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Results From Three Models Compared To Full-scale Tunnel Fires Tests

机译:三种模型的结果与全面隧道火灾测试的比较

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摘要

Information from full-scale fire tests are gathered and systemised. The knowledge from these tests is used as input to three different models, ranging from a simple spreadsheet model to advanced computational fluid dynamics (CFD) modelling, for calculating the temperature in the smoke layer. The deviation between the fire tests and the computed results is described and an evaluation of how this may influence the use of the models is discussed from the point of view of risk analysis. For experiments with small fires, i.e., one to five cars, one bus or one truck without cargo, the calculated temperature time curves from all models comply well with the measurements from the full-scale fire tests. For the larger fires, more deviation was found. The computational results were, however, on the same "order of severity" as the test fires, and thereby useful for hazard calculations. In contradiction to the general belief, the simplest models gave, in the same way as the CFD codes, results close to the values of severity recorded in the test fires with respect to HRR and smoke layer temperatures. The simple models may therefore be a good tool in risk analysis for not too complex tunnel structures.
机译:全面的火灾测试信息将被收集并系统化。这些测试的知识被用作三个不同模型的输入,从简单的电子表格模型到高级计算流体动力学(CFD)建模,以计算烟雾层中的温度。描述了耐火测试和计算结果之间的偏差,并从风险分析的角度讨论了这种偏差如何影响模型的使用。对于小火的实验,即一到五辆汽车,一辆公共汽车或一辆没有货物的卡车,计算得出的所有模型的温度时间曲线与全面火灾测试的测量结果非常吻合。对于大火,发现更多偏差。但是,计算结果与测试火灾的“严重性等级”相同,因此对于危险性计算很有用。与普遍的看法相反,最简单的模型以与CFD代码相同的方式给出了与HRR和烟雾层温度有关的测试火灾记录的严重性值接近的结果。因此,对于不太复杂的隧道结构,简单的模型可能是风险分析的好工具。

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