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Numerical Simulation of Flow Field Characteristics and Separation Performance Test of Multi-Product Hydrocyclone

机译:多产品水力旋流器流场特性数值模拟及分离性能试验

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A traditional hydrocyclone can only generate two products with different size fractions after one classification, which does not meet the fine classification requirements for narrow size fractions. In order to achieve the fine classification, a multi-product hydrocyclone with double-overflow-pipe structure was designed in this study. In this work, numerical simulation and experimental test methods were used to study the internal flow field characteristics and distribution characteristics of the product size fraction. The simulation results showed that in contrast with the traditional single overflow pipe, there were two turns in the internal axial velocity direction of the hydrocyclone with the double-overflow-pipe structure. Meanwhile, the influence rule of the diameter of the underflow outlet on the flow field characteristics was obtained through numerical simulation. From the test, five products with different size fractions were obtained after one classification and the influence rule of the diameter of the underflow outlet on the size fraction distribution of multi-products was also obtained. This work provides a feasible research idea for obtaining the fine classification of multiple products.
机译:传统的水力旋流器在一次分类后只能生成两种具有不同粒径分数的产品,这不能满足窄粒径分数的精细分类要求。为了实现精细分类,本研究设计了一种具有双溢流管结构的多产品水力旋流器。在这项工作中,数值模拟和实验测试方法被用来研究内部流场特性和产品尺寸分数的分布特性。仿真结果表明,与传统的单溢流管相比,具有双溢流管结构的水力旋流器的内轴向速度方向有两个转弯。同时,通过数值模拟得出了底流出口直径对流场特性的影响规律。从该试验中,经过一类分类,得到了五种具有不同大小分数的产品,并且还获得了底流出口直径对多种产品的大小分数分布的影响规律。这项工作为获得多种产品的精细分类提供了可行的研究思路。

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