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基于DPM模型的离心泵非定常固液两相流及磨损计算 被引量:15
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作者 黄思 邹文朗 +2 位作者 周锦驹 何东萍 彭天阳 《中国农村水利水电》 北大核心 2016年第7期103-106,共4页
运用离散相模型(DPM)结合半经验的磨损模型,模拟计算离心泵内非定常固液两相流动,探索固相颗粒运动以及对泵材料磨损的规律。计算中将液相视为连续介质,求解欧拉坐标系下的流体控制方程;把固体颗粒相视为离散介质,在拉格朗日坐标系下... 运用离散相模型(DPM)结合半经验的磨损模型,模拟计算离心泵内非定常固液两相流动,探索固相颗粒运动以及对泵材料磨损的规律。计算中将液相视为连续介质,求解欧拉坐标系下的流体控制方程;把固体颗粒相视为离散介质,在拉格朗日坐标系下求解颗粒运动方程,采用迭代计算方法实现固液两相耦合。选取常用的IS型离心泵作为研究对象,清水作为连续相,石英沙粒作为离散相,粒径为0.05~0.2mm,泵进口颗粒体积率为0.5%~3%。计算得到了离心泵内固液两相流场特性,得到了泵内固体颗粒群的运动轨迹和材料磨损率分布等有价值的结果。 展开更多
关键词 离心泵 非定常固液两相流 磨损 DPM模型 数值模拟
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Numerical simulation and analysis of solid-liquid two-phase threedimensional unsteady flow in centrifugal slurry pump 被引量:16
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作者 吴波 汪西力 +1 位作者 LIU Hui 徐海良 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3008-3016,共9页
Based on RNG k-ε turbulence model and sliding grid technique, solid-liquid two-phase three-dimensional(3-D) unsteady turbulence of full passage in slurry pump was simulated by means of Fluent software. The effects of... Based on RNG k-ε turbulence model and sliding grid technique, solid-liquid two-phase three-dimensional(3-D) unsteady turbulence of full passage in slurry pump was simulated by means of Fluent software. The effects of unsteady flow characteristics on solid-liquid two-phase flow and pump performance were researched under design condition. The results show that clocking effect has a significant influence on the flow in pump, and the fluctuation of flow velocity and pressure is obvious, particularly near the volute tongue, at the position of small sections of volute and within diffuser. Clocking effect has a more influence on liquid-phase than on solid-phase, and the wake-jet structure of relative velocity of solid-phase is less obvious than liquid-phase near the volute tongue and the impeller passage outlet. The fluctuation of relative velocity of solid-phase flow is 7.6% smaller than liquid-phase flow at the impeller outlet on circular path. Head and radial forces of the impeller are 8.1% and 85.7% of fluctuation, respectively. The results provide a theoretical basis for further research for turbulence, improving efficient, reducing the hydraulic losses and wear. Finally, field tests were carried out to verify the operation and wear of slurry pump. 展开更多
关键词 slurry pump solid-liquid two-phase flow unsteady flow 3-D full passage numerical simulation
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