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A Comparative Study of Mixed Resolved-Unresolved CFD-DEM and Unresolved CFD-DEM Methods for the Solution of Particle-Laden Liquid Flows

机译:含颗粒液体流的混合溶解-未溶解CFD-DEM与未溶解CFD-DEM方法的比较研究

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The exorbitant economic and environmental cost associated with fouling propels the need to develop advanced numerical methods to accurately decipher the underlying phenomena of fouling and multiphase fluid transport in jet-engine fuel systems. Clogging of jet-fuel systems results in the foulants to settle in seconds to form a porous layer which restricts fuel flow. The objective of this research is to numerically examine the transient evolution of particle-laden liquid flow and particle accumulation on an idealized jet-fuel filter. This is achieved by using two numerical approaches: coupled unresolved computational fluid dynamics-discrete element method (CFD-DEM), and coupled mixed resolved-unresolved CFD-DEM method. We assess the efficacy of both numerical methods by comparing the numerical results against experimental data. Results have shown that the particle accumulation and deposition profiles are in good agreement with the experimental results. Moreover, it is found that the particle distribution spread along the length and height of the channel reflects the actual particle spread as observed in the experiments. The unresolved CFD-DEM and mixed resolved-resolved CFD-DEM method could be harnessed to study complex multiphase fluid flow transport in various other applications such as compact heat exchangers and fluidized beds.
机译:与结垢相关的过高的经济和环境成本促使人们需要开发先进的数值方法,以准确地解读喷气发动机燃油系统中的结垢和多相流体传输的潜在现象。喷气燃料系统的堵塞导致污垢在几秒钟内沉淀,形成限制燃料流量的多孔层。这项研究的目的是在理想化的喷气燃料滤清器上数值研究载有颗粒的液体流动和颗粒积聚的瞬态演变。这可以通过使用两种数值方法来实现:耦合的未解决的计算流体动力学离散元方法(CFD-DEM)和耦合的解决的未解决的混合CFD-DEM方法。我们通过将数值结果与实验数据进行比较来评估两种数值方法的有效性。结果表明,颗粒的堆积和沉积轮廓与实验结果非常吻合。此外,发现沿通道的长度和高度分布的颗粒分布反映了在实验中观察到的实际颗粒分布。未解析的CFD-DEM和混合解析的CFD-DEM方法可用于研究各种其他应用中的复杂多相流体流传输,例如紧凑型热交换器和流化床。

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