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CFD ANALYSIS OF FLOW STRUCTURES IN A MIXING CHAMBER

机译:混合室中流动结构的CFD分析

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Special mixing chambers are usually used to perform scientific experiments or for routine industrial production processes. This is the case, typically, of fan mixers in a baffled tank. Mixing chambers comprise, among other alternative elements, two counter-rotating fans at the bottom and top. These will eventually allow a mixing effect on the chamber with an adequate level of uniformity. Herein a computational flow simulation is performed for the mixing conditions of air and SO_2 inside the chamber used in the CLOUD experiment, by studying in detail the flow structures and uniformity inside the chamber. This Unsteady Navier-Stokes computation is performed using the kω-SST and SAS turbulence models. A first validation step is performed by using an experimental test case, comprising a T-junction geometry, that performs the mixing of air and N_2- Following this validation step a detailed analysis of the flow structures inside the 3D chamber is conducted, and specific insights are given regarding the flow uniformity. A detailed analysis of the computed mixing flow structures for the SST and SAS turbulence models is also described. It is shown that the SAS model captures with more detail the macro and meso-mmixing process with an accuracy of, at most, 6%. This value can be further reduced to values around 2% by resorting to high density meshes, with the associated computational burden.
机译:特殊的混合室通常用于进行科学实验或常规的工业生产过程。通常,折流罐中的风扇混合器就是这种情况。除其他可选元件外,混合室在底部和顶部还包括两个反向旋转的风扇。这些最终将以足够的均匀度在腔室上产生混合效果。在本文中,通过详细研究腔室内的流动结构和均匀性,对在CLOUD实验中使用的腔室内空气和SO_2的混合条件进行了计算流动模拟。使用kω-SST和SAS湍流模型执行此非稳态Navier-Stokes计算。通过使用包括T型结几何形状的实验测试用例执行第一验证步骤,该测试用例执行空气和N_2的混合。在此验证步骤之后,对3D腔室内的流动结构进行了详细分析,并提出了具体见解给出了关于流动均匀性的信息。还描述了对SST和SAS湍流模型的计算混合流结构的详细分析。结果表明,SAS模型更详细地捕获了宏和中混合过程,精度最高为6%。通过使用高密度网格以及相关的计算负担,可以将该值进一步减小到2%左右的值。

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