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Characteristics of Heat Transfer in Three-Phase Swirling Fluidized Beds

机译:三相旋流流化床传热特性

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Characteristics of heat transfer were investigated in a three-phase swirling fluidized bed whose diameter was 0.102 m and 2.5 m in height. Effects of gas and liquid velocities, particle size and liquid swirling ratio (R_S) on the immersed heater-to-bed overall heat transfer coefficient were examined. The heat transfer characteristics between the immersed heater and the bed was well analyzed by means of phase space portraits and Kolmogorov entropy(K) of the time series of temperature difference fluctuations. The phase space portraits of temperature difference fluctuations became stable and periodic and the value of Kolmogorov entropy tended to decrease with increasing the value of liquid swirling ratio from 0.1 to 0.4. The value of Kolmogorov entropy exhibited its minimum with increasing liquid swirling ratio. The value of overall heat transfer coefficient (h) showed its maximum with the variation of liquid velocity, bed porosity or liquid swirling ratio, but it increased with increasing gas velocity and particle size. The value of K exhibited its maximum at the liquid velocity at which the h value attained its maximum. The overall heat transfer coefficient and Kolmogorov entropy were well correlated in terms of dimensionless groups and operating variables.
机译:在直径为0.102 m,高度为2.5 m的三相旋流流化床中研究了传热特性。考察了气体和液体的速度,颗粒大小和液体的涡流比(R_S)对沉浸式加热器-床层总传热系数的影响。通过相空间画像和温度差波动时间序列的Kolmogorov熵(K),很好地分析了浸入式加热器与床之间的传热特性。温差波动的相空间图变得稳定且周期性,并且随着液体回旋比值从0.1增大到0.4,Kolmogorov熵值趋于减小。随着液体回旋比的增加,Kolmogorov熵值呈现最小值。总传热系数(h)的值随液体速度,床孔隙率或液体回旋比的变化而显示出最大值,但随着气体速度和粒径的增加而增加。 K值在h值达到最大值的液体速度下表现出最大值。整体传热系数和Kolmogorov熵在无因次组和操作变量方面具有很好的相关性。

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