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Heat transfer through fibrous assemblies incorporating reflective interlayers

机译:通过包含反射夹层的纤维组件进行热传递

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摘要

Fibrous insulation has many applications including functional protective clothing, sleeping bags, buildings and construction, and aircrafts, particularly under extreme climatic conditions. It has been realized that reflective interlayers can be incorporated into the fibrous materials to block radiative heat transfer. However, since reflective interlayers generally have greater thermal conductivity than the bulk fibrous materials, the optimization of the construction of the fibrous insulation is important in maximizing the overall thermal insulation. In order to analyze this complex optimization problem, a two-flux radiative heat transfer model was built for the heat transfer through fibrous assemblies incorporating reflective interlayers. By using finite control volume method, the solution was obtained. After validation it was applied to predict the optimum constructional parameters of such an assembly for maximizing thermal insulation. It was found that (1) although extinction coefficient of Al-coated interlayer fibers decrease unidirectionally as the fiber diameter increases, the total heat flux first decreases and then increases with minimum heat flux at the fiber diameter of about 2 μm; Consequently, the thermal resistance reaches a maximum value when the fiber diameter d is about 2 μm; (2) the optimum construction is determined by the balance of the weakening of conductive thermal resistance and enhancement of the radiative thermal resistance as a result of incorporating thin reflective interlayers. For relatively thick reflective interlayer, the assembly with lower interlayer fiber volume fraction has a higher thermal resistance. On the other hand, for very thin reflective interlayers, relatively high fiber volume fraction is beneficial to the overall thermal insulation.
机译:纤维绝缘具有许多应用,包括功能性防护服,睡袋,建筑物和建筑以及飞机,特别是在极端气候条件下。已经认识到可以将反射性中间层结合到纤维材料中以阻止辐射热传递。但是,由于反射中间层通常比块状纤维材料具有更高的热导率,因此纤维绝热层结构的优化对于最大化整体绝热层很重要。为了分析这个复杂的优化问题,建立了一个两通辐射传热模型,用于通过包含反射夹层的纤维组件进行传热。通过使用有限控制体积法,获得了解决方案。验证后,将其应用于预测此类组件的最佳结构参数,以实现最大程度的隔热效果。发现(1)尽管随着纤维直径的增加,镀铝的夹层纤维的消光系数单向降低,但是总热通量在纤维直径为约2μm时首先降低,然后以最小热通量增加;因此,当纤维直径d为约2μm时,热阻达到最大值。 (2)最佳结构是通过结合薄的反射夹层而降低导电热阻和提高辐射热阻的平衡所决定的。对于相对较厚的反射夹层,夹层纤维体积分数较低的组件具有较高的热阻。另一方面,对于非常薄的反射中间层,相对较高的纤维体积分数有利于整体隔热。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2012年第26期|p.8032-8037|共6页
  • 作者

    Xianfu Wan; Jintu Fan;

  • 作者单位

    Key Laboratory of Textile Science & Technology, Ministry of Education, Donghua University, Shanghai 201620, PR China,Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong;

    Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong,Department of Fiber Science and Apparel Design, Cornell University, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fibrous material; reflective; interlayer; thermal insulation; radiative heat transfer;

    机译:纤维材料反光夹层保温辐射传热;

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