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首页> 外文期刊>Journal of Fire Sciences >Fractal Analysis of Effective Thermal Conductivity for Woven Fabrics used in Fire Fighters' Protective Clothing
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Fractal Analysis of Effective Thermal Conductivity for Woven Fabrics used in Fire Fighters' Protective Clothing

机译:消防员防护服机织织物有效导热系数的分形分析

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摘要

Radiation heat transfer within the fabric used in fire protective clothing is one of the critical factors affecting thermal protective performance under simulated fire. In the present article, a fractal analysis of effective thermal conductivity for flame-resistant fabric is presented based on the thermal-electrical analogy and statistical self-similarity of yarns within fabric. The thermal radiation influence is considered in the fractal model. Structural models of yarn and plain woven fabric are derived based on the fractal characteristics of macropores (gaps or channels) between the yarns and micropores inside the yarns. The fractal effective thermal conductivity model can be expressed as a function of the pore structure (fractal dimension) and architectural parameters of the woven fabric. It was found that the calculated results corresponded well with the experimental data within an average of. 4.9% at mean tested temperature of 200°C. This confirms the good behavior of the model and the validity of results. Thermal conductivity values increased for fabric under high temperature as mean test temperatures are increased due to the nonlinear nature of radiation heat transfer.
机译:防火服装所用织物内的辐射热传递是影响模拟火灾下热防护性能的关键因素之一。在本文中,基于织物内纱线的热电类比和统计自相似性,对阻燃织物的有效导热系数进行了分形分析。分形模型考虑了热辐射的影响。根据纱线之间的大孔(间隙或通道)和纱线内部的微孔的分形特征,得出纱线和平纹织物的结构模型。分形有效导热系数模型可以表示为机织织物的孔结构(分形维数)和建筑参数的函数。发现计算结果与平均值之间的实验数据非常吻合。在200°C的平均测试温度下为4.9%。这证实了模型的良好行为和结果的有效性。由于辐射传热的非线性特性,随着平均测试温度的升高,织物在高温下的热导率值也随之增加。

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