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Investigation of the interaction of particulate matter and its separation from the gas flow in a multi-channel cyclone with recirculation

机译:研究颗粒物的相互作用及其在具有再循环的多通道旋风分离器中与气流的分离

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Abstract The deposition of ultrafine particulate matter (UFPM) in the gas flow in the channel occurs as they settle due to adhesion and under the influence of gravity.A treatment of the multi-channel cyclone is based on centrifugal filtration, with the two-phase gas flow in constant contact with the curved elements installed in the separation chamber. Prevailing gas flow trajectories were analyzed in a 3D printed multi-channel cyclone at 11–18.5 m3/h gas flow rate. The intensity of adhesion of UFPM (0.4–5 μm in size) to the surface at their low concentration (no more than 10 mg/m3) was visually evaluated under normal and up to 95 humidity conditions. The focus is on the adhesion of the UFPM to the surface of polylactic acid. By the discrete element method it was achieved the results of the coefficient of restitution to normal and tangential direction for 0.5 μm, 1.0 μm and 2.0 μm particles with the surface, as well as changes in force were equal to at normal up to 3 μN and tangential up to 1 μN over time in 20 ns.
机译:摘要 超细颗粒物(UFPM)在气流中由于粘附和重力作用而沉降时,会发生沉积。多通道旋风分离器的处理基于离心过滤,两相气流与安装在分离室中的弯曲元件持续接触。在 3D 打印的多通道旋风分离器中以 11–18.5 m3/h 的气体流速分析了主要的气体流动轨迹。在正常和高达95%的湿度条件下,目视评估了UFPM(大小为0.4-5μm)在低浓度(不超过10 mg/m3)下对表面的粘附强度。重点是UFPM对聚乳酸表面的粘附。通过离散元方法,在20 ns内,0.5 μm、1.0 μm和2.0 μm颗粒随时间推移的法线和切向恢复系数以及力的变化分别等于法线时至3 μN和切向至1 μN。

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