Fundamental understanding of removal of liquid thin film trapped between fibers in the paper drying process: A microscopic approach

Z. Noori, J. Yagoobi, B. Tilley
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引用次数: 2

Abstract

In the fabrication of paper, a slurry with cellulose fibers and other matter is drained, pressed, and dried. The latter step requires considerable energy consumption. In the structure of wet paper, there are two differ-ent types of water: free water and bound water. Free water can be removed most effectively. However, removing bound water consumes a large portion of energy during the process. The focus of this paper is on the intermediate stage of the drying process, from free water toward bound water where the remaining free water is present on the surfaces of the fibers in the form of a liquid film. For simplicity, the drying process considered in this study corresponds to pure convective drying through the paper sheet. The physics of removing a thin liquid film trapped between fibers in the paper drying process is explored. The film is assumed to be incompressible, viscous, and subject to evaporation, thermocapillarity, and surface tension. By using a volume of fluid (VOF) model, the effect of the previously mentioned parameters on drying behavior of the thin film is investigated.
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对纸张干燥过程中纤维间液体薄膜去除的基本理解:微观方法
在造纸过程中,将含有纤维素纤维和其他物质的浆液排干、压制和干燥。后一个步骤需要大量的能源消耗。在湿纸的结构中,有两种不同类型的水:自由水和结合水。游离水可以最有效地去除。然而,去除束缚水在这个过程中消耗了很大一部分能量。本文的重点是干燥过程的中间阶段,从自由水到结合水,其中剩余的自由水以液体膜的形式存在于纤维表面。为简单起见,本研究中考虑的干燥过程对应于通过纸张的纯对流干燥。探讨了在纸张干燥过程中去除纤维之间的液体薄膜的物理原理。薄膜被认为是不可压缩的,粘稠的,并受到蒸发,热毛细和表面张力的影响。利用流体体积(VOF)模型,研究了上述参数对薄膜干燥性能的影响。
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