首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >A new cyclone separator-based pre-filter design for internal combustion engine applications, part 2: parametric study and optimization
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A new cyclone separator-based pre-filter design for internal combustion engine applications, part 2: parametric study and optimization

机译:一种基于旋风分离器的新型预滤器设计,用于内燃机应用,第2部分:参数研究和优化

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摘要

In a previous paper a new design was presented of a cyclone separator based pre-filter along with validation of a numerical model with experimental data. The validated model is used to evaluate certain designs with varying inlet air entry configurations. Furthermore, several cases as part of a detailed parametric study on the new pre-filter design are simulated in terms of geometrical parameters to optimize the performance with respect to overall pressure drop and dust collection efficiency. The results of the parametric study are used to derive a final optimized pre-filter configuration. In addition, based on the results of some of the simulations, a new concept of air filtration which could potentially replace the conventional air filter plus pre-filter configuration is introduced and assessed numerically. This design utilizes the high swirl velocities of air to separate particles as small as 4-5 μm with almost 100 per cent efficiency. More importantly, it offers much lower pressure drop than the total pre-filter plus main filter configuration.
机译:在以前的论文中,提出了一种新的设计,即基于旋风分离器的预过滤器以及带有实验数据的数值模型的验证。经过验证的模型用于评估具有不同进气口配置的某些设计。此外,作为对新的预过滤器设计的详细参数研究的一部分,对几种情况进行了几何参数模拟,以优化整体压降和集尘效率方面的性能。参数研究的结果用于得出最终优化的预滤波器配置。另外,基于一些模拟的结果,引入了空气过滤的新概念,并有可能对传统的空气过滤器加预过滤器配置进行替代,并进行了数值评估。该设计利用空气的高旋流速度以几乎100%的效率分离出小至4-5μm的颗粒。更重要的是,与总的预过滤器加主过滤器配置相比,它提供的压降要低得多。

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