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首页> 外文期刊>Chemical engineering journal >Experiments support simulations by the NEPTUNE_CFD code in an Upflow Bubbling Fluidized Bed reactor
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Experiments support simulations by the NEPTUNE_CFD code in an Upflow Bubbling Fluidized Bed reactor

机译:实验支持仿真在上流鼓泡流化床反应器中的Neptune_CFD代码

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摘要

Long tubes with small internal diameter find increasing applications in indirect concentrated solar receivers using an Upflow Bubbling Fluidized Bed of Geldart-A powders as heat carrier. Although successfully demonstrated for tubes of 0.5 to 1 m length, longer tubes are required to increase the solar energy capture efficiency and capacity. The fluidization phenomena differ with the tube length, and freely bubbling fluidization will be transformed into slugging, thus hampering the heat transfer. The behavior of Geldart-A powders in tall tubes of small I.D. has not been extensively studied. The research experimentally investigated the different fluidization modes in a 4 m long tube, and demonstrated the occurrence of freely bubbling at the bottom section of the bed, and slugging from a bed depth in excess of about 1.25 m. Slug characteristics (frequency, length, velocity) were measured and correlated. The results were used to validate 3D numerical simulations based on an Euler-Euler approach in the NEPTUNE_CFD code applied to a fine mesh of 15,000,000 cells. A positive match between experimental and simulation results concerning frequency and velocity of large bubble structures was obtained. The effect of mesh refinement on the slugging behavior prediction was discussed.
机译:具有小的内径小管的长管发现间接集中的太阳能接收器中的应用程序使用溢出的Geldart-A粉末作为热载体的溢流流化床。尽管成功地展示了0.5至1米长的管,但需要更长的管以增加太阳能捕获效率和容量。流化现象与管长度不同,并且可以将流化流化将转化为折叠,从而阻碍了传热。 Geldart-A粉末在小管中的粉末的行为。尚未广泛研究过。该研究通过实验研究了4米长管中的不同流化模式,并证明了在床的底部自由鼓起的发生,并且从床深度超过约1.25μm的沉积物。测量并相关的SLUC特性(频率,长度,速度)。结果用于基于在20,000个单元格的细网格中的Euler-euler方法基于欧拉 - 欧拉方法进行验证3D数值模拟。获得了关于大气泡结构的频率和速度的实验和模拟结果之间的正匹配。讨论了网眼细化对拦截行为预测的影响。

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