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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Radial Gas Mixing in a Fluidized Bed with a Multi-Horizontal Nozzle Distributor using Response Surface Methodology
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Radial Gas Mixing in a Fluidized Bed with a Multi-Horizontal Nozzle Distributor using Response Surface Methodology

机译:使用响应面方法在多水平喷嘴分配器流化床中混合径向气体

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The gas mixing in the radial direction within a fluidized bed equipped with a multi-horizontal nozzle distributor was studied using response surface methodology (RSM),which enables the examination of parameters with a moderate number of experiments.All experiments were carried out in a circular fluidized bed of 0.29 m I.D.cold model fluidized bed.The distributor is placed beside twenty-two horizontal nozzles that are arranged in three concentric circles with all existing discharge directed clockwise.The tracer gas (CO2) was discharged into the bed as a tracer gas and the analysis was performed with a gas chromatograph.In order to compare the different internal circulations,the tracer gas was discharged in the center area or annular area of the bed.In RSM,the static bed height,superficial velocity and the open area ratio of the distributor are chosen as the research variables,and the standard deviation of the time averaged radial tracer concentration is used as the objection function.A mathematical model for the gas mixing as a function of the operating parameters was empirically proposed.The results show that the standard deviation of time averaged radial tracer concentration is well correlated with the operating and geometry parameters,(U - U_(mf))/U_(mf),H_s/D and psi_d,and that the tracer gas injected to the center position has a better dispersion than when injected to the annular position.This model can be used for optimizing the design of fluidized bed reactors at a required performance level.
机译:使用响应表面方法(RSM)对配备多水平喷嘴分配器的流化床中径向气体混合进行了研究,这使得能够通过适度的实验来检查参数。所有实验均以循环方式进行IDcold模型流化床的流化床为0.29 m IDCold。流化床位于22个水平喷嘴旁边,分布在三个同心圆中,所有现有排放均顺时针定向。示踪气体(CO2)作为示踪气体排放到床中为了比较不同的内部循环,示踪气体在床的中心区域或环形区域排出。在RSM中,床的静态床高度,表观速度和开口率选择分配器的σ作为研究变量,并将时间平均径向示踪剂浓度的标准偏差用作反对函数。实验证明了气体混合作为操作参数的函数的数学模型。结果表明,时间平均径向示踪剂浓度的标准偏差与操作参数和几何参数(U-U_(mf))/ U_ (mf),H_s / D和psi_d,并且注入到中心位置的示踪气体比注入到环形位置的示踪气体具有更好的分散性。该模型可用于在所需性能水平下优化流化床反应器的设计。

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