首页> 外文期刊>Brazilian journal of chemical engineering >EXPERIMENTAL INVESTIGATION OF THERMAL CONDUCTIVITY COEFFICIENT AND HEAT EXCHANGE BETWEEN FLUIDIZED BED AND INCLINED EXCHANGE SURFACE
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EXPERIMENTAL INVESTIGATION OF THERMAL CONDUCTIVITY COEFFICIENT AND HEAT EXCHANGE BETWEEN FLUIDIZED BED AND INCLINED EXCHANGE SURFACE

机译:流化床与倾斜换热面导热系数和换热的实验研究

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The paper presents experimental research of thermal conductivity coefficients of the siliceous sand bed fluidized by air and an experimental investigation of the particle size influence on the heat transfer coefficient between fluidized bed and inclined exchange surfaces. The measurements were perforated for the specific fluidization velocity and sand particle diameters d_p=0.3, 0.5, 0.9 mm. The industrial use of fluidized beds has been increasing rapidly in the past 20 years owing to their useful characteristics. One of the outstanding characteristics of a fluidized bed is that it tends to maintain a uniform temperature even with nonuniform heat release. On the basis of experimental research, the influence of the process's operational parameters on the obtained values of the bed's thermal conductivity has been analyzed. The results show direct dependence of thermal conductivity on the intensity of mixing, the degree of fluidization, and the size of particles. In the axial direction, the coefficients that have been treated have values a whole order higher than in the radial direction. Comparison of experimental research results with experimental results of other authors shows good agreement and the same tendency of thermal conductivity change. It is well known in the literature that the value of the heat transfer coefficient is the highest in the horizontal and the smallest in the vertical position of the heat exchange surface. Variation of heat transfer, depending on inclination angle is not examined in detail. The difference between the values of the relative heat transfer coefficient between vertical and horizontal heater position for all particle sizes reduces by approximately 15% with the increase of fluidization rate.
机译:本文介绍了空气流化的硅质砂层导热系数的实验研究,以及粒径对流化床与倾斜交换面之间传热系数影响的实验研究。对特定的流化速度和砂粒直径d_p = 0.3、0.5、0.9 mm进行测量。由于其有用的特性,在过去的20年中,流化床的工业用途已迅速增加。流化床的突出特征之一是即使有不均匀的热释放,它也倾向于保持均匀的温度。在实验研究的基础上,分析了工艺操作参数对所获得床热导率值的影响。结果表明,热导率直接取决于混合强度,流化程度和颗粒尺寸。在轴向上,已经处理的系数的值整体上比径向上高。将实验研究结果与其他作者的实验结果进行比较,可以得出很好的一致性,并且热导率变化趋势相同。在文献中众所周知,传热系数的值在热交换表面的水平位置最高而在垂直位置最小。没有详细检查取决于倾角的传热变化。随着流化速率的增加,所有粒径的垂直和水平加热器位置之间的相对传热系数值之间的差异减少了约15%。

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