首页> 外文会议>Proceedings of the 11th International Conference on Fluidized Bed Technology >AN ACOUSTIC METHOD FOR THE MEASUREMENT OF MINIMUM FLUIDIZATION AND BUBBLING PROPERTIES OF GROUP A SOLIDS
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AN ACOUSTIC METHOD FOR THE MEASUREMENT OF MINIMUM FLUIDIZATION AND BUBBLING PROPERTIES OF GROUP A SOLIDS

机译:A族固体最小流化性和起泡性的声学方法

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Minimum fluidization and bubbling densities and velocities are widely used in fluidized bed design and modeling.The methods presently used for measuring these parameters are, however, time consuming and labor intensive.Traditional methods have often relied on visual observations to determine the minimum bubbling point, which is likely to introduce subjectivity in the data, and necessitates the use of transparent columns.Such test units often will not withstand high temperature and pressure conditions.This paper discusses results obtained in a 0.15-m-diameter test unit in which the minimum bubbling point was measured with an acoustic device.The test materials were several batches of FCC catalyst particles of fines contents ranging from 3 to 11% < 44 μm.Tests were conducted at low-to-moderate system pressures.Gas flowrate was automatically adjusted at a chosen time interval by a mass flow controller.The minimum fluidization point was determined from the bed pressure drop per unit length versus superficial gas velocity plot and the minimum bubbling point was obtained from the plot of standard deviation of bed height fluctuations as a function of gas velocity.The acoustic technique gave a clear distinction between particulate fluidization and bubbling fluidization.Fines content had no significant effect on the minimum fluidization velocity.The minimum bubbling velocity, however, increased rather sharply when the fines content exceeded about 5% < 44 μm.Both the minimum fluidization density and minimum bubbling density were found to decrease slowly with increasing fines content.For the pressure range used in these tests, there was no significant effect of pressure on both the minimum fluidization velocity and the minimum bubbling velocity.Furthermore, pressure had very small influences on both the minimum fluidization and minimum bubbling densities.
机译:最小流化和鼓泡密度及速度已广泛用于流化床设计和建模中,但是目前用于测量这些参数的方法既费时又费力。传统方法通常依靠肉眼观察来确定最小起泡点,这样的测试单元通常不能承受高温和高压条件。本文讨论了在直径0.15 m的测试单元中获得的最小鼓泡结果。用声学装置测量该点。测试材料是几批FCC催化剂颗粒,细粒含量为3至11%<44μm。在低至中度的系统压力下进行测试。由质量流量控制器选择时间间隔。最小流化点由每单位长度的床压降确定相对于表观气体流速图,最小起泡点是从床高起伏的标准偏差随气体速度变化的曲线图获得的。声学技术清楚地区分了颗粒流化和起泡流化。但是,当细粉含量超过5%<44μm时,最小起泡速度会急剧增加。随着细粉含量的增加,最小流化密度和最小起泡密度均会缓慢下降。在这些试验中,压力对最小流化速度和最小鼓泡速度都没有显着影响,此外,压力对最小流化速度和最小鼓泡密度的影响很小。

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