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New approaches to determine the interface height of fire smoke based on a three-layer zone model and its verification in large confined space

机译:基于三层区域模型确定火烟界面高度的新方法及其在大密闭空间中的验证

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摘要

Large confined space has high incidence of fires, which seriously threatens the safety of people working there. Understanding the distribution of smoke in such large space is critical to fire development prediction and smoke control. Three improved methods for the stratification interface prediction of fire smoke are developed, including of improved intra-variance, integral ratio and N-percentage methods. In these methods, the interface height is determined by the vertical temperature distribution based on a three-layer smoke zone model, which is an improvement of a two-layer zone model. Thereafter, the three improved methods are applied to several typical fire cases simulated CFD to predict the smoke interface, and their applicability and reliability are verified by comparison of the smoke stratification results with the filed simulation results. Results show that the three improved methods can effectively determine the location of the three-layer zone model's interface, and they have the ability to predict smoke interface for fires with different fire source types and ventilation conditions.
机译:较大的密闭空间着火率很高,严重威胁在那里工作的人的安全。了解烟雾在如此大的空间中的分布对于预测火灾发展和控制烟雾至关重要。提出了三种改进的火灾烟气分层界面预测方法,包括改进的内部方差法,积分比法和N百分比法。在这些方法中,界面高度由基于三层烟雾区域模型的垂直温度分布确定,这是对两层区域模型的改进。此后,将这三种改进方法应用于几种典型的火灾案例模拟CFD以预测烟雾界面,并通过将烟雾分层结果与提交的模拟结果进行比较,验证了它们的适用性和可靠性。结果表明,三种改进的方法可以有效地确定三层区域模型界面的位置,并且具有预测具有不同火源类型和通风条件的火灾的烟气界面的能力。

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