Experimental verification of a thermal radiation model for humanskin heat exposure

Lt T. Wong, P. Hui
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引用次数: 1

Abstract

Skin pain and burns at an elevated skin layer temperature due to incident heat flux could be used to evaluate thermal hazards for some enclosed fire environments and mathematical expressions were proposed in literature for fire safety evaluations. In this work, a mathematical model for determining the skin layer temperature due to incident radiant heat flux is examined with experimental verification. Heat balance on the skin layer due to the heat flux and conductive heat transfer through it is considered. Specifically, the skin layer temperature at the head portion of an artificial thermal manikin was measured at certain incident radiant heat flux and compared with that calculated from the mathematical model. The results showed that the predictions were slightly higher than the measured values and the mathematical model would be useful in hazard assessment for some fire environments involving exposure of humans to a thermal radiation. Practical application: This paper presents the temperature measurement at a depth of 0.1 mm under the skin of an artificial thermal manikin’s head portion exposed to a vertical heated surface of 699 K in two orientations: facing and sideways to the surface. The result could be a useful source of information for the verification of any classical radiation model application to fire safety designs regarding heat exposure of the head portion of a person to heated surfaces.
人体皮肤热暴露的热辐射模型的实验验证
由于入射热流引起的皮肤层温度升高时的皮肤疼痛和烧伤可用于评估某些封闭火灾环境的热危害,并在文献中提出了用于火灾安全评估的数学表达式。本文建立了一个由入射辐射热通量决定皮肤层温度的数学模型,并进行了实验验证。考虑了由于热流和通过它的导热而引起的皮肤层上的热平衡。具体而言,在一定的入射辐射热通量下,测量了人造热人体头部的皮肤层温度,并与数学模型计算的温度进行了比较。结果表明,预测值略高于实测值,该数学模型可用于某些涉及人类暴露于热辐射的火灾环境的危害评估。实际应用:本文介绍了人造热人体头部部分暴露在699 K的垂直受热表面下0.1 mm深度的温度测量,两个方向:面向表面和侧向表面。该结果可作为验证任何经典辐射模型应用于火灾安全设计的有用信息来源,该设计涉及人的头部部分对受热表面的热暴露。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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