纸浆纤维悬浮液的流动动力学

August 2008 Pub Date : 2008-08-01 DOI:10.32964/tj7.8.20
Carla A. F. Ventura, F. Garcia, P. Ferreira, M. Rasteiro
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引用次数: 24

摘要

不同设备和单元操作之间的传输在纸浆和造纸厂中起着重要作用,因为纤维悬浮液不同于所有其他固液系统,因为不同的纸浆和纸张成分之间存在复杂的相互作用。对悬浮液流动动力学的不了解意味着工业设备的设计通常是保守的,而且经常是超大的,从而导致工厂过度的能源消耗。我们的研究目的是获得关于工业纸浆悬浮液动态行为的额外知识,以便评估影响压降的因素的相对重要性。为了获得数学相关性来量化纸浆悬浮液运输的压降,我们在专门设计和建造的试验装置中研究了四种不同的工业纸浆悬浮液(再生纸浆、桉树漂白硫酸盐纸浆、未漂白的松木硫酸盐纸浆和桉树[90%]+松木[10%]漂白硫酸盐纸浆)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flow dynamics of pulp fiber suspensions
The transport between different equipment and unit operations plays an important role in pulp and paper mills because fiber suspensions differ from all other solid-liquid systems, due to the complex interactions between the different pulp and paper components. Poor understanding of the suspensions’ flow dynamics means the industrial equipment design is usually conservative and frequently oversized, thus contributing to excessive energy consumption in the plants. Our study aim was to obtain additional knowledge about the dynamic behavior of industrial pulp suspensions in order to evaluate the relative importance of the factors that influence pressure drop. To obtain mathematical correlations to quantify pressure drop for the transport of pulp suspensions, we studied four different industrial pulp suspensions (recycled pulp, eucalypt bleached kraft pulp, pine unbleached kraft pulp, and eucalypt [90%] + pine [10%] bleached kraft pulp) in a pilot rig specially designed and built for the effect.
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