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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Computational fluid dynamics modeling and laboratory analysis of aerosol particles' capture on thin swirling water film in a Vortecone
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Computational fluid dynamics modeling and laboratory analysis of aerosol particles' capture on thin swirling water film in a Vortecone

机译:涡旋薄旋流水膜薄旋转水膜捕获的计算流体动力学建模与实验室分析

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This study was conducted to look at a new use case for the Vortecone scrubber. A Vortecone is an inertial separator that utilizes the momentum of dust particles to promote their capture. The turbulent airflow forces the water supplied at the periphery to deform continuously, resulting in a rapidly swirling film on the Vortecone surface. The heavier dust particles are differentially shed from the bulk airflow towards the vortex chamber surface where they are captured by the running water film. The Vortecone surface serves as the filter element. The authors use computational fluid dynamics to model the multiphase flow and particle transportation inside the Vortecone. Laboratory experiments using coal dust show the Vortecone to capture about 73% and 97% of particles exceeding 2.93 mu m and 5.9 mu m at 028 m(3)/s. The cleaning improves to 89% and 99% at the airflow of 0.38 m(3)/s (C) 2019 Elsevier B.V. All rights reserved.
机译:进行了这项研究,以查看涡卷酮洗涤器的新用例。 Vortecone是一种惯性分离器,利用粉尘颗粒的势头来促进其捕获。 湍流气流迫使在周边供应的水连续变形,从而导致涡旋表面上的快速旋转薄膜。 较重的粉尘颗粒从散装气流朝向涡流室表面的块状气流差,其中它们被运行水膜捕获。 VorteCone曲面用作滤波元件。 作者使用计算流体动力学来模拟VorteCone内部的多相流和颗粒运输。 使用煤粉的实验室实验显示涡旋酮,捕获约73%和97%的颗粒超过2.93μm和5.9μm在028 m(3)/ s。 清洁在0.38米(3)/ s(c)2019年Elsevier B.V.保留的所有权利下,该清洁可提高到89%和99%。

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