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An experimental study of liquid-particle flow in circulating fluidized bed

机译:循环流化床中液体颗粒流动的实验研究

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摘要

A liquid-solid circulating fluidized bed (LSCFB) is operated at high liquid velocity, where particle entrainment is highly significant and between the conventional liquid fluidized bed and the dilute phase liquid transport regimes. LSCFB has potential applications in the fields of food processing, biochemical processing, and petrochemical and metallurgical processing. It is well known that the flow characteristics in a liquid-solid circulating fluidized bed are different from those of a conventional liquid-solid fluidized bed. The limited studies available in literature do not provide complete understanding of the flow structure in this typical regime. In the present work, experiments were carried out in a 0.0762 m ID and 3 m height laboratory-scale liquid-solid circulating fluidized bed apparatus by using various solid particles and tap water as fluidizing medium. In the experimental setup, two distributors ( specially designed) were used to monitor solid circulation rate in the riser. The effects of operating parameters, i.e., primary liquid flow rate in the riser (Up), solid circulation rate (G(s)), and particle diameter (dp), were analyzed from the experimental data. Finally, a correlation was developed from the experimental data to estimate average solid holdup in the riser, and it was compared with present experimental and available data in the literature. They agree well with a maximum root-mean-square deviation of 7.83%.
机译:液固循环流化床(LSCFB)在高液体速度下运行,在这种情况下,颗粒夹带非常显着,并且介于常规液体流化床和稀相液体传输方式之间。 LSCFB在食品加工,生化加工以及石化和冶金加工领域具有潜在应用。众所周知,液固循环流化床中的流动特性不同于常规液固流化床中的流动特性。文献中的有限研究未能完全了解这种典型状态下的流动结构。在本工作中,使用各种固体颗粒和自来水作为流化介质,在0.0762 m ID和3 m高实验室规模的液-固循环流化床设备中进行了实验。在实验设置中,使用了两个分配器(经过特殊设计)来监控立管中的固体循环速率。从实验数据分析了操作参数的影响,即立管中的主要液体流速(Up),固体循环率(G(s))和粒径(dp)。最后,根据实验数据建立了相关性,以估计立管中的平均固体含量,并将其与文献中的现有实验数据和可用数据进行了比较。它们与7.83%的最大均方根偏差非常吻合。

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