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CFD simulation of transient gas to particle heat transfer for fluidized and spouted regimes

机译:在流态化和喷射态下,瞬态气体到颗粒的传热的CFD模拟

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The transient gas to particle heat transfer for fluidized and spouted regimes was studied using a Eulerian Eulerian two-fluid model (TFM) in conjunction with the kinetic theory of granular flows (KTGF). The inlet gas temperature was transient which increased with time. Effect of modelling parameter of specularity coefficient on the simulation results was studied. It was found that specularity coefficient is a critical parameter which affects on the particles behaviour and the value of 0.025 leads to creation of incoherent spouting similar to the measurements. The temporal variation of particles concentration and temperature distribution in the spouted and fluidized regimes were compared with the corresponding experimental data for three distinct regions of spout, fountain and annulus. It was shown that the CFD model predicted the particles distribution properly for both regimes. In addition, the CFD predictions for particle temperature distribution for the spouted regime were in a better agreement with the measurements, when compared with that for the fluidized regime. (C) 2015 Elsevier Ltd. All rights reserved.
机译:结合颗粒流动力学理论(KTGF),使用欧拉二流体模型(TFM)研究了流态化和喷流状态下瞬态气体到颗粒的传热。进气温度是瞬时的,随时间增加。研究了镜面反射系数建模参数对仿真结果的影响。发现镜面反射系数是影响颗粒行为的关键参数,0.025的值会导致产生与测量类似的非相干喷口。将喷嘴和流化方案中颗粒浓度和温度分布的时间变化与喷嘴,喷泉和环形空间三个不同区域的相应实验数据进行了比较。结果表明,CFD模型可以正确预测两种方案的颗粒分布。此外,与流态化方案相比,CFD预测的喷流态颗粒温度分布与测量结果更好地吻合。 (C)2015 Elsevier Ltd.保留所有权利。

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