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An experimental investigation into the particle classification capability of a novel cyclone separator

机译:新型旋风分离器颗粒分类能力的实验研究

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摘要

Cyclone separators are widely used for dedusting of particle-laden flows in many branches of industry. A new cyclone containing several collectors was designed in modular structure to investigate the capability of particle classification of the cyclone during particle separation process. The particulate air was supplied into the cyclone in a test bench operated in suction mode under ambient temperature and atmospheric pressure conditions. The flow rate and pressure drop were measured, and the particles accumulated in the dust collectors were weighed and analyzed for each test. The changes in the overall collection efficiency and pressure drop with the flow rate were obtained. In order to determine the classification characteristics of the cyclone, the experiments were repeated in different configurations obtained by changing the locations and number of the collectors. The mean particle diameter and particle size distribution of the dust collected in each collector were acquired. Analysis of the results shows that the designed cyclone is capable of classification incoming particles into 2, 3 or 4 classes in the cyclone according to particle size. Classification performance of the configurations and influences of flow rate on this performance were also investigated. A distinct and satisfactory classification was obtained in the configuration with three collectors.
机译:旋风分离器广泛用于在许多工业分支中除去粒子载体流量。含有几个收集器的新旋风器以模块化结构设计,以研究粒子分离过程中旋风分离器的颗粒分类能力。在环境温度和大气压条件下在吸入模式下操作的试验台中供应颗粒空气。测量流速和压降,称重和分析累积在灰尘收集器中的颗粒以进行每次测试。获得了总收集效率和流量下降的变化。为了确定旋风分离器的分类特性,通过改变收集器的位置和数量获得的不同配置重复实验。获取每个收集器中收集的灰尘的平均粒径和粒径分布。结果分析表明,根据颗粒尺寸,设计的旋风能够在旋风内分类为2,3或4级。还研究了配置的分类性能和流速对这种性能的影响。在具有三个收集器的配置中获得了独特且令人满意的分类。

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