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Thermal Diffusivity and Speed of Sound of Saturated Pentane from Light Scattering

机译:光散射的饱和戊烷的热扩散率和声速

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摘要

Transport and thermodynamic properties of pentane are necessary for the design and verification of reactors in pentane isomerization and degradation processes. However, there are few experimental data of these properties, especially in the high-temperature region. In this work, the thermal diffusivity and the sound speed of pentane have measured by dynamic light scattering and Brillouin light scattering, respectively. Pentane has been investigated under saturated conditions over a wide temperature range, from about 300 K up to the liquid-vapor critical point. It is estimated that: the standard uncertainty of temperature is K for the hydrodynamic region and K for the critical region; the relative expanded uncertainty in the thermal diffusivity is and the relative expanded uncertainty in the speed of sound is with a coverage factor of . The thermal diffusivity and the sound-speed experimental data are also represented as functions of temperature. Finally, the results are discussed in detail in comparison with literature results and various prediction methods.
机译:戊烷的传输和热力学性质对于戊烷异构化和降解过程中反应器的设计和验证是必需的。但是,几乎没有这些性质的实验数据,尤其是在高温区域。在这项工作中,通过动态光散射和布里渊光散射分别测量了戊烷的热扩散率和声速。戊烷已在大约300 K到最高液体蒸汽临界点的宽温度范围内的饱和条件下进行了研究。据估计:水动力区域的温度标准不确定度为K,临界区域的温度标准不确定度为K。热扩散率的相对扩展不确定度为,声速的相对扩展不确定度为覆盖因子。热扩散率和声速实验数据也表示为温度的函数。最后,与文献结果和各种预测方法进行比较,详细讨论了结果。

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