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Experimental study and analysis of radiation heat fluxes received by a floor beneath an inclined ceiling

机译:倾斜天花板下地板接收的辐射热通量的实验研究与分析

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This study experimentally investigates the radiation heat flux distribution received on the floor due to fire plume impinging upon an inclined ceiling, which has not been quantified previously. The radiation heat fluxes were measured on the floor for 160 experimental conditions, involving various fire source heat release rates, source-ceiling heights, angles of ceiling inclination and dimensions (aspect ratios) of the rectangular sources. The main findings include that the declining rate of the radiation heat flux along with distance received by the downstream floor decreases, while that received by the upstream floor increases, with the increasing of ceiling inclination angle. The radiation heat flux received by the floor is higher as the ceiling inclination angle is smaller for the downstream side, while it is lower as the ceiling inclination angle is smaller for the upstream side. Both of these variations can be explained by change of the flow distribution as well as flame length due to combustion and heat released in the two directions beneath the inclined ceiling. Further, a model with various fire source heat release rates, source-ceiling height, and ceiling inclination angles is proposed, to globally describe the radiation heat flux received by both the upstream and downstream floors.
机译:本研究通过撞击倾斜的天花板,实验研究了由于倾斜的天花板上的火羽毛而在地板上接收的辐射热通量分布。在地板上测量辐射热通量160个实验条件,涉及各种消防源热释放速率,源极限高度,矩形倾角的角度,矩形倾角和尺寸(纵横比)。主要发现包括辐射热通量的下降率以及下游地板接收的距离降低,而上游地板接收的增加随着天花板倾斜角度的增加。随着下游侧的吊顶倾斜角度较小的辐射热通量较高,而在上游侧的顶板倾斜角度较小,虽然下游倾角较低。由于在倾斜天花板下方的两个方向上释放的燃烧和热量,这些变型可以通过流量分布的变化以及火焰长度来解释。此外,提出了一种具有各种消火源热释放速率,源极高度和吊顶倾斜角的模型,以全局描述由上游和下游地板接收的辐射热通量。

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