Design and Numerical Study of Serpentine Duct using Flow Controllers for Flow Characteristics Enhancement

Q4 Energy
Yogesh Shankar R.P, P. D
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引用次数: 0

Abstract

In the current work, computational study has been carrying out on the both baseline serpentine duct to know the flow behaviour and baseline with vortex generator to know the effect of vortex generators on the flow properties of the duct. A set of vortex generators are chosen for the study, by keeping all other parameters constant. Here in current work, for modelling the duct and vortex generator CATIA V5 is used; to discretizing the geometry ICEM CFD is used. For the analysis, the computational fluid dynamics tool FLUENT is used, SST k-ù model available in the FLUENT is used for the computations, and the results of current work will be validated with experimental results and shows that they are converged. Use of vortex generator in the current work proved extremely effective in enforcing the active flow control. Results obtained in this work are to study the pressure recovery at the engine face. The results ensure that the current work on the baseline model of serpentine inlet duct and model with vortex generator comparison is well established in case of pressure recovery and decrease in engine face distortion. After comparing the result of both baseline duct and duct with vortex generator we are expecting at least 25-35% of pressure recovery at the engine face. In the present study significant improvements characterized by an improved pressure recovery and decrease in distortion are observed over the baseline model of serpentine duct for vortex generator model. This reduction in pressure loss and distortion enhances the engine performance of thrust and also improves the overall performance of the engine.
利用流动控制器增强蛇形管道流动特性的设计与数值研究
在目前的工作中,对基线蛇形风管进行了计算研究,以了解其流动特性,对基线有涡发生器进行了计算研究,以了解涡发生器对风管流动特性的影响。在保持所有其他参数不变的情况下,选择一组涡发生器进行研究。在目前的工作中,对风道和涡发生器的建模使用了CATIA V5;采用ICEM CFD对几何图形进行离散化。分析使用计算流体力学工具FLUENT,使用FLUENT中提供的SST k-ù模型进行计算,并将当前工作的结果与实验结果进行验证,表明它们是收敛的。在目前的工作中,涡发生器在实施主动流动控制方面是非常有效的。本工作的结果是对发动机端面压力恢复的研究。研究结果保证了在压力恢复和发动机端面畸变减小的情况下,蛇形进气道基线模型和涡发生器对比模型的建立是正确的。在对比了基线风管和带涡发生器的风管的结果后,我们预计在发动机表面至少有25-35%的压力恢复。在本研究中,在涡发生器模型的蛇形导管的基础模型上,观察到压力恢复的改善和畸变的减少。压力损失和扭曲的减少提高了发动机的推力性能,也提高了发动机的整体性能。
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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来源期刊
Journal of Mines, Metals and Fuels
Journal of Mines, Metals and Fuels Energy-Fuel Technology
CiteScore
0.20
自引率
0.00%
发文量
101
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