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Experimental and theoretical study on heat-insulating properties of fibrous assemblies in natural state using a new apparatus

机译:用新型装置对自然状态下纤维组件隔热性能的实验和理论研究

摘要

Five types of fibrous assemblies, namely, polyester, wool, cashmere, kapok, and goose down, were tested for their heat-insulating properties in the natural state using the apparatus developed by the authors. The influences of bulk density, fiber type, fiber arrangements, and compression on the heat-insulating properties of the fibrous assemblies was examined systematically. The results show that kapok assembly with low bulk density, goose down assembly with high bulk density and the randomly arranged fibrous assembly demonstrated the best heat-insulating property; however, considering practical use and the influence of compression, kapok assembly and fibrous assemblies arranged in the form of fiber balls exhibited the most stable and optimum heat-insulating property. The Daryabeigi heat-transfer model that considers fiber contact and scattering effect was used to calculate the heat-insulating properties of the five fibrous assemblies. A similar model was developed by Fanworth, which neglected the fiber and the scattering effect. Comparison of the two models showed that the Daryabeigi model was more accurate in predicting the heat-insulating properties of fibrous assemblies.
机译:使用作者开发的设备测试了五种类型的纤维组件,即聚酯,羊毛,羊绒,木棉和鹅绒,在自然状态下的隔热性能。系统地研究了堆积密度,纤维类型,纤维排列和压缩对纤维组件的隔热性能的影响。结果表明,堆密度低的木棉组件,堆密度高的鹅绒组件和随机排列的纤维组件表现出最佳的隔热性能。然而,考虑到实际使用和压缩的影响,以纤维球的形式排列的木棉组件和纤维组件表现出最稳定和最佳的绝热性能。考虑纤维接触和散射效应的Daryabeigi传热模型用于计算五个纤维组件的绝热性能。 Fanworth开发了一个类似的模型,它忽略了纤维和散射效应。两种模型的比较表明,Daryabeigi模型在预测纤维组件的隔热性能方面更为准确。

著录项

  • 作者

    Song W; Chan APC; Yu W;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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