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COMPACT ANALYTICAL MODELS FOR EFFECTIVE THERMAL CONDUCTIVITY OF ROUGH SPHEROID PACKED BEDS

机译:粗糙球形囊袋有效热导率的紧凑解析模型

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摘要

New compact analytical models for predicting the effective thermal conductivity of regularly packed beds of rough spheres immersed in a stagnant gas are developed. Existing models do not consider either the influence of the spheres roughness or the rarefaction of the interstitial gas on the conductivity of the beds. Contact mechanics and thermal analyses are performed for uniform size spheres packed in SC and FCC arrangements and the results are presented in the form of compact relationships. The present model accounts for the thermophysical properties of spheres and the gas, contact load, spheres diameter, spheres roughness and asperities slope, and temperature and pressure of the gas. The present model is compared with experimental data for SC and FCC packed beds and good agreement is observed. The experimental data cover a wide range of the contact load, surface roughness, interstitial gas type, and gas temperature and pressure.
机译:开发了新的紧凑型分析模型,用于预测浸没在停滞气体中的规则球床的规则导热系数。现有模型既不考虑球面粗糙度的影响,也不考虑间隙气体的稀疏性对床层电导率的影响。对填充在SC和FCC装置中的均一尺寸的球体进行了接触力学和热分析,结果以紧密关系的形式给出。本模型考虑了球体和气体的热物理性质,接触载荷,球体直径,球体粗糙度和粗糙斜率以及气体的温度和压力。将本模型与SC和FCC填充床的实验数据进行比较,观察到很好的一致性。实验数据涵盖了广泛的接触载荷,表面粗糙度,间隙气体类型以及气体温度和压力。

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