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Numerical simulation of solid-liquid suspension characteristics induced by three-bent-bladed turbine in stirred tank

机译:三弯曲型汽轮机在搅拌釜中诱导的固液悬架特性的数值模拟

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The software of CFD FLUENT was used to simulate the strengthening characteristics of three-bent-bladed turbine in solid-liquid suspension system. Diameter of stirred tank is T = 100mm. Four baffles are evenly distributed in the tank and two-phase material selection of glass ball-water system. Particle diameter is 250 μm and solid volume fraction is 15%. The standard dual equation model is adopted in the liquid turbulence model. The Euler multiphase flow model is applied to simulate the suspension process. The strengthening effect of the impeller's upturned angle is discussed on solid suspension, and the radial velocity and solid volume concentration distribution of solid particles are analyzed, respectively. The results showed that, compared with 30 degrees of upturned angle of three-bent-bladed turbine(30°UA-3BT), the axial velocity of solid particles did not increase significantly with 20 degrees of upturned angle of three-bent-bladed turbine(20°UA-3BT) in the stirred tank. But distribution of solid volume concentration was more uniform, which reduced the accumulation of solid particles at the bottom of tank and the clean area of the top of stirred tank. 20°UA-3BT is beneficial to the full mixing of solid and liquid. Therefore, the turbine has a good application prospect.
机译:CFD流畅的软件用于模拟固液悬架系统中三弯曲型涡轮机的强化特性。搅拌槽的直径是T = 100mm。四个挡板在罐中均匀分布,两相材料选择玻璃球水系统。粒径为250μm,固体体积分数为15%。液体湍流模型采用标准双式模型。欧拉多相流模型应用于模拟悬架过程。在固体悬浮液上讨论了叶轮上翘的角度的强化效果,分别分析固体颗粒的径向速度和固体体积浓度分布。结果表明,与30°叶片(30°UA-3BT)的30度上翘角度相比,固体颗粒的轴向速度没有显着增加三弯曲涡轮机的20度上翘角度(20°UA-3BT)在搅拌罐中。但是固体体积浓度的分布更均匀,这减少了罐底部的固体颗粒和搅拌槽顶部的清洁面积的积聚。 20°UA-3BT有利于固体和液体的全部混合。因此,涡轮机具有良好的应用前景。

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