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首页> 外文期刊>International Journal of Heat and Mass Transfer >Population balance model of heat transfer in gas-solid particulate systems
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Population balance model of heat transfer in gas-solid particulate systems

机译:气固颗粒系统传热的种群平衡模型

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摘要

A population balance model is derived for heat transfer processes in gas-solid systems with intensive motion of particles in order to describe the temperature distribution of particulate phase. The model involves collisional particle-particle and particle-wall heat transfers, and continuous gas-particle, gas-wall and wall-liquid environment heat transfer processes. Collisional heat transfers are characterised by collision frequencies and random heat exchange parameters with general probability distributions with support [0,1], describing the heat transfer efficiency between the colliding solid bodies. An infinite hierarchy of moment equations, describing the time evolution of moments of the temperature of particle population is derived from the population balance equation, which can be closed at any order of moments. The properties of the model and the effects of parameters are examined by numerical experiments using the second order moment equation model of a spatially homogeneous fluidized bed.
机译:为了描述颗粒相的温度分布,推导了用于气固系统中具有强烈运动的颗粒的传热过程的种群平衡模型。该模型涉及碰撞颗粒-颗粒和颗粒-壁的热传递,以及连续的气体-颗粒,气体-壁和壁-液体环境的热传递过程。碰撞传热的特征是碰撞频率和具有随机概率分布的随机热交换参数,其总体概率分布为[0,1],描述了碰撞固体之间的传热效率。从总体平衡方程派生出描述粒子总体温度的矩随时间变化的矩方程的无限层次,该方程可以在任何阶数的时刻闭合。通过使用空间均质流化床的二阶矩方程模型的数值实验,检验了模型的特性和参数的影响。

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