Analysis of Cylinder Drying Intensity of Cut Tobacco Based on Enthalpy Method

Ze Liu, Yijie Yang, Wei Zhang, Na Liu, Changgui Qiu, Banghua He, Siyuan Li, Wen Zuo, Liang Fu, Qianxu Yang, Yubao Chen
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Abstract

Cylinder drying of cut tobacco is one of the key processing technologies in cigarette manufacturing. And complex mass transfer and heat transfer phenomena were involved. In this paper, a thermodynamic model have been built for cut tobacco during cylinder drying process. The relationship of different process parameters and thermodynamic data were analyzed by canonical correlation method, including amount of heat Qv produced in moisture evaporation of cut tobacco, amount of heat Qs produced in temperature increase of cut tobacco, total amount of heat Q and thermal efficiency coefficient η. The results showed that the thermodynamic model explained the actual cut tobacco heating and heat distribution well in the cylinder drying process. The variation coefficients of the four thermodynamic parameters of cut tobacco under the same processing conditions were all less than 5.0%. It is proved that the thermodynamic model established during cylinder drying process of cut tobacco is feasible.
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基于焓法的烟丝筒体干燥强度分析
烟丝筒干燥是卷烟生产中的关键加工技术之一。涉及复杂的传质和传热现象。本文建立了烟丝圆筒干燥过程的热力学模型。采用典型相关法分析了不同工艺参数与烟丝蒸发量Qv、烟丝升温发热量Qs、总发热量Q与热效率系数η的关系。结果表明,该热力学模型较好地解释了烟丝筒干燥过程中实际的加热和热量分布情况。相同加工条件下,烟丝4个热力学参数的变异系数均小于5.0%。实验证明,所建立的烟丝圆筒干燥过程热力学模型是可行的。
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来源期刊
Journal of Biobased Materials and Bioenergy
Journal of Biobased Materials and Bioenergy 工程技术-材料科学:生物材料
自引率
0.00%
发文量
60
审稿时长
6 months
期刊最新文献
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