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Push-pull ventilation system: a CFD approach for the performance analysis

机译:推拉式通风系统:性能分析的CFD方法

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In this paper the results of a CFD investigation for a push-pull local ventilation system are presented. The velocity field and the capture efficiency prediction are investigated for different system arrangements. The analysis is carried out for systems respectively with and without fluid-dynamic obstacle in the working plane and for dust pollutants with particle diameters ranging from 1.0 to 100 urn and emission velocities between 1.0 and 7.0 m/s. The analysis, carried out using the commercial code FLUENT, shows that the system performances are dependent on operating conditions and are influenced by the presence of the above-mentioned obstacle on the working plane. In the case of working plane emission without obstacle the system capture efficiency is in general very low never exceeding 25%. Higher efficiencies are instead achieved for particle emission from a vessel placed in the system's working plane centre. In this case even unitary peak efficiencies are reached for particular operating conditions.
机译:本文介绍了推拉式局部通风系统的CFD研究结果。针对不同的系统布置研究了速度场和捕获效率预测。对分别在工作平面中有和没有流体动力障碍的系统以及粒径在1.0至100 um范围内且排放速度在1.0至7.0 m / s之间的粉尘污染物进行了分析。使用商业代码FLUENT进行的分析表明,系统性能取决于操作条件,并且受工作平面上上述障碍物的存在的影响。在没有障碍物的工作平面发射的情况下,系统捕获效率通常非常低,永远不会超过25%。取而代之的是,从位于系统工作平面中心的容器中发出的粒子的发射效率更高。在这种情况下,对于特定的工作条件甚至可以达到单一的峰值效率。

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