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Optimization high vortex finder of cyclone separator with computational fluids dynamics simulation

机译:计算流体动力学模拟优化旋风分离器的高涡发现器。

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Cyclone separator is an equipment that separates particles contained in the fluid without using filters. The dust particles in the flue gases can be separated by utilizing centrifugal forces and different densities of particles, so that the exhaust gases to be cleaner before discharged into the environment. In this paper carried out a simulation by Computational of Fluids Dynamics to determine the number of particles that can be separated in several cyclone separator which has a ratio body diameter against vortex finder high varied as : 1:0.5 ; 1:0.75 ; 1:1 ; 1:1.25 and 1:1.5. Fluid inlet are air with antrachite impurity particles that are commonly found in the exhaust gases from tire manufacturers with inlet velocities varied as: 15 m/s and 30 m/s. The results of simulation show the fluids with 15 m/s of inlet velocity is generate particle separation value is higher than the fluids with 30 m/s inlet velocity for ratio of body diameter and height vortex finder a: 1:0.5 and 1:1.5. For both of inlet velocities the best ratio of body diameter and height vortex finder is 1:1.25, where it has the highest values of percentage trapped particles about 86% for 30 m/s input velocity and also for 15 m/s input velocity.
机译:旋风分离器是一种无需使用过滤器即可分离流体中所含颗粒的设备。可以利用离心力和不同密度的颗粒来分离烟气中的灰尘颗粒,从而使废气在排放到环境中之前更清洁。本文通过流体动力学计算进行了模拟,确定了几种旋风分离器可以分离出的颗粒数量,旋风分离器的体径与涡流探测器的比率高为1:0.5; 1:0.75; 1:1; 1:1.25和1:1.5。流体入口是空气中带有无烟煤杂质颗粒,通常在轮胎制造商的废气中发现,入口速度变化为:15 m / s和30 m / s。仿真结果表明,对于体径与高度涡流探测器的比值a:1:0.5和1:1.5,入口速度为15 m / s的流体产生的颗粒分离值高于入口速度为30 m / s的流体。 。对于两种入口速度,最佳的机体直径和高度涡流探测器之比为1:1.25,在30 m / s的输入速度和15 m / s的输入速度下,其捕获颗粒百分比的最高值约为86%。

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