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首页> 外文期刊>Chemical Engineering Science >Identification of flow regime in a cocurrent gas - Liquid upflow moving packed bed reactor using gamma ray densitometry
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Identification of flow regime in a cocurrent gas - Liquid upflow moving packed bed reactor using gamma ray densitometry

机译:使用伽马射线密度测定法识别COCOCRENT气体 - 液体上流移动填充床反应器的识别

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Flow regime identification in upflow moving packed bed reactors with the conical bottom was investigated using non-invasive gamma-ray densitometry (GRD) measurement technique. Time domain (Standard Deviation), and state space or chaotic methods (Kolmogorov Entropy) are employed on photon count time series of GRD to determine flow regime. The experiments were performed on a pilot plant scale upflow packed bed reactor made of Plexiglas column of 27.94 cm I.D and a total height of 118 cm including plena, and it is packed randomly with 0.3 cm diameter catalyst till 79 cm including the conical bottom. Two axial and various radial position are selected to conduct GRD scanning. The measurements are conducted at superficial liquid (water) velocity 0.017 cm/s and superficial gas (air) velocity in the range of 0.6-7.7 cm/s under these conditions catalyst bed behaves as packed bed. All analysis showed similar flow regime trend, with observed flow regime as bubbly and pulse flow, when compared with flow regime map for upflow packed bed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用非侵入性伽马射线密度测量技术(GRD)测量技术研究了与锥形底部的上流移动填充床反应器中的流动制度识别。时域(标准偏差),以及状态空间或混沌方法(KOLMOGOROV熵)在光子计数时间序列上采用GRD以确定流动状态。该实验是对由Plaginglas柱的先导植物尺度上流填充床反应器进行了27.94cm i.d的总高度,包括普拉纳的总高度,随机用0.3cm直径催化剂填充,直至79厘米,包括锥形底部。选择两个轴向和各种径向位置以传导GRD扫描。测量在浅表液体(水)速度下进行0.017cm / s,并且在这些条件下的0.6-7.7cm / s的范围内浅表气体(空气)速度,催化剂床表现为填充床。所有分析显示出类似的流动制度趋势,随着溢流床的流动制度图相比,观察到的流动制度作为泡沫和脉冲流量。 (c)2017 Elsevier Ltd.保留所有权利。

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