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Heat transfer characteristics on lignite thin-layer during hot air forced convective drying

机译:热风强制对流干燥过程中褐煤薄层的传热特性

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Heat transfer characteristics of the lignite thin-layer during the hot air forced convective drying were investigated experimentally as a function of hot air temperatures (100, 110, 120, 130, 140, 150, and 160 degrees C) and speeds (0.6, 1.4, and 2.0 m s (1)). The average temperature and surface temperature of the thin-layer increased rapidly in the first falling rate period, whereas those rose slightly in the second falling rate period. The stabilized temperature of the thin layer at hot air temperature range of 100-160 degrees C, increased by about 4.2% to 14.8% when the wind speed rose from 0.6 m s (1) up to 2.0 m s (1). The average surface heat transfer coefficients in the first falling rate period were about 2-3 times of those in the second falling rate period. With an increase of the hot air temperature from 100 to 160 degrees C, the average surface heat transfer coefficients increased by about 71.9% to 80.9% in the first falling rate period and about 56.8% to 146.0% in the second falling rate period. The dimensionless surface heat transfer correlation of the lignite thin-layer was obtained for the first falling rate period. (C) 2015 Elsevier Ltd. All rights reserved.
机译:实验研究了褐煤薄层在热风强制对流干燥过程中的传热特性,该变化是热风温度(100、110、120、130、140、150和160摄氏度)和速度(0.6、1.4)的函数和2.0毫秒(1))。薄层的平均温度和表面温度在第一个下降速率期间迅速上升,而在第二个下降速率期间则略有上升。当风速从0.6 m s(1)上升到2.0 m s(1)时,在100-160摄氏度的热空气温度范围内,薄层的稳定温度增加了约4.2%至14.8%。第一下降速率期间的平均表面传热系数约为第二下降速率期间的平均表面传热系数的2-3倍。随着热空气温度从100摄氏度增加到160摄氏度,平均表面传热系数在第一个下降速度时期增加了约71.9%至80.9%,在第二个下降速度时期增加了约56.8%至146.0%。在第一下降速率期间获得了褐煤薄层的无因次表面传热相关性。 (C)2015 Elsevier Ltd.保留所有权利。

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