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SIMULTANEOUS MEASUREMENT OF THE THERMAL CONDUCTIVITY AND THERMAL DIFFUSIVITY OF SINGLE AND TWO-PHASE MATERIALS USING THE TRANSIENT HOT WIRE METHOD.

机译:瞬态热线法同时测量单相和两相材料的热导率和热扩散率。

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摘要

The thermal conductivity and thermal diffusivity of single and two-phase materials were measured as a function of temperature and pressure using the transient hot wire method. The mathematical basis for the use of this method for measurements on single-phase samples is well documented. Thermal property measurements on two-phase samples (powders) are more complex to analyze than those of single-phase samples. Heat transfer mechanisms in powders include conduction through the solid phase, conduction through the gas phase, along with heat transfer between the phases at any point in the material. Because of this complex means of heat transfer, thermal properties of powders are not true properties but are effective properties which account for all these heat transfer mechanisms. A mathematical model based on volume averaging was developed to predict measured values of the effective thermal properties of powdered materials. Modeling of the thermal properties of powders included samples of glass beads, powdered oil shales, and powdered coals. The model accurately predicted thermal properties of these samples which varied as a function of pressure over several orders of magnitude. This work provides an understanding of thermal property measurements of powders and of heat transfer mechanisms in general.
机译:使用瞬态热线法测量了单相和两相材料的导热率和热扩散率与温度和压力的关系。使用这种方法对单相样品进行测量的数学基础已得到充分证明。与单相样品相比,分析两相样品(粉末)的热性能更复杂。粉末中的传热机制包括通过固相的传导,通过气相的传导以及在材料中任何一点的相之间的传热。由于这种复杂的传热方式,粉末的热性能不是真正的性能,而是有效的性能,这些原因占了所有这些热传递机理的总和。建立了基于体积平均的数学模型,以预测粉末材料有效热性能的测量值。粉末的热性能模型包括玻璃珠,粉状油页岩和粉状煤的样品。该模型准确预测了这些样品的热性能,这些热性能随压力的变化而变化了几个数量级。这项工作可以大致了解粉末的热性能测量和传热机理。

著录项

  • 作者

    GLATZMAIER, GREGORY CONRAD.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 211 p.
  • 总页数 211
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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