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Numerical simulation of heat transfer in firefighters' protective clothing with multiple air gaps during flash fire exposure

机译:闪火时具有多个气隙的消防员防护服传热的数值模拟

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摘要

A finite volume model was developed to simulate transient heat transfer in firefighters' protective clothing during flash fire exposure. The model domain consists of three layers of fire-resistant fabrics (outer shell, moisture barrier, and thermal liner) with two air gaps between the clothing layers, the human skin, and the air gap between the clothing and the skin. The model accounts for the combined conduction-radiation heat transfer in the air gaps entrapped between the clothing layers, and between the clothing and the skin. The variation in the air gap properties and energy content during both the exposure and the cool down periods was accounted for. Predictions were obtained for the temperature and heat flux distributions in the fabric layers, skin, and air gaps as a function of time. The influence of each air gap on the clothing performance was investigated as well. This article demonstrates the importance of accurately modeling the contributions of the air gaps in order to predict the protective clothing performance.
机译:建立了一个有限体积模型,以模拟在暴露于火中时消防员防护服的瞬态热传递。模型域由三层耐火织物(外壳,防潮层和隔热衬里)组成,在衣物层,人体皮肤和衣物与皮肤之间的空气间隙之间具有两个气隙。该模型考虑了在衣服层之间以及衣服与皮肤之间存在的气隙中的传导-辐射热交换。解决了暴露和冷却期间气隙特性和能量含量的变化。预测了织物层,皮肤和气隙中的温度和热通量分布随时间的变化。还研究了每个气隙对服装性能的影响。本文证明了准确建模气隙的影响以预测防护服性能的重要性。

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