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首页> 外文期刊>Chemical Engineering Science >Cluster characteristics of Geldart Group B particles in a pilot-scale CFB riser. I. Monodisperse systems
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Cluster characteristics of Geldart Group B particles in a pilot-scale CFB riser. I. Monodisperse systems

机译:中试规模CFB立管中Geldart B组颗粒的团簇特征。一,单分散体系

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Experiments in a circulating fluidized bed (CFB) riser with Geldart Group B particles have been carried out with an emphasis on cluster characterization. In this paper, the focus is on monodisperse materials; results for polydisperse materials are contained in the companion paper (Chew et al., this issue). A fiber optic probe was used for detection of solids, with the resulting solids cluster identification accomplished using wavelet decomposition. Three cluster characteristics were evaluated - appearance probability, duration, and frequency - as a function of riser position, operating condition, and type of solids (i.e., variations in particle size and/or material density). Results indicate that the riser position has the most dominant influence on cluster characteristics with the cluster appearance probability appearing to be largely a function of riser position only, and insensitive to changes in operating condition or material type. The cluster duration and frequency are influenced by the particle material and operating condition, though only from mid-height of the riser upwards. The results presented provide a comprehensive picture of factors affecting cluster trends.
机译:已经在带有Geldart B组颗粒的循环流化床(CFB)提升管中进行了实验,重点是团簇表征。在本文中,重点是单分散材料。多分散材料的结果包含在随附的论文中(Chew等,本期)。使用光纤探头检测固体,并通过小波分解完成对固体簇的识别。评估了三个簇特征-出现概率,持续时间和频率-作为立管位置,操作条件和固体类型(即粒径和/或材料密度的变化)的函数。结果表明,立管位置对簇的特性具有最主要的影响,簇的出现概率似乎仅很大程度上是立管位置的函数,并且对操作条件或材料类型的变化不敏感。簇的持续时间和频率受颗粒材料和运行条件的影响,尽管仅从立管的中部高度开始。呈现的结果提供了影响群集趋势的因素的全面描述。

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