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Numerical analysis of flow field and separation characteristics in hydrocyclones with adjustable apex

机译:具有可调节顶点的氢旋流器流域和分离特性的数值分析

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In the present study, we proposed an adjustable apex structure to achieve the goal of online adjustment of the apex diameter of a hydrocyclone. And a computational fluid dynamics (CFD)-based numerical simulation was conducted to study the internal flow field and the separation characteristics of an adjustable apex hydrocyclone. The results show that for the hydrocyclone with the conventional apex, the total pressure drop gradually increases as the diameter of the apex decreases, but it exhibits a general downward tendency after the insertion of the adjustable cone. In addition, the tangential velocity of the adjustable apex hydrocyclone is greater than that of the conventional hydrocyclone in the forced vortex region and smaller in the free vortex region. Moreover, the insertion of the adjustable cone to the conventional apex can increase the total separation efficiency of the hydrocyclone by up to 15.81% without a significant change in the separation sharpness. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中,我们提出了一种可调节的顶点结构,以实现氢旋流器的顶部调整的目标。进行了计算流体动力学(CFD)的基于数值模拟,以研究内部流场和可调节顶点水力旋流器的分离特性。结果表明,对于具有传统顶点的水力旋流器,随着顶点的直径降低,总压降逐渐增加,但在插入可调节锥体之后它表现出一般的向下趋势。另外,可调节的顶点水力旋流器的切向速度大于强制涡旋区域中的常规氢旋流器的切向速度,并且在游离涡旋区域中较小。此外,将可调节锥体的插入到常规顶点可以通过高达15.81%的分离清晰度的显着变化将水力旋流器的总分离效率增加。 (c)2019年Elsevier B.V.保留所有权利。

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