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首页> 外文期刊>The Canadian Journal of Chemical Engineering >A Quantitative Analysis of Turbulent Drag reduction in a Hydrocyclone
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A Quantitative Analysis of Turbulent Drag reduction in a Hydrocyclone

机译:水力旋流器湍流减阻的定量分析

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摘要

Turbulent drag reduction has been observed to occur over a wide range of additive systems, such as solution of synthetic or natural polymers, and fibre suspensions. In this study, the influence of softwood kraft pulp fibres and synthetic polymer additives on turbulent drag reduction (DR) in a hydrocyclone is investigated. It was demonstrated that cellulose fibre suspensions and aqueous polymeric solutions reduce the fluid energy losses in comparison to water during hydrocyclone operation within the range of reject ratios studied. A maximum drag reduction of 58% and 55% was found to occur at a volume split fraction of 50% for a 0.9% fibre suspension and a 300 ppm anionic polyacrylamide solution, respectively. Polymer degradation or polymer chain decay displayed adverse effects for 100 ppm and 150 ppm solutions after 22 min of run time at 11.2 kW pumping power and a reject ratio of 25%. Synergistic effects were observed with pulp suspensions containing both cationic and anionic polyacrylamide (CPAM and APAM, respectively); a maximum DR of 41 % was observed for a 0.7% fibre suspension containing 100-300 ppm of polymer at a reject ratio of 50%. Similarly to aqueous polymer solutions, the degradation of 300 ppm APAM or CPAM in a 0.7% fibre suspension decreased the observed DR up to 38% after 30 min of run time at 11.2 kW pumping power and a reject ratio of 25%. The near 43% reduction in CPAM concentration, due to surface adsorption, when present in a 0.7% fibre suspension assisted in quantifying the DR variations observed between suspensions containing APAM or CPAM.
机译:已经观察到湍流阻力的减少在多种添加剂体系中发生,例如合成或天然聚合物的溶液以及纤维悬浮液。在这项研究中,研究了软木牛皮纸浆纤维和合成聚合物添加剂对水力旋流器中湍流减阻(DR)的影响。结果表明,在所研究的废品率范围内,与水力旋流器相比,纤维素纤维悬浮液和水性聚合物溶液与水相比,减少了流体能量损失。对于0.9%的纤维悬浮液和300ppm的阴离子聚丙烯酰胺溶液,发现在50%的体积分裂分数下分别出现58%和55%的最大减阻。在11.2 kW泵浦功率和25%的废品率下运行22分钟后,对于100 ppm和150 ppm溶液,聚合物降解或聚合物链衰减显示出不利影响。在同时含有阳离子和阴离子聚丙烯酰胺(分别为CPAM和APAM)的纸浆悬浮液中观察到了协同作用。对于以100%的废品率包含100-300 ppm的聚合物的0.7%纤维悬浮液,观察到最大DR为41%。与聚合物水溶液相似,在0.7%纤维悬浮液中300 ppm APAM或CPAM的降解在11.2 kW泵浦功率和25%的废品率下运行30分钟后,观察到的DR降低至38%。当存在0.7%的纤维悬浮液中时,由于表面吸附,CPAM浓度降低了近43%,这有助于量化在包含APAM或CPAM的悬浮液之间观察到的DR变化。

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