RANS ANALYSIS OF FLOWS THROUGH AN OPEN-CENTERED SWIRL GENERATOR COMBINED WITH A 90-DEGREE PIPE ELBOW

J. Lee
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Abstract

The effect of the open-centered swirl generator (SG) on the flow in a pipe elbow was investigated. Steady RANS analysis with the shear stress transport (SST) model was performed to obtain flow fields using commercial CFD software. The working fluid and the bulk velocity were set to air and 1 m/s, respectively. When the SG of this study was installed downstream of the elbow, the maximum velocity region after the elbow was quickly guided to the center of the pipe and generated an axial swirl. Instead, the pressure drop increased due to the flow resistance compared to the case without the SG. Depending on the location of the SG, the difference in the flow field was shown as a result of the interaction with the flow passing through the elbow. Among the three locations considered in this study, the flow resistance was minimized when the SG was installed upstream. When the SG was installed downstream, both the vortex and the TKE were predicted to be the maximum.
结合90度管弯头的开心涡流发生器的流动分析
研究了开心旋流发生器(SG)对弯管内流动的影响。采用商业CFD软件,采用剪切应力输运(SST)模型进行稳态RANS分析,获得流场。工作流体为空气,体速度为1m /s。当本研究的SG安装在弯头下游时,弯头后的最大速度区被快速引导至管道中心并产生轴向旋流。相反,与没有SG的情况相比,由于流动阻力,压降增加了。根据SG的位置,流场的差异显示为与通过弯头的流相互作用的结果。在本研究考虑的三个位置中,当SG安装在上游时,流动阻力最小。当SG安装在下游时,预测涡和TKE都是最大的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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