首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >PUMPING PERFORMANCE INCREASE THROUGH THE ADDITION OF TURBULENT DRAG-REDUCING POLYMERS TO PULP FIBRE SUSPENSIONS
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PUMPING PERFORMANCE INCREASE THROUGH THE ADDITION OF TURBULENT DRAG-REDUCING POLYMERS TO PULP FIBRE SUSPENSIONS

机译:通过向纸浆纤维悬浮液加入湍流阻力降低聚合物来泵送性能增加

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The addition of a small amount of long chain polymers to a turbulent fluid is known to reduce the wall shear stress and drag. Similarly, the addition of pulp fibres to a turbulent suspension is also turbulent-drag reducing despite pulp fibres having a length scale that is 1000 times larger than polymer molecules. The mechanism of drag reduction and its impact on centrifugal pump performance is poorly understood, especially when there is a combination of polymer and fibres in suspension. Centrifugal (slurry) pump performance was measured as a function of pulp fibre and PAM polymer concentration. Both the pump best efficiency and maximum head rise were greater when pumping modest concentrations of polymer solutions and low consistency pulp fibre than pure water. We measured an efficiency increase of 22 percent and a maximum head increase of 4.3 percent with the addition of 150 ppm PAM polymer relative to pure water. We measured an increase of 8 percent and 2.3 percent in pump efficiency and maximum head coefficient, respectively, with 2 percent pulp fibres over that of water alone. With both 1 percent consistency pulp fibres and 100 ppm of PAM polymers, we measured a 12 percent increase in efficiency over that of pulp suspension alone. With both 2 percent consistency pulp fibres and 100 Ppm of PAM polymers, we measured an 8 percent increase in efficiency over that of pulp fibre suspension alone. The reasons for the increased pump efficiency with addition of additives is not known but are thought to be due to the turbulent-drag-reducing properties associated with flow of these suspensions.
机译:已知将少量的长链聚合物加入湍流流体,以减少壁剪切应力和拖动。类似地,尽管具有比聚合物分子的长度为1000倍的纸浆纤维,但是湍流悬浮液中的纸浆纤维的加入也是湍流 - 阻力。减阻的机制及其对离心泵性能的影响较差,特别是当悬浮液中的聚合物和纤维的组合时。以纸浆纤维和PAM聚合物浓度的函数测量离心(浆料)泵性能。当泵送适度浓度的聚合物溶液和低稠度纸浆纤维时,泵最佳效率和最大头部升高均大于纯水。我们测量了22%的效率增加,并且在相对于纯水中加入150ppm PAM聚合物,最大头部增加了4.3%。我们分别测量泵效率和最大头部系数的增加8%和2.3%,仅用2%的纸浆纤维单独超过水。通过1%的一致性纸浆纤维和100ppm的PAM聚合物,我们单独测量纸浆悬浮液的效率增加12%。通过2%的一致性纸浆纤维和100ppm的PAM聚合物,我们单独使用纸浆纤维悬浮液的效率提高8%。添加添加剂的泵效率增加的原因是未知的,但被认为是由于与这些悬浮液流相关的湍流阻力降低的性质。

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