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Experimental study on gas-solid flow characteristics in an internally circulating fluidized bed cold test apparatus

机译:内循环流化床冷试液中气固流动特性的实验研究

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A self-designed internally circulating fluidized bed cold test apparatus was built to investigate the gas-solid flow characteristics in a new kind of internally circulating fluidized bed furnace. The test material was circulating ash from a power plant CFB boiler. Optical fiber probes and differential pressure transmitters were employed for the measurements. The particle internal circulation rate and the solids holdup in the upper space of the furnace were studied by changing the fluidization air velocity in the main chamber, the height of partition wall and the initial static bed height. The results showed that with the increase of fluidization air velocity in the main chamber, the particle internal circulation rate increased at first then decreased. Meanwhile, the particle internal circulation rate decreased with the increase of the partition wall height and increased with the increase of initial static bed height in the main chamber. The solids holdup in the upper space of the internally CFB cold test apparatus was 1-4% of that in the normal CFB cold test apparatus. The proportion of particle external circulation rate was relatively low in the circulating system. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:建立了一种自行设计的内部循环流化床冷测试装置,以研究一种新的内部循环流化床炉中的气固流动特性。测试材料从发电厂CFB锅炉循环灰烬。采用光纤探针和差压变送器进行测量。通过改变主室中的流化空气速度,隔断壁的高度和初始静态床高度来研究炉子内部循环速率和固体保持。结果表明,随着主腔室中的流化空气速度的增加,颗粒内部循环速率在首先增加然后减少。同时,颗粒内循环速率随着分隔壁高度的增加而降低,随着主室中的初始静态床高度的增加而增加。在正常CFB冷测试设备的上部空间中的固体保持为正常CFB冷测试装置中的1-4%。循环系统中颗粒外循环速率的比例相对较低。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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