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A novel representation of the critical ventilation velocity for mitigating tunnel fires

机译:缓解隧道灭火的关键通风速度的新颖表示

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Critical ventilation velocity dominated research within the field of tunnel fire safety because it is integral for designing a tunnel ventilation system. This work proposes a novel analytical model for the critical ventilation velocity. The theoretical analysis infers that the heat release rate and tunnel height controls the critical ventilation velocity. Earlier studies support this conclusion. We perform several highly accurate simulations of smallscale tunnel fires to quantify the influence of heat release rates and tunnel height. We define two nondimensional quantities and identify a correlation through data analysis. The new model illustrates the transition where the critical ventilation velocity increases rapidly with the heat release rates however at higher heat release rates the critical ventilation velocity becomes constant. To verify and validate the model, we compare the novel formulae against the existing relationships and available experimental data. There exist numerous analytical models but several of these models are discontinuous while others do not capture the transition where the critical velocity becomes independent of the heat release rate. The novel relationship, presented in this work, eliminates these drawbacks.
机译:隧道防火领域的关键通风速度主导研究,因为它是设计隧道通风系统的一体化。这项工作提出了一种用于关键通风速度的新型分析模型。理论分析揭示热释放速率和隧道高度控制临界通风速度。早期的研究支持这一结论。我们执行几种高精度模拟的小型隧道火灾,以量化热释放速率和隧道高度的影响。我们定义了两个非潜能量,并通过数据分析识别相关性。新模型说明了临界通风速度随着热释放速率迅速增加的过渡,但是在较高的热释放速率下,临界通风速度变得恒定。为了验证和验证模型,我们将新颖的公式与现有关系和可用的实验数据进行比较。存在许多分析模型,但其中几种模型是不连续的,而其他模型则不会捕获临界速度与热释放率无关的过渡。在这项工作中提供的新颖关系消除了这些缺点。

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