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Conductive heat transfer in a gas confined between two concentric spheres : from free-molecular to continuum flow regime

机译:限制在两个同心球之间的气体中的传导热传递:从自由分子流到连续体流态

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摘要

The conductive heat transfer through a gas confined between two concentric spherical shells maintained at different temperatures is investigated from the free-molecular to the continuum flow regime. The heat flux, measured using a recently proposed experimental system to extract the thermal accommodation coefficient, is compared with analytical expressions and numerical results. From this comparison it is found that in the free-molecular flow limit, the experimental data are well explained by the analytical expression for the arbitrary radius and temperature ratios of the spherical surfaces. In the continuum limit, the temperature dependence of the thermal conductivity coefficient should be considered in the analytical expression. In the transitional flow regime, a revised function for the heat flux interpolation is proposed to give better fitting to the numerical results. By employing these knowledge, the thermal accommodation coefficient extraction procedure for the system is revised, and it is shown that the re-calculated accommodation coefficient allows to reproduce well the measured heat flux.
机译:从自由分子到连续流研究了通过限制在两个保持不同温度的同心球形壳之间的气体的热传导。使用最近提出的实验系统测量的热通量来提取热调节系数,并将其与解析表达式和数值结果进行比较。从该比较中发现,在自由分子流动极限中,通过球形表面的任意半径和温度比的解析表达式很好地解释了实验数据。在连续极限中,应在解析表达式中考虑导热系数的温度依赖性。在过渡流态下,提出了修正的热通量插值函数,以更好地拟合数值结果。通过利用这些知识,对系统的热调节系数提取程序进行了修改,结果表明,重新计算的调节系数可以很好地再现所测得的热通量。

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