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首页> 外文期刊>International Journal of Environmental Technology and Management >Simulation of fly ash particulates separation in cyclone separator
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Simulation of fly ash particulates separation in cyclone separator

机译:旋风分离器中粉煤灰颗粒分离的模拟

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摘要

The response surface Box-Behnken design is used to study the dependence and interactions of particle size, load of fly ash and pressure drop inside the cyclone separator for collection efficiency of fly ash. The maximum collection efficiency of fly ash obtained was 95% in the cyclone separator studied. The Barth model is used to evaluate the axial and tangential velocities of cyclone separator studied. The static pressure contour plots at different inlet velocities of 41 m/s and 104 m/s at top and bottom horizontal planes of cyclone separator were developed using computational fluid dynamics software Fluent. The contour regions of axial, radial and tangential velocity fields in the cyclone separator were analysed using Fluent finite volume code for flow analysis inside the cyclone separator for fly ash collection. It was observed that the radial velocity increases rapidly towards the vortex core and the tangential velocity is dependent on the geometrical design of cyclone separator, wall friction and particle loading of fly ash.
机译:响应面Box-Behnken设计用于研究颗粒大小,粉煤灰负荷和旋风分离器内部压降之间的依赖性和相互作用,以提高粉煤灰的收集效率。在研究的旋风分离器中,获得的粉煤灰的最大收集效率为95%。 Barth模型用于评估旋风分离器的轴向和切向速度。使用计算流体力学软件Fluent开发了旋风分离器顶部和底部水平面在41 m / s和104 m / s的不同入口速度下的静压轮廓图。使用Fluent有限体积代码分析旋风分离器内部的轴向,径向和切向速度场的轮廓区域,以进行旋风分离器内部粉煤灰的流动分析。可以看出,径向速度朝向旋涡芯快速增加,并且切向速度取决于旋风分离器的几何设计,壁摩擦和粉煤灰的颗粒载荷。

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