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首页> 外文期刊>International Journal of Multiphase Flow >Non-intrusive temperature measurement of particles in a fluidised bed heated by well-characterised radiation
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Non-intrusive temperature measurement of particles in a fluidised bed heated by well-characterised radiation

机译:通过良好的辐射加热流化床中的颗粒的非侵入式温度测量

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We report an important step towards the in-situ measurement of heat transfer in particle-laden flows via direct measurement of the temperatures of fluidised particles. Laser-induced phosphorescence (LIP) was employed to provide non-intrusive, temporally resolved and in-situ measurement of suspended particles as a function of heat flux and radiation attenuation. Excitation was performed at 355 nm with a repetition rate of 1.67 Hz. Particles were transported with dry air within an optically-accessible fluidised bed and heated with a well-defined source of high-flux radiation from a 3 kW solid-state solar thermal simulator radiation to achieve heating rates in order 23,000 degrees/s. Particle and gas temperatures were measured simultaneously with the former determined from thermo-phosphorescent emissions following excitation at 355 nm. Irradiation flux and mass loading were found to play important roles in particle and gas temperature rise. Confidence in the method was obtained by verifying internal consistency between the energy absorbed by the particles and the temperature rise of the gas phase, taking into account the variability of particle mass loading. Crown Copyright (C) 2017 Published by Elsevier Ltd. All rights reserved.
机译:我们通过直接测量流体化颗粒的温度来报告朝向粒子上的热传递的原位测量的重要一步。使用激光诱导的磷光(唇)以提供非侵入式,暂时地分辨和原位测量悬浮颗粒作为热通量和辐射衰减的函数。在355nm处进行激发,重复率为1.67 Hz。用光纤可流化床内的干燥空气运输颗粒,并从3 kW固态太阳能热模拟器辐射使用3 kW固态太阳能热模拟器辐射的明确定义的高通量辐射源加热,以实现23,000度/ s的加热速率。与前者同时测量颗粒和气体温度,从355nm激发后从热磷光排放中测定。发现辐照通量和质量载荷在颗粒和气体温度升高中起重要作用。考虑到颗粒质量加载的可变性,通过验证由颗粒吸收的能量与气相的温度升高来获得该方法的置信度。 Crown版权所有(c)2017由elestvier有限公司出版。保留所有权利。

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