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Macroscale mixing and dynamic behavior of agitated pulp stock chests.

机译:搅拌纸浆箱的宏观混合和动态行为。

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Agitated pulp chests provide attenuation of high-frequency disturbances in fibre mass concentration, freeness and other quality factors. Dynamic tests made on industrial stock chests show the existence of non-ideal flows such as channeling, recirculation and dead zones. A new identification method was developed for estimation of dynamic model parameters.; A scale-model stock chest was designed and built to study macroscale mixing and disturbance attenuation in a laboratory setting. First preliminary batch studies were made on the scale model chest to characterize its behavior and to develop test protocols for use in dynamic tests. Dynamic response of liquid and solid phase tracers showed that a liquid phase tracer (saline solution) can be used to trace the fibre phase provided the fibre mass concentration is ≥2%. It was found that mixing-time for the laboratory chest is both a function of impeller momentum flux and fibre mass concentration.; The extent of non-ideal flow in the scale-model chest was evaluated by exciting the system.; Dynamic test results showed that the extent of non-ideal flow and the degree of disturbance attenuation are significantly affected by the location of the input and output in the chest, the fibre mass concentration, the impeller speed and diameter, and the pulp flow rate through the chest.; It was found that the degree of upset attenuation is a function of the impeller momentum flux, rather than the power input. Dynamic tests made on scale-model and industrial chests showed that the power calculated based on smooth surface motion and even the onset of complete motion inside the chest does not completely eliminate dead volume and channeling. Additional power is required to have a desired dynamic response from the chest.
机译:搅动的纸浆箱可减轻纤维质量浓度,游离度和其他​​质量因素中的高频干扰。对工业储藏箱进行的动态测试表明,存在非理想流动,例如窜流,再循环和死区。开发了一种用于动态模型参数估计的新识别方法。设计并建造了比例模型的储物箱,以研究实验室环境中的宏观混合和干扰衰减。首先在规模模型箱上进行了初步的批量研究,以表征其行为并开发用于动态测试的测试协议。液相和固相示踪剂的动态响应表明,只要纤维质量浓度≥2%,即可使用液相示踪剂(盐溶液)示踪纤维相。已经发现,实验室箱的混合时间是叶轮动量通量和纤维质量浓度的函数。通过激励系统评估比例模型箱中非理想流动的程度。动态测试结果表明,不理想流动的程度和扰动衰减的程度受输入和输出在胸部的位置,纤维质量浓度,叶轮速度和直径以及通过纸浆的流速的影响很大。胸部。;已经发现,不正常衰减的程度是叶轮动量通量的函数,而不是功率输入的函数。在比例模型和工业箱上进行的动态测试表明,基于光滑的表面运动甚至在箱内完全运动开始时计算出的功率并不能完全消除死体积和窜动。需要额外的力量才能使胸部产生理想的动态反应。

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