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Contrast Study on the Radial Velocity of the Flow Field of the Hydrocyclones with Different Inlet Structures

机译:不同入口结构氢旋流素流场径向速度的对比度研究

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On the base of numerical simulation and theoretical analysis, the flow field of a conventional single-tangential-inlet Hydrocyclone and a newly put forward axial-symmetry double-tangential-inlet hydrocyclone were contrasted. The study shows that the inlet structure of the Hydrocylone has a great influence on the radial velocity of the flow field in the hydrocyclone and that the radial velocity in the hydrocyclone with single-tangential-inlet is not symmetry about the axis of the hydrocyclone; and on the other hand the radial velocity in the hydrocyclone with axial-symmetry double-tangential-inlet is symmetry about the axis of the hydrocyclone. The magnitude of the radial velocity of the flow in the hydrocyclone with single-tangential-inlet is greater than that in the hydrocyclone with axial-symmetry double-tangential-inlet hydrocyclone, which means the hydrocyclone with axial-symmetry double-tangential-inlet has greater capability than the rival one with single-tangential inlet. The symmetry about the axis of the hydrocyclone of the radial velocity means the radial velocities in the place where the radio is the same are constant, which means the hydrocyclone has a great separation efficiency. The conclusion is that changing the conventional hydrocyclone into the one with axial-symmetry double-tangential-inlet structure can offer greater separation capability and efficiency.
机译:在数值模拟和理论分析的基础上,对比常规单切线氢胞素和新引出的轴对称双切口氢胞链的流场。该研究表明,氢化氢酮的入口结构对水力旋流器中的流场的径向速度产生了很大的影响,并且氢旋流器中的辐射速度与单切线入口的径向对称性围绕水力旋流轴的轴线;另一方面,具有轴对称双切口入口的水力旋流器中的径向速度是围绕水力旋流轴的对称性。含有单切线入口的水力旋流器中流动的径向速度的大小大于轴对称双切口入口氢胞链的水力旋流器,这意味着具有轴对称双切口的水力旋流器具有具有与单切线入口的竞争对手的能力更大。关于径向速度的水力旋流轴的对称性是指无线电是相同的地方的径向速度是恒定的,这意味着氢旋流器具有很大的分离效率。结论是将常规的氢旋旋器改变为具有轴对称的双切口结构的一个,可以提供更大的分离能力和效率。

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