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The Effect of Thermal Radiation on the Dynamics of Flashover in a Compartment Fire

机译:热辐射对舱室火灾中闪络动力学的影响

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Flashover is a phenomenon describing a room fire changed from the growth stage to the development stage. There is a rapid increase in size and intensity. The radiant heat flux back to the fuel surface and the floor of the room is known to be one of the key parameters leading to flashover. Indeed, a heat flux (largely due to radiation) of 20 kW/m{sup}2 to the room floor is often taken to be the condition of flashover. To understand the importance of radiation, a zone model is developed to simulate the transient fire growth in a compartment. Heat and mass transfer correlations available in the literature are used to simulate the non-radiative effect. A three-dimensional non-gray soot radiation model is used to simulate the radiative exchange between the fuel surface, the hot gas/particulate layer and the surrounding wall. Results show that the hot layer temperature alone may not be an effective indicator for flashover. Other parameters such as particulate volume fraction in the hot layer, venting area and heat transfer to the surrounding wall are also important in determining the occurrence of flashover.
机译:闪络现象是描述房间火灾从生长阶段到发展阶段变化的现象。尺寸和强度迅速增加。返回到燃料表面和房间地板的辐射热通量是导致闪络的关键参数之一。实际上,到房间地板的20 kW / m {sup} 2的热通量(主要是由于辐射)通常被认为是闪络的条件。为了了解辐射的重要性,开发了一个区域模型来模拟车厢内瞬时火势的增长。文献中可用的传热和传质相关性用于模拟非辐射效应。使用三维非灰色烟灰辐射模型来模拟燃料表面,热气体/微粒层和围墙之间的辐射交换。结果表明,仅热层温度可能不是闪络的有效指标。其他参数(例如,热层中的颗粒体积分数,通风面积和向周围壁的热传递)对于确定是否发生闪络也很重要。

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