Effects of agitator blade scaling on mixing in dissolving tanks

Patrick A. Gareau, M. Bussman, N. Demartini
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Abstract

Hard calcium carbonate scale often forms on the agitators in smelt dissolving tanks. The effects of this scale on mixing are not well understood. While mixing in tanks has often been modeled in the literature, there have been no studies involving agitator scaling. To better understand the impact of agitator scaling on hydrodynamics and tank concentrations, a steady state, three-dimensional (3D) model has been developed for a smelt dissolving tank at a kraft pulp mill. In this work, four cases are compared: an agitator with no scaling, mild scaling, moderate scaling, and extreme scaling. The extreme scaling case is representative of scale buildup on a dissolving tank agitator that was significant enough that the agitator had to be stopped and cleaned. The reduction in the agitator fluid jet velocity is relatively small for the mild and moderate scaling cases, but it becomes more significant for the extreme scaling case, for which the results indicate that the mixing of the smelt with the weak wash is likely poor and that there would thus be a risk of smelt pooling.
搅拌桨叶结垢对溶解槽内混合的影响
在熔炼溶解槽中,经常在搅拌器上形成坚硬的碳酸钙垢。这个尺度对混合的影响还没有得到很好的理解。虽然在文献中经常模拟槽内的混合,但没有涉及搅拌器结垢的研究。为了更好地理解搅拌器结垢对流体力学和槽内浓度的影响,建立了一个硫酸盐纸浆厂熔体溶解槽的稳态三维模型。在这项工作中,比较了四种情况:搅拌器无结垢,轻度结垢,中度结垢和极端结垢。极端结垢的情况是溶解槽搅拌器上结垢的典型情况,这种结垢严重到必须停止搅拌并清洗。在轻度和中度结垢情况下,搅拌器流体射流速度的降低相对较小,但在极端结垢情况下,这一变化更为显著,这表明熔体与弱洗料的混合可能很差,因此存在熔体池化的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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