel 304L pipes engulfed in diesel pool fires. The concept of adiabatic surface temperature is applied to predict the incident heat flux to horizontally oriented calorimeters engulfed in diesel pool fires. Plate thermometers are used to measure the adiabatic surface temperature for diesel pool fires. The estimated subsurface temperatures inside the steel pipes using the adiabatic surface temperature concept and the measured temperatures are in good agreement. Adiabatic surface temperature is also computed from fire simulations. The incident heat fluxes to the steel pipes engulfed in fire predicted from the simulations are found to be in good agreement with the experiments. The fire numerical code is validated against the 1 m pool fire experimental results of centerline temperature distribution and irradiances away from fire. A correlation is provided for the estimation of adiabatic surface temperature for large diesel pool fires. These results would provide an effective way for thermal test simulations.
机译:热量传递到吞没在池火中的量热计中非常重要。为了估算通向量热仪的热通量,对吞没在柴油水池火中的水平304L不锈钢管进行了实验。绝热表面温度的概念被用来预测入射到柴油池火中的水平定向热量计的入射热通量。板式温度计用于测量柴油池火灾的绝热表面温度。使用绝热表面温度概念估算的钢管内部地下温度与测得的温度吻合良好。绝热表面温度也可以通过火灾模拟计算得出。通过模拟预测,吞没在火中的钢管的入射热通量与实验吻合良好。根据中心线温度分布和远离火源的辐照度对1 m池火实验结果验证了火数值。提供了用于估计大型柴油水池火灾的绝热表面温度的相关性。这些结果将为热测试仿真提供有效的方法。

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